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UvA-DARE is a service provided by the library of the University of Amsterdam (http://dare.uva.nl) UvA-DARE (Digital Academic Repository) Moving the brain: Neuroimaging motivational changes of deep brain stimulation in obsessive- compulsive disorder Figee, M. Link to publication Citation for published version (APA): Figee, M. (2013). Moving the brain: Neuroimaging motivational changes of deep brain stimulation in obsessive- compulsive disorder. General rights It is not permitted to download or to forward/distribute the text or part of it without the consent of the author(s) and/or copyright holder(s), other than for strictly personal, individual use, unless the work is under an open content license (like Creative Commons). Disclaimer/Complaints regulations If you believe that digital publication of certain material infringes any of your rights or (privacy) interests, please let the Library know, stating your reasons. In case of a legitimate complaint, the Library will make the material inaccessible and/or remove it from the website. Please Ask the Library: https://uba.uva.nl/en/contact, or a letter to: Library of the University of Amsterdam, Secretariat, Singel 425, 1012 WP Amsterdam, The Netherlands. You will be contacted as soon as possible. Download date: 02 Aug 2019
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UvA-DARE is a service provided by the library of the University of Amsterdam (http://dare.uva.nl)

UvA-DARE (Digital Academic Repository)

Moving the brain: Neuroimaging motivational changes of deep brain stimulation in obsessive-compulsive disorder

Figee, M.

Link to publication

Citation for published version (APA):Figee, M. (2013). Moving the brain: Neuroimaging motivational changes of deep brain stimulation in obsessive-compulsive disorder.

General rightsIt is not permitted to download or to forward/distribute the text or part of it without the consent of the author(s) and/or copyright holder(s),other than for strictly personal, individual use, unless the work is under an open content license (like Creative Commons).

Disclaimer/Complaints regulationsIf you believe that digital publication of certain material infringes any of your rights or (privacy) interests, please let the Library know, statingyour reasons. In case of a legitimate complaint, the Library will make the material inaccessible and/or remove it from the website. Please Askthe Library: https://uba.uva.nl/en/contact, or a letter to: Library of the University of Amsterdam, Secretariat, Singel 425, 1012 WP Amsterdam,The Netherlands. You will be contacted as soon as possible.

Download date: 02 Aug 2019

209

A

Abelson, J. L., Curtis, G. C., Sagher, O., Albucher, R. C., Harrigan, M., Taylor, S. F.,

Martis, B., et al. (2005).

Deep brain stimulation for refractory obsessive-compulsive disorder.

Biol. Psychiatry, 57, 510–516.

Ackermans, L., Neuner, I., Kuhn, J., Visser-Vandewalle, V. (2012).

Deep Brain Stimulation in Tourette Syndrome. Deep Brain Stimulation: A New Frontier

in Psychiatry.

Berlin; Heidelberg: Springer, 113-129.

Adams, K.H., Hansen, E.S., Pinborg, L.H., Hasselbalch, S.G., Svarer, C., Holm, S., Bolwig, T.G.,

Knudsen, G.M. (2005).

Patients with obsessive-compulsive disorder have increased 5-HT2A receptor binding in

the caudate nuclei.

Int. J. Neuropsychopharmacol, 8, 391–401.

Admon, R., Bleich-Cohen, M., Weizmant, R., Poyurovsky, M., Faragian, S., & Hendler, T (2012).

Functional and structural neural indices of risk aversion in obsessive-compulsive disorder (OCD).

Psychiatry research, 203(2-3), 207–13.

Ahmari, S. E., Spellman, T., Douglass, N. L., Kheirbek, M. a., Simpson, H. B., Deisseroth, K.,

Gordon, J. a., et al. (2013).

Repeated Cortico-Striatal Stimulation Generates Persistent OCD-Like Behavior.

Science, 340:1234–1239.

Alcaro, A., & Panksepp, J (2011).

The SEEKING mind: Primal neuro-affective substrates for appetitive incentive states and their

pathological dynamics in addictions and depression.

Neuroscience and biobehavioral reviews, 35, 1805-1820.

Alegret M, Junqué C, Valldeoriola F, Vendrell P, Martí MJ, Tolosa E (2001).

Obsessive-compulsive symptoms in Parkinson’s disease.

J Neurol Neurosurg Psychiatry, 70, 394-396.

Alexander, G. E., (1986).

Parallel organization of functionally linking basal ganglia and cortex.

Ann. Rev. Neurosci., 9, 357–81.

American Psychiatric Association (2000).

Diagnostic and statistical manual of mental disorders (4th ed., Text Revision).

Washington, DC: Author.

Andersen, R.A. & Buneo, C.A. (2002).

References

210

Intentional Maps in Posterior Parietal Cortex.

Annual Rev Neurosci. 25, 189-220.

Anderson D, Ahmed A (2003)

Treatment of patients with intractable obsessive-compulsive disorder

with anterior capsular stimulation. Case report.

J Neurosurg 2003;98:1104-1108.

Anderson, S. W., Damasio, H., & Damasio, A. R (2005).

A neural basis for collecting behaviour in humans.

Brain: a journal of neurology, 128, 201–12.

Aouizerate B, Guehl D, Cuny E, Rougier A, Bioulac B, Tignol J, Burbaud P (2004).

Pathophysiology of obsessive-compulsive disorder: a necessary link between

phenomenology, neuropsychology, imagery and physiology.

Prog. Neurobiol., 72, 195-221.

Aouizerate B, Cuny E, Martin-Guehl C et al. (2004).

Deep brain stimulation of the ventral caudate nucleus in the treatment of obsessive-compulsive

disorder and major depression. Case report.

J Neurosurg 101, 682-686.

Aouizerate B, Martin-Guehl C, Cuny E et al. (2005).

Deep brain stimulation for OCD and major depression.

Am J Psychiatry, 162, 2192.

Aouizerate, B., Cuny, E., Bardinet, E., Yelnik, J., Martin-Guehl, C., Rotge, J.-Y., Rougier, A., et al. (2009).

Distinct striatal targets in treating obsessive-compulsive disorder and major depression.

Journal of neurosurgery, 111(4), 775–9.

Arantes PR, Cardoso EF, Barreiros MA, Teixeira MJ, Goncalves MR, Barbosa ER, Sukwinder SS,

Leite CC, Amaro E Jr (2006).

Performing functional magnetic resonance imaging in patients with Parkinson’s disease

treated with deep brain stimulation.

Mov Disord 21:1154-1162.

Aron, A. R. (2011).

From reactive to proactive and selective control: developing a richer model for

stopping inappropriate responses.

Biological Psychiatry 69:e55–68.

Axer, H., Lippitz, B. E., & Von Keyserlingk, D. G. (1999).

Morphological asymmetry in anterior limb of human internal capsule revealed by confocal

laser and polarized light microscopy.

Psychiatry Research, 91(3), 141-154.

211

References

B

Baker, K.B., Nyenhuis, J.A., Hrdlicka, G., Rezai, A.R., Tkach, J.A., Shellock, F.G. (2005).

Neurostimulation systems: assessment of magnetic field interactions

associated with 1.5- and 3-T MR systems.

J. Magn. Reson. Imaging 21, 72–77.

Balodis, I. M., Kober, H., Worhunsky, P. D., Stevens, M. C., Pearlson, G. D.,

& Potenza, M. N. (2012).

Diminished frontostriatal activity during processing of monetary rewards and losses in

pathological gambling.

Biological psychiatry, 71, 749–57.

Balodis, I. M., Kober, H., Worhunsky, P. D., White, M. a, Stevens, M. C., Pearlson, G. D.,

Sinha, R., et al. (2013).

Monetary reward processing in obese individuals with and without binge eating disorder.

Biological psychiatry, 73, 877–86.

Barber, A. D., Srinivasan, P., Joel, S. E., Caffo, B. S., Pekar, J. J., & Mostofsky, S. H. (2012).Motor “dexterity”?: Evidence that left hemisphere lateralization of motor circuit connectivity is

associated with better motor performance in children.

Cerebral cortex, 22, 51–9.

Barton R. (1987).

Diabetes insipidus and obsessional neurosis.

Adv Biochem Psychopharmacol, 43, 347-349.

Basile, B., Mancini, F., Macaluso, E., Caltagirone, C., & Bozzali, M. (2013).

Abnormal processing of deontological guilt in obsessive-compulsive disorder.

Brain structure & function, 2013 May 17.

Becquet D, Faudon M, Hery F. (1990).

In vivo evidence for an inhibitory glutamatergic control of serotonin release in the cat

caudate nucleus: involvement of GABA neurons.

Brain Res., 519, 82-8.

Belin, D., & Everitt, B. J. (2008).

Cocaine seeking habits depend upon dopamine-dependent serial connectivity linking the ventral

with the dorsal striatum.

Neuron, 57, 432-41.

Benabid, A. L., Pollak, P., Louveau, A., Henry, S, & Rougemont, de, J. (1987).

Combined (thalamotomy and stimulation) stereotactic surgery of the VIM thalamic nucleus for

bilateral Parkinson disease.

Applied Neurophysiology, 50, 344-346.

212

Benmansour S, Owens WA, Cecchi M, Morilak DA, Frazer A (2002).

Serotonin clearance in vivo is altered to a greater extent by antidepressant-induced down

regulation of the serotonin transporter than by acute blockade of this transporter.

J Neurosci., 22, 6766-72.

Berthier, M. L., Kulisevsky, J., Gironell, A., & López, O. L. (2001).

Obsessive-Compulsive Disorder and Traumatic Brain Injury:

Behavioral , Cognitive , and Neuroimaging Findings, 14, 23–31.

Bewernick, B. H., Hurlemann, R., Matusch, A., Kayser, S., Grubert, C., Hadrysiewicz, B.,

Axmacher, N., et al. (2010).

Nucleus accumbens deep brain stimulation decreases ratings of depression

and anxiety in treatment-resistant depression.

Biological psychiatry, 67, 110-6.

Bingley, T., Leksell, L., Meyerson, B.A. (1977).

Long-term results of stereotactic capsulotomy in chronic obsessive-compulsive neurosis.

In: Sweet WH, Obrador S, Martin-Rodrigues JG (eds) Neurosurgical treatment in psychiatry,

pain and epilepsy.

University Park Press, Baltimore, p 287-9.

Bloch MH, Landeros-Weisenberger A, Kelmendi B, Coric V, Bracken MB, Leckman JF (2006).

A systematic review: antipsychotic augmentation with treatment refractory

obsessive-compulsive disorder.

Mol Psychiatry, 622-32.

Bloch, M.H., Leckman, J.F., Zhu, H., Peterson, B.S. (2005).

Caudate volumes in childhood predict symptom severity in adults with Tourette syndrome.

Neurology, 65, 1253-58.

Blom, R. M., Figee, M., Vulink, N., & Denys, D. (2011).

Update on repetitive transcranial magnetic stimulation in obsessive-compulsive disorder:

different targets.

Current psychiatry reports, 13, 289-94.

Bohlhalter, S., Goldfine, A., Matteson, S., Garraux, G., Hanakawa, T., Kansaku, K., et al. (2006).

Neural correlates of tic generation in Tourette syndrome: an event-related functional MRI study.

Brain, 129, 2029-37.

Booij J, Korn P, Linszen DH, van Royen EA (1997).

Assessment of endogenous dopamine release by methylphenidate challenge using

iodine-123 iodobenzamide single-photon emission tomography.

Eur J Nucl Med 24, 674–677.

Booij J, de Jong J, de Bruin K, Knol RJJ, de Win MM, and van Eck-Smit BLF (2007).

213

References

Quantification of striatal dopamine transporters with [¹²³I] beta-CIT SPECT is influenced by the

selective serotonin reuptake inhibitor paroxetine: a double-blind, placebo-controlled, crossover

study in healthy controls.

J Nucl Med, 48, 359-366.

Boot E, Booij J, Hasler G, Zinkstok JR, de Haan L, Linszen DH, van Amelsvoort TA (2008).

AMPT-induced monoamine depletion in humans: evaluation of two alternative

[¹²³I]IBZM SPECT procedures.

Eur J Nucl Med Mol Imaging 35, 1350-1356.

Boot E, Booij J, Zinkstok J, Abeling N, de Haan L, Baas F, Linszen D et al. (2008).

Disrupted dopaminergic neurotransmission in 22q11 deletion syndrome

Neuropsychopharmacol 33, 1252–1258.

Bora, E., Harrison, B. J., Fornito, A., Cocchi, L., Pujol, J., Fontenelle, L. F., Velakoulis, D., et al. (2011).

White matter microstructure in patients with obsessive-compulsive disorder.

Journal of psychiatry & neuroscience: JPN, 36, 42-6.

Borcherding BG, Keysor CS, Rapoport JL, Elia J, Amass J (1990).

Motor/vocal tics and compulsive behaviors on stimulant drugs: is there a common vulnerability?

Psychiatry Res 33: 83-94.

Brakoulias V, Starcevic V, Berle D, Sammut P, Milicevic D, Moses K, et al. (2013).

Further support for five dimensions of obsessive-compulsive symptoms.

J. Nerv. Ment. Dis., 201, 452–9.

Buhler M, Vollstadt-Klein S, Kobiella A, Budde H,Reed LJ, Braus DF, Buchel C, Smolka MN (2009).

Nicotine Dependence Is Characterized by Disordered Reward Processing in a

Network Driving Motivation.

Biol.Psychiatry, 67, 745–752.

Butson CR, Maks CB, McIntyre CC (2006).

Sources and effects of electrode impedance during deep brain stimulation.

Clin Neurophysiol 117, 447–454.

C

Cannistraro PA, Makris N, Howard JD, Wedig MM, Hodge SM, Wilhelm S, Kennedy DN,

Rauch SL. (2007).

A diffusion tensor imaging study of white matter in obsessive-compulsive disorder.

Depress. Anxiety 24, 440–446.

Carmichael, D. W., Pinto, S., Limousin-Dowsey, P., Thobois, S., Allen, P. J., Lemieux, L.,

Yousry, T., et al. (2007).

Functional MRI with active, fully implanted, deep brain stimulation systems: safety and experimen-

214

tal confounds.

NeuroImage, 37, 508–17.

Carmin CN, Wiegartz PS, Yunus U, Gillock KL (2002).

Clinical Case Study: Treatment of late-onset OCD following basal ganglia infarct.

Depress Anxiety, 15, 87-90.

Chacko RC, Corbin MA, Harper RG (2000).

Acquired Obsessive-Compulsive Disorder Associated With Basal Ganglia Lesions.

J. Neuropsychiatry Clin. Neurosci., 12, 269-272.

Chamberlain SR, Blackwell AD, Fineberg NA, Robbins TW, Sahakian BJ. (2005).

The neuropsychology of obsessive compulsive disorder: the importance of failures in cognitive

and behavioural inhibition as candidate endophenotypic markers.

Neurosci.Biobehav.Rev. 29, 399-419.

Chamberlain SR, Menzies L, Hampshire A, Suckling J, Fineberg NA, del CN, Aitken M, Craig K,

Owen AM, Bullmore ET, Robbins TW, Sahakian BJ (2008).

Orbitofrontal dysfunction in patients with obsessive-compulsive disorder and their

unaffected relatives.

Science 321, 421-422.

Chkhenkeli, S. a, Sramka, M., Lortkipanidze, G. S., Rakviashvili, T. N., Bregvadze, E. S.,

Magalashvili, G. E., Gagoshidze, T. S., et al. (2004).

Electrophysiological effects and clinical results of direct brain stimulation for

intractable epilepsy.

Clinical neurology and neurosurgery, 106, 318–29.

Choi J-S, Shin Y-C, Jung WH, Jang JH, Kang D-H, Choi C-H, et al. (2012).

Altered Brain Activity during Reward Anticipation in Pathological Gambling and

Obsessive-Compulsive Disorder.

PLoS ONE, 7:e45938.

Christopoulos GI, Tobler PN, Bossaerts P, Dolan RJ, Schultz W. (2009).

Neural correlates of value, risk, and risk aversion contributing to decision making under risk.

J. Neurosci., 29, 12574–83.

Cocchi L, Harrison BJ, Pujol J, Harding IH, Fornito A, Pantelis C, et al. (2012).

Functional alterations of large-scale brain networks related to cognitive control in obsessive-

compulsive disorder.

Human Brain Mapping. 2012, 1089–106.

Coenen, V. a, Schlaepfer, T. E., Maedler, B., & Panksepp, J. (2011).

Cross-species affective functions of the medial forebrain bundle-Implications for the treatment

of affective pain and depression in humans.

215

References

Neurosci Biobehav Rev. 35, 1971-1981.

Coenen, V.A., Honey, C.R., Hurwitz, T., Rahman, A.A., McMaster, J., Burgel, U., Madler, B. (2009).

Medial forebrain bundle stimulation as a pathophysiological mechanism for hypomania in

subthalamic nucleus deep brain stimulation for Parkinson’s disease.

Neurosurgery 64, 1106–1114.

Cohen, L., Angladette, L., & Benoit, N. (1999).

Case report: A man who borrowed cars.

Lancet, 353, 34.

Cools R, Roberts AC, Robbins TW. (2008).

Serotoninergic regulation of emotional and behavioural control processes.

Trends Cogn. Sci., 12, 31–40.

D

D’ Acremont M, Bossaerts P. (2008).

Neurobiological studies of risk assessment:

A comparison of expected utility and mean-variance approaches.

Cognitive, Affective, & Behavioral Neuroscience, 8, 363–74.

Damasio, H., Grabowski, T., Frank, R., Galaburda, A. M., & Damasio, A. R. (1994).

The return of Phineas Gage: clues about the brain from the skull of a famous patient.

Science, 1102, 1–4.

Daniele A, Bartolomeo P, Cassetta E, Bentivoglio AR, Gainotti G, Albanese A, Partolomeo B (1997).

Obsessive-compulsive behaviour and cognitive impairment in a parkinsonian patient after left

putaminal lesion.

Neurosurg. Psychiatry, 62, 288-289.

Daumézon MG, Cor J, Moor L. (1954).

Disparition de phénomènes obsessionnels graves après “autolobotomie” chez un grand

déséquilibré.

Ann Med Psychol, 112, 93-7.

Davidson M, Giordani AB, Mohs RC, Horvath TB, Davis BM, Powchik P, Davis KL. (1987).

Short-term haloperidol administration acutely elevates human plasma homovanillic acid

concentration.

Arch Gen Psychiatry, 44, 189-90.

Davis KL, Kahn RS, Ko G, Davidson M. (1991).

Dopamine in schizophrenia: a review and reconceptualization.

Am J Psychiatry, 148, 1474-86.

216

Davis, M. (1992).

The Role of the Amygdala in Fear and Anxiety.

Ann. Rev. Neurosci., 15, 353-375.

De Greck M, Enzi B, Prösch U, Gantman A, Tempelmann C, Northoff G (2010).

Decreased neuronal activity in reward circuitry of pathological gamblers

during processing of personal relevant stimuli.

Hum Brain Mapp, 31, 1802-12.

De Haan L, Booij J, Lavalaye J, van Amelsvoort T, Linszen D (2005).

Subjective experiences during dopamine depletion.

Am J Psychiatry 162, 1755.

Delorme A, Mullen T, Kothe C, Akalin Acar Z, Bigdely-Shamlo N, Vankov A, Makeig S. (2011).

EEGLAB, SIFT, NFT, BCILAB, and ERICA: new tools for advanced EEG processing.

Comput. Intellig. Neurosci., 130714.

Del Parigi A, Gautier JF, Chen K, Salbe AD, Ravussin E, Reiman E, Tataranni PA (2002).

Neuroimaging and obesity: mapping the brain responses to hunger and satiation in humans

using positron emission tomography.

Ann N Y Acad Sci. 967, 389-97.

De Koning, P. P., Figee, M., van den Munckhof, P., Schuurman, P. R., & Denys, D. (2011).

Current status of deep brain stimulation for obsessive-compulsive disorder:

a clinical review of different targets.

Current psychiatry reports, 13, 274-82.

De Kwaasteniet B, Ruhe E, Caan M, Rive M, Olabarriaga S, Groefsema M, Heesink L,

van Wingen G, Denys D (2013).

Relation between structural and functional connectivity in major depressive disorder.

Biological Psychiatry, 74, 40-7.

Demirkol A, Erdem H, Inan L, Yigit A, Güney M (1999).

Case report: Bilateral Globus Pallidus Lesions in a Patient with Tourette Syndrome

and Related Disorders.

Biol. Psychiatry, 46, 863-867.

Denys D, Klompmakers A A, Westenberg HG (2004).

Synergistic dopamine increase in the rat prefrontal cortex with the combination of

quetiapine and fluvoxamine.

Psychopharmacology, 176, 195-203.

Denys D, Mantione M, Figee M, van den Munckhof P, Koerselman F, Westenberg H,

Bosch A, et al. (2010).

Deep brain stimulation of the nucleus accumbens for treatment-refractory

217

References

obsessive-compulsive disorder.

Arch Gen Psychiatry 67, 1061–1068.

Denys D, van der Wee N, Janssen J, de Geus F, Westenberg HG (2004).

Low level of dopaminergic D2 receptor binding in obsessive-compulsive disorder.

Biol Psychiatry 55, 1041-1045.

Denys D, Zohar J, Westenberg HG (2004).

The role of dopamine in obsessive-compulsive disorder: preclinical and clinical evidence.

J.Clin.Psychiatry 65 Suppl 14, 11-17.

Denys D (2004).

On certainty: studies in obsessive-compulsive disorder.

Denys, D (2006).

Pharmacotherapy of obsessive-compulsive disorder and

obsessive-compulsive spectrum disorders.

Psychiatr. Clin. North. Am., 29, 553-84.

Dewey, S.L., Smith, G.S., Logan, J., Alexoff, D., Ding, Y.S., King, P., Pappas, N., Brodie, J.D.,

Ashby Jr., C.R. (1995).

Serotonergic modulation of striatal dopamine measured with positron emission tomography

(PET) and in vivo microdialysis.

Journal of Neuroscience, 15, 821– 829.

Diamond, A. & Ondo, W.G. (2011).

Resolution of Severe Obsessive-Compulsive Disorder After a Small Unilateral Nondominant

Frontoparietal Infarct.

Inter. J. Neurosci., early online, 1-3.

Dichter, G. S. (2012).

Functional magnetic resonance imaging of autism spectrum disorders.

Dialogues Clin Neurosci., 14, 319–351.

Diekhof EK, Falkai P, Gruber O (2008).

Functional neuroimaging of reward processing and decision-making: a review of aberrant

motivational and affective processing in addiction and mood disorders.

Brain Res.Rev., 59, 164-184.

Di Martino A, Scheres A, Margulies DS, Kelly AM, Uddin LQ, Shehzad Z, Biswal B, Walters JR,

Castellanos FX, Milham MP (2008).

Functional connectivity of human striatum: A resting state FMRI study.

Cereb. Cortex 18, 2735-2747.

Donovan, N.J. & Barry, J.J. (1994).

218

Compulsive Symptoms Associated With Frontal Lobe Injury.

Am. J. Psychiatry, 151, 618.

Dormont, D., Seidenwurm, D., Galanaud, D., Cornu, P., Yelnik, J., & Bardinet, E. (2010).

Neuroimaging and deep brain stimulation.

American journal of neuroradiology 31, 15–23.

Draganski, B., Martino, D., Cavanna, A.E., Hutton, C., Orth, M., Robertson, M.M., et al. (2010).

Multispectral brain morphometry in Tourette syndrome persisting into adulthood.

Brain, 133, 3661-75.

Drevets, W. C., Price, J. L., & Furey, M. L. (2008).

Brain structural and functional abnormalities in mood disorders:

implications for neurocircuitry models of depression.

Brain structure & function, 213(1-2), 93-118.

E

Eagle, D. M., Wong, J. C. K., Allan, M. E., Mar, A. C., Theobald, D. E., & Robbins, T. W. (2011).

Contrasting roles for dopamine D1 and D2 receptor subtypes in the dorsomedial striatum but

not the nucleus accumbens core during behavioral inhibition in the stop-signal task in rats.

J Neurosc 31, 7349–56.

Enzi B, de GM, Prosch U, Tempelmann C, Northoff G (2009).

Is our self nothing but reward? Neuronal overlap and distinction between reward and personal

relevance and its relation to human personality.

PLoS.One. 4, e8429.

Ersche KD, Roiser JP, Abbott S, Craig KJ, Müller U, Suckling J, Ooi C, et al. (2011).

Response perseveration in stimulant dependence is associated with striatal dysfunction and can

be ameliorated by a D2/3 receptor agonist.

Biol Psychiatry 70, 754–62.

Escalona Rodrigo P, Adair JC, Roberts BB, Graeber DA. (1997).

Case Report: Obsessive-Compulsive Disorder following Bilateral Globus Pallidus Infarction.

Biol. Psychiatry, 42, 410-412.

F

Falowski, S. M., Sharan, A., Reyes, B. a S., Sikkema, C., Szot, P., & Van Bockstaele, E. J. (2011).

An evaluation of neuroplasticity and behavior after deep brain stimulation of the nucleus

accumbens in an animal model of depression.

Neurosurgery, 69, 1281–90.

Figee M, Mantione M, van den Munckhof P, Schuurman R, Denys D (2010).

219

References

Targets for deep brain stimulation in obsessive-compulsive disorder.

Psychiatr Ann. 40, 492-498

Figee M, Wielaard I, Mazaheri A & Denys D (2013).

Neurosurgical targets for compulsivity: what can we learn from acquired brain lesions?

Neurosci. Biobehav. Rev 37, 328-339.

Figee, M., Munckhof, van den P., Schuurman, P.R., Denys, D. (2012).

Neuroimaging of deep brain stimulation in psychiatric disorders.

Deep Brain Stimulation: A New Frontier in Psychiatry.

Berlin/Heidelberg: Springer-Verlag GmbH, p. 225-230

Figee, M., Vink, M., de Geus, F., Vulink, N., Veltman, D. J., Westenberg, H., & Denys, D. (2011).

Dysfunctional reward circuitry in obsessive-compulsive disorder.

Biological psychiatry 69, 867-74.

Figee M, Koning P, Klaassen, S, van Wingen G, Vulink N, van den Munckhof P, Schuurman R.,

van Amelsvoort T, Booij J, Denys D. (2013).

Deep brain stimulation induces endogeneous striatal dopamine release

in obsessive-compulsive disorder.

Biological Psychiatry, in press.

Figee, M, Luigjes, J, Smolders, R, Wingen, G Van, Kwaasteniet, B De, Mantione, M, Ooms, P,

et al. (2013).

Deep brain stimulation restores frontostriatal network activity in obsessive-compulsive disorder.

Nature Neuroscience 4, 386-7

Figee M, de Koning PP, Klaassen S, Vulink N, Mantione M, van den Munckhof P,

Schuurman PR, van Wingen G, van Amelsvoort T, Booij J, Denys D (2013).

Deep brain stimulation induces striatal dopamine release in obsessive-compulsive disorder.

Biological Psychiatry, Aug 9, Epub ahead of print.

Fineberg NA, Gale TM, Sivakumaran T (2006).

A review of antipsychotics in the treatment of obsessive compulsive disorder.

J Psychopharmacol. 20, 97-103.

Fineberg NA, Potenza MN, Chamberlain SR, Berlin HA, Menzies L, Bechara A, Sahakian BJ,

Robbins TW, Bullmore ET, Hollander E (2010).

Probing Compulsive and Impulsive Behaviors, from Animal Models to Endophenotypes:

A Narrative Review.

Neuropsychopharmacol., 35, 591-604.

Fiorillo CD, Tobler PN, Schultz W (2003).

Discrete coding of reward probability and uncertainty by dopamine neurons.

Science 299, 1898-1902.

220

First MB, Spitzer RL, Gibbon MG, Williams JB (1997).

Structured Clinical Interview for DSM-IV Axis I Disorders (SCID-I): Clinical Version.

Washington, DC: American Psychiatric Press.

Fitzgerald KD, Moore GJ, Paulson LA, Stewart CM, Rosenberg DR (1999).

Proton Spectroscopic Imaging of the Thalamus in Treatment-Naïve Pediatric

Obsessive-Compulsive Disorder.

Biol. Psychiatry, 47, 174-182.

Fletcher PJ, Korth KM, Chambers JW (1999).

Selective destruction of brain serotonin neurons by 5,7-dihydroxytryptamine increases

responding for a conditioned reward.

Psychopharmacology (Berl) 147, 291-9.

Fontaine D, Mattei V, Borg M et al. (2004).

Effect of subthalamic nucleus stimulation on obsessive-compulsive disorder in a patient with

Parkinson disease. Case report.

J Neurosurg 2004;100:1084-1086.

Fowler JS, Wang GJ, Volkow ND, Ieni J, Logan J, Pappas N, et al. (1999).

PET studies of the effect of the antidepressant drugs nefazodone or paroxetine on

[¹¹C]raclopride binding in human brain.

Clin Positron Imaging 1999; 2: 205–209.

Frank, M. J. (2011).

Computational models of motivated action selection in corticostriatal circuits.

Current opinion in neurobiology, 21(3), 381–6.

Franzini A, Messina G, Gambini O et al. (2010.)

Deep-brain stimulation of the nucleus accumbens in obsessive compulsive disorder: clinical,

surgical and electrophysiological considerations in two consecutive patients.

Neurol Sci

Fujii, T., et al. (2005).

Improvement of Obsessive-Compulsive Disorder following Left Putaminal Hemorrhage.

European Neurology, 54, 166-170.

Fullana MA, Mataix-Cols D, Caspi A, Harrington H, Grisham JR, Moffitt TE, Poulton R. (2009)

Obsessions and compulsions in the community: prevalence, interference, help-seeking,

developmental stability, and co-occurring psychiatric conditions.

Am J Psychiatry. 166, 329-36.

G

Gabriels L, Cosyns P, Nuttin B, Demeulemeester H, Gybels J (2003).

221

References

Deep brain stimulation for treatment-refractory obsessive-compulsive disorder:

psychopathological and neuropsychological outcome in three cases.

Acta Psychiatr Scand 107, 275-282.

Gamazo-Garrán, P., et al. (2002).

Obsessive-Compulsive Disorder Secondary to Brain Dysgerminoma in an Adolescent Boy:

A Positron Emission Tomography Case Report.

J. Child. Adolesc. Psychopharmacol., 12, 259-263.

Giedd JN, Rapoport JL, Leonard HL, Richter D, Swedo SE (1996).

Case Study: Acute Basal Ganglia Enlargement and Obsessive-Compulsive Symptoms in an

Adolescent Boy. J. Am. Acad. Child Adolesc.

Psychiatry, 35, 913-915.

Gillan, C. M., Papmeyer, M., Morein-Zamir, S., Sahakian, B. J., Fineberg, N. a, Robbins, T. W.,

& De Wit, S. (2011).

Disruption in the balance between goal-directed behavior and habit learning in

obsessive-compulsive disorder.

The American journal of psychiatry, 168, 718–26.

Gillan CM, Morein-Zamir S, Kaser M, Fineberg NA, Sule A, Sahakian BJ, et al. (2013)

Counterfactual Processing of Economic Action-Outcome Alternatives in Obsessive-Compulsive

Disorder: Further Evidence of Impaired Goal-Directed Behavior.

Biological Psychiatry.

Giroud M, Lemesle M, Madinier G, Billiar T, Dumas R. (1997).

Unilateral lenticular infarcts: radiological and clinical syndromes, aetiology, and prognosis.

J Neurol Neurosurg Psychiatry, 63, 611-615.

Gómez-Beldarrain, M., et al. (1998).

Effect of focal cerebellar lesions on procedural learning in the serial reaction time task.

Exp. Brain Research, 120, 25-30.

Gonzalez, A. & Philpot, M.P. (1998).

Case report: Late-onset startle syndrome and obsessive compulsive disorder.

Behav. Neurol., 11, 113-116.

Goodman WK, Price LH, Rasmussen SA, Mazure C, Fleischmann RL, Hill CL, Heninger GR,

Charney DS. (1989).

The Yale-Brown Obsessive Compulsive Scale. I. Development, use, and reliability.

Arch.Gen.Psychiatry 46, 1006-1011.

Goodman WK, Price LH, Rasmussen SA, Mazure C, Delgado P, Heninger GR, Charney DS. (1989).

The Yale-Brown Obsessive Compulsive Scale. II. Validity.

Arch.Gen.Psychiatry 46, 1012-1016.

222

Goodman, W.K., Foote, F.D., Greenberg, B.D., et al. (2010).

Deep brain stimulation for intractable obsessive compulsive disorder,

pilot study using a blinded, staggered onset design.

Biol Psychiatry, 67, 535–42.

Gray, J.A., Roth, B.L (2001)

Paradoxical trafficking and regulation of 5-HT(2A) receptors by agonists and antagonists.

Brain Res. Bull. 56, 441–451.

Grant, J. E., Brewer, J. a, & Potenza, M. N. (2006).

The neurobiology of substance and behavioral addictions.

CNS spectrums, 11, 924–30.

Greenberg, B. D., Malone, D. a, Friehs, G. M., Rezai, A. R., Kubu, C. S., Malloy, P. F.,

Salloway, S. P., et al. (2006).

Three-year outcomes in deep brain stimulation for highly resistant

obsessive-compulsive disorder.

Neuropsychopharmacology, 31, 2384-93.

Greenberg, B.D., Gabriels, L.A., Malone, D.A., et al. (2010).

Deep brain stimulation of the ventral internal capsule/ventral striatum

for obsessive-compulsive disorder: worldwide experience.

Mol. Psychiatry, 15, 64–79.

H

Haber SN, Fudge JL, McFarland NR (2000).

Striatonigrostriatal pathways in primates form an ascending spiral from the shell to the

dorsolateral striatum.

J Neurosci 20, 2369–2382.

Haber, S.N., Kim, K.S., Mailly, P. & Calzavara, R. J. (2006).

Reward-related cortical inputs define a large striatal region in primates that interface with

associative cortical connections, providing a substrate for incentive-based learning.

Neurosci. 26, 8368–8376

Haber SN, Knutson B (2010).

The reward circuit: linking primate anatomy and human imaging.

Neuropsychopharmacol 35: 4–26.

Hahm, D. S., Kang, Y., Cheong, S. S., & Na, D. L. (2001).

A compulsive collecting behavior following an A-com aneurysmal rupture.

Neurol., 56, 398–400.

Hamilton M. (1959).

223

References

The Assessment of Anxiety States by Rating.

British Journal of Medical Psychology. 32(1):50–5.

Hamilton M. (1960).

A rating scale for depression

J Neurol Neurosurg Psychiatry 23, 56–62.

Hamlin, Cary L.; Swayne, Lawrence C.; Liebowitz, Michael R (1989).

Striatal IMP-SPECT decrease in obsessive compulsive disorder, normalized by pharmacotherapy.

Neuropsychiatry Neuropsychol. Behav. Neurol., 2, 290-300.

Harrison, B. J., Soriano-Mas, C., Pujol, J., Ortiz, H., López-Solà, M., Hernández-Ribas, R.,

Deus, J., et al. (2009).

Altered corticostriatal functional connectivity in obsessive-compulsive disorder.

Archives of general psychiatry, 66, 1189-200.

Harrison, B. J., Pujol, J., Cardoner, N., Deus, J., Alonso, P., López-Solà, M.,

Contreras-Rodríguez, O., et al. (2012).

Brain Corticostriatal Systems and the Major Clinical Symptom Dimensions of

Obsessive-Compulsive Disorder.

Biological psychiatry.

Hasselbalch SG, Hansen ES, Jacobsen TB, Pinborg LH, Lønborg JH, Bolwig TG. (2007).

Reduced midbrain-pons serotonin transporter binding in patients with

obsessive–compulsive disorder.

Acta Psychiatr Scand 115, 388–394

Hassler, R., Dieckmann, G. (1970).

Traitement stéréotaxique des tics et cris inarticulés ou copralalique considérés comme

phénomène d’obsession motrice au cour de la maladies de Gilles de la Tourette.

Revue Neurologique (Paris), 123, 89-100.

Hesse, S.,Muller, U., Lincke, T., Barthel, H.,Villmann, T., Angermeyer, M.C., Sabri, O.,

Stengler-Wenzke, K., (2005).

Serotonin and dopamine transporter imaging in patients with obsessive-compulsive disorder.

Psychiatry Res. 140, 63–72.

Hesselmann V, Sorger B, Girnus R, Lasek K, Maarouf M, Wedekind C, Bunke J, Schulte O, Krug

B, Lackner K, Sturm V. (2004).

Intraoperative functional MRI as a new approach to monitor deep brain stimulation in

Parkinson’s disease.

Eur Radiol 14:686-690

Holden C. (2001).

‘Behavioral’ addictions: do they exist?

224

Science 294, 980-982.

Hollander E, Pallanti S, Baldini Rossi N, Sood E, Baker BR, Buchsbaum MS (2005).

Imaging monetary reward in pathological gamblers.

World J Biol Psychiatry. 6, 113-120.

Hommer D.W., Bjork, J.M., Gilman J.M. (2011).

Imaging brain response to reward in addictive disorders.

Ann. N.Y. Acad. Sci. 1216, 50–61.

Huff W, Lenartz D, Schormann M, Lee SH, Kuhn J, Koulousakis A, Mai J, Daumann J,

Maarouf M, Klosterkotter J, Sturm V. (2010).

Unilateral deep brain stimulation of the nucleus accumbens in patients with treatment-resistant

obsessive-compulsive disorder: Outcomes after one year.

Clin.Neurol.Neurosurg. 112[2], 137-143.

Hugo F, van Heerden B, Zungu-Dirwayi N, Stein DJ (1999).

Case Reports: Functional brain imaging in Obsessive-Compulsive disorder secondary to

neurological lesions.

Depress. Anxiety, 10, 129-136.

I

Ishii H, Ohara S, Tobler PN, Tsutsui K-I, Iijima T (2012).

Inactivating Anterior Insular Cortex Reduces Risk Taking.

J. Neurosci. 32, 16031–9.

J

Jech R, Urgosik D, Tintera J, Nebuzelsky A, Krasen- sky J, Liscak R, Roth J, Ruzicka E (2001).

Functional magnetic resonance imaging during deep brain stimulation:

a pilot study in four patients with Parkinson’s disease.

Mov Disord 16:1126-1132

Jimenez F, Velasco F, Salin-Pascual R et al. (2007).Neuromodulation of the inferior thalamic peduncle for major depression and

obsessive compulsive disorder.

Acta Neurochir Suppl 97, 393-398.

Jiménez-Ponce, F., Velasco-Campos, F., Castro-Farfán, G., Nicolini, H., Velasco, A. L.,

Salín-Pascual, R., Trejo, D., et al. (2009).

Preliminary study in patients with obsessive-compulsive disorder treated with electrical

stimulation in the inferior thalamic peduncle.

Neurosurgery 65, 203-209

225

References

John G, Eapen V, Shaw GK (1997).

Frontal glioma presenting as anxiety and obsessions: a case report.

Acta Neurologica Scand. 96, 194-195.

Jung, W. H., Kang, D.-H., Han, J. Y., Jang, J. H., Gu, B.-M., Choi, J.-S., Jung, M. H., et al. (2011).

Aberrant ventral striatal responses during incentive processing in unmedicated patients with

obsessive-compulsive disorder.

Acta psychiatrica Scandinavica, 123(5), 376–86.

K

Kahan, J., Mancini, L., Urner, M., Friston, K., Hariz, M., Holl, E., White, M., et al. (2012).

Therapeutic subthalamic nucleus deep brain stimulation reverses cortico-thalamic coupling

during voluntary movements in Parkinson’s disease.

PloS one, 7(12)

Kalra, S. K., & Swedo, S. E. (2009).

Review series Children with obsessive-compulsive disorder:‘ are they just “ little adults ”?,

119, 737-746.

Kant R, Smith-Seemiller L, Duffy JD (1996).

Obsessive-compulsive disorder after closed head injury: review of literature and report

of four cases.

Brain Inj., 10, 55-63.

Kapur S, Remington G. (1996).

Serotonin-dopamine interaction and its relevance to schizophrenia.

Am J Psychiatry. 153, 466-76. Review.

Kegeles LS, Zea-Ponce Y, Abi-Dargham A, Rodenhiser J, Wang T, Weiss R,

Van Heertum RL, et al. (1999).

Stability of [¹²³I]IBZM SPECT measurement of amphetamine-induced striatal dopamine release

in humans.

Synapse 31, 302–8.

Kiebel SJ, Poline JB, Friston KJ, Holmes AP, Worsley KJ. (1999)

Robust smoothness estimation in statistical parametric maps using standardized residuals from

the general linear model.

Neuroimage. 10, 756-766.

Kim CH, Cheon KA, Koo MS et al. (2007)

Dopamine transporter density in the basal ganglia in obsessive-compulsive disorder, measured

with [¹²³I]IPT SPECT before and after treatment with serotonin reuptake inhibitors.

Neuropsychobiology. 55, 156-162.

226

Kim CH, Koo MS, Cheon KA, Ryu YH, Lee JD, Lee HS. (2003)

Dopamine transporter density of basal ganglia assessed with [¹²³I]IPT SPET

in obsessive-compulsive disorder.

Eur J Nucl Med Mol Imaging. 30, 1637-43.

Kim JJ, Lee MC, Kim J, Kim IY, Kim SI, Han MH, Chang KH, Kwon JS (2001).

Grey matter abnormalities in obsessive-compulsive disorder:

Statistical parametric mapping of segmented magnetic resonance images.

Brit. J. Psychiatry, 179, 330-334.

Kim, K.W. & Lee, D.Y., (2002).

Obsessive-Compulsive Disorder Associated With a Left Orbitofrontal Infarct.

J. Neuropsychiatry Clin. Neurosci., 14, 88-89.

Klein, J., Hadar, R., Götz, T., Männer, A., Eberhardt, C., Baldassarri,J., Schmidt, T. T., et al. (2012).

Mapping brain regions in which deep brain stimulation affects schizophrenia-like behavior in

two rat models of schizophrenia.

Brain stimulation, Oct 8.

Knight, E. J., Min, H.-K., Hwang, S.-C., Marsh, M. P., Paek, S., Kim, I., Felmlee, J. P., et al. (2013).

Nucleus accumbens deep brain stimulation results in insula and prefrontal activation: a large

animal fMRI study.

PloS one, 8, e56640.

Knutson B, Adams CM, Fong GW, Hommer D. (2001)

Anticipation of increasing monetary reward selectively recruits nucleus accumbens.

J.Neurosci. 21, RC159.

Knutson B, Fong GW, Adams CM, Varner JL, Hommer D (2001):

Dissociation of reward anticipation and outcome with event-related fMRI.

Neuroreport 12, 3683–3687.

Knyazev, G. G. (2011).

EEG delta oscillations as a correlate of basic homeostatic and motivational processes.

Neuroscience and biobehavioral reviews, 36, 677–695.

Koch S, Perry KW, Nelson DL, Conway RG, Threlkeld PG, Bymaster FP. (2002).

R-fluoxetine increases extracellular DA, NE, as well as 5-HT in rat prefrontal cortex and

hypothalamus: an in vivo microdialysis and receptor binding study.

Neuropsychopharmacology. 27, 949-59.

Koob, G. F., & Volkow, N. D. (2010).

Neurocircuitry of addiction.

Neuropsychopharmacology, 35, 217-38.

227

References

Kringelbach, M. L., Green, A. L., & Aziz, T. Z., (2011).

Balancing the brain: resting state networks and deep brain stimulation.

Front. Integrative Neurosci., 5, 1-5.

Kuhn J, Lenartz D, Mai JK, Huff W, Lee SH, Koulousakis A, Klosterkoetter J, Sturm V (2007).

Deep brain stimulation of the nucleus accumbens and the internal capsule in therapeutically

refractory Tourette-syndrome.

J. Neurol., 254, 963-965.

Kuhn J, Lenartz D, Huff W et al. (2007).

Remission of alcohol dependency following deep brain stimulation of the nucleus accumbens:

valuable therapeutic implications?

J Neurol Neurosurg Psychiatry 78, 1152-1153.

Kuhn J, Bauer R, Pohl S et al. (2009).

Observations on unaided smoking cessation after deep brain stimulation of the

nucleus accumbens.

Eur Addict Res 15, 196-201.

Kuhn J, Gaebel W, Klosterkoetter J, Woopen C (2009).

Deep brain stimulation as a new therapeutic approach in therapy-resistant mental disorders:

ethical aspects of investigational treatment.

Eur. Arch. Psychiatry Clin. Neurosci., 259,suppl. 2, 135-141.

Kuhn, J., Janouschek, H., Raptis, M., Rex, S., Lenartz, D., Neuner, I., Mottaghy, F. M., et al. (2012).

In Vivo Evidence of Deep Brain Stimulation-Induced Dopaminergic Modulation in

Tourette’s Syndrome.

Biological psychiatry, 71, e11-3.

Kuhnen CM, Knutson B (2005).

The neural basis of financial risk taking.

Neuron 47763–70.

L

Lang, P.J., Bradley, M.M., & Cuthbert, B.N. (2008).

International affective picture system (IAPS): Affective ratings of pictures and instruction manual.

Technical Report A-8. University of Florida, Gainesville, FL.

Laplane D, Levasseur M, Pillon B, Dubois B, Baulac M, Mazoyer B, Tran Dinh S, Sette G, Danze F,

Baron JC (1989).

Obsessive-compulsive and other behavioural changes with bilateral basal ganglia lesions:

A neuropsychological, magnetic resonance imaging and positron tomography study.

Brain, 112, 699-725.

228

Laruelle M, Baldwin RM, Malison RT, Zea-Ponce Y, Zoghbi SS, al-Tikriti MS, et al. (1993).

SPECT imaging of dopamine and serotonin transporters with [123I]ß-CIT: pharmacological

characterization of brain uptake in nonhuman primates.

Synapse 13, 295–309.

Laruelle M, Wallace E, Seibyl JP, Baldwin RM, Zea-Ponce Y, Zoghbi SS, et al. (1994). Graphical, kinetic, and equilibrium analyses of in vivo [¹²³I]ß-CIT binding

to dopamine transporters in healthy human subjects.

J Cereb Blood Flow Metab 14, 982–994.

Le Jeune, F., Vérin, M., N’Diaye, K., Drapier, D., Leray, E., Du Montcel, S. T., Baup, N., et al. (2010).

Decrease of prefrontal metabolism after subthalamic stimulation in

obsessive-compulsive disorder: a positron emission tomography study.

Biological psychiatry, 68, 1016-22.

LeDoux, J. (2003).

The Emotional Brain, Fear, and the Amygdala. Cellular and Mol.

Neurobiol., 23, 727-738.

Lehman, J. F., Greenberg, B. D., McIntyre, C. C., Rasmussen, S. A., & Haber, S. N. (2011).

Rules ventral prefrontal cortical axons use to reach their targets: implications for diffusion tensor

imaging tractography and deep brain stimulation for psychiatric illness.

The Journal of neuroscience: the official journal of the Society for Neuroscience, 31, 10392-402.

Lewis, M. H., Tanimura, Y., Lee, L. W., & Bodfish, J. W. (2007).

Animal models of restricted repetitive behavior in autism.

Behavioural brain research 176, 66–74.

L’hommée, E., Klinger, H., Thobois, S., Schmitt, E., Ardouin, C., Bichon, A., Kistner, A., et al. (2012).

Subthalamic stimulation in Parkinson’s disease: restoring the balance of motivated behaviours.

Brain 135, 1463-77.

Limousin, P., Greene, J., Pollak, P., Rothwell, J., Benabid, A. L., Frackowiak, R. (1997).

Changes in cerebral activity pattern due to subthalamic nucleus or internal pallidum

stimulation in Parkinson’s disease.

Ann Neurol, 42, 283-291.

Lipsman N, Neimat JS, Lozano AM (2007).

Deep brain stimulation for treatment-refractory obsessive-compulsive disorder: the search

for a valid target.

Neurosurgery 61, 1-11.

Liu, X., Hairston, J., Schrier, M., & Fan, J. (2011).

Common and distinct networks underlying reward valence and processing stages:

a meta-analysis of functional neuroimaging studies.

229

References

Neuroscience and biobehavioral reviews, 35, 1219–36.

Lozano, A. M., Mayberg, H. S., Giacobbe, P., Hamani, C., Craddock, R. C., & Kennedy, S. H. (2008).Subcallosal cingulate gyrus deep brain stimulation for treatment-resistant depression.

Biological psychiatry, 64, 461-7.

Lozano, A. M., Giacobbe, P., Hamani, C., Rizvi, S. J., Kennedy, S. H., Kolivakis, T. T.,

Debonnel, G., et al. (2011).

A multicenter pilot study of subcallosal cingulate area deep brain stimulation for

treatment-resistant depression.

Journal of neurosurgery, 1-8.

Lozano, A. M., & Lipsman, N. (2013).

Probing and Regulating Dysfunctional Circuits Using Deep Brain Stimulation.

Neuron, 77, 406–424.

Luigjes J, Mantione M, Van den Brink W, Schuurman PR, Van den Munckhof P, Denys D (2011).

Deep brain stimulation increases impulsivity in two patients with obsessive-compulsive disorder.

Int Clin Psychopharm 26, 338–40.

Luigjes J, van den Brink W, Feenstra M, van den Munckhof P, Schuurman PR, Schippers R,

Mazaheri A, De Vries TJ, Denys D (2011).

Deep brain stimulation in addiction: a review of potential brain targets.

Mol. Psychiatry 17, 572-83.

M

Mahendran, R. (2000).

Case Report: Obsessive Compulsive Disorder Following Left Middle Cerebral Artery Infarct.

Singapore Med. J., 41, 498-499.

Malison RT, Price LH, Berman R, van Dyck CH, Pelton GH, Carpenter L et al. (1998).

Reduced brain serotonin transporter availability in major depression as measured by

[¹²³I]-2bcarbomethoxy-3b-(4-iodophenyl)tropane and single photon emission computed

tomography.

Biol Psychiatry 44, 1090–1098.

Mallet L, Mesnage V, Houeto JL et al. (2002).

Compulsions, Parkinson’s disease, and stimulation.

Lancet, 360, 1302-1304.

Mallet L., Polosan M., Jaafari N., et al., (2008).

Subthalamic nucleus stimulation in severe obsessive-compulsive disorder.

N. Engl. J. Med., 359, 2121–34.

230

Malone, D. a, Dougherty, D. D., Rezai, A. R., Carpenter, L. L., Friehs, G. M., Eskandar, E. N., Rauch, S. L., et al. (2009).Deep brain stimulation of the ventral capsule/ventral striatum for treatment-resistant depression.

Biological psychiatry, 65, 267-75.

Maner JK, Schmidt NB (2006).

The Role of Risk Avoidance in Anxiety.

Behavior Therapy 37, 181–9.

Mantione M, van de Brink W, Schuurman PR, Denys D (2010).

Smoking cessation and weight loss after chronic deep brain stimulation of the nucleus

accumbens: therapeutic and research implications: case report.

Neurosurgery 66, E218.

Marsh, R., Horga, G., Parashar, N., Wang, Z., Peterson, B. S., & Simpson, H. B. (2013).

Altered Activation in Fronto-Striatal Circuits During Sequential Processing of Conflict in

Unmedicated Adults with Obsessive-Compulsive Disorder.

Biological psychiatry, 2013 Mar 12.

Martin-Soelch C, Missimer J, Leenders KL, Schultz W (2003).

Neural activity related to the processing of increasing monetary reward in smokers and

non-smokers.

Eur.J.Neurosci. 18, 680-688.

Martinez D, Greene K, Broft A, Kumar D, Liu F, Narendran R, Slifstein M, et al. (2009).

Lower level of endogenous dopamine in patients with cocaine dependence: findings from PET

imaging of D(2)/D(3) receptors following acute dopamine depletion.

Am J Psychiatry 166, 1170-1177.

Mataix-Cols D, Cullen S, Lange K, Zelaya F, Andrew C, Amaro E, Brammer MJ, Williams SC,

Speckens A, Phillips ML (2003).

Neural Correlates of Anxiety Associated with Obsessive-Compulsive Symptom Dimensions in

Normal Volunteers.

Biol. Psychiatry, 53, 482-493.

Mataix-Cols D, Wooderson S, Lawrence N, Brammer MJ, Speckens A, Phillips ML. (2004).

Distinct neural correlates of washing, checking, and hoarding symptom dimensions in

obsessive-compulsive disorder.

Arch.Gen.Psychiatry 61, 564-576.

Mazars, G. J. (1975).

Intermittent stimulation of nucleus ventralis posterolateralis for intractable pain.

Surgical Neurology, 4, 93-95.

McIntyre, C. C., Savasta, M., Walter, B. L., & Vitek, J. L. (2004).

231

References

How does deep brain stimulation work? Present understanding and future questions.

Journal of clinical neurophysiology: official publication of the American Electroencephalographic Society,

21, 40–50.

McIntyre, C.C. & Hahn, P.J. (2010).

Network perspectives on the mechanisms of deep brain stimulation.

Neurobiol. Dis., 38, 329-337.

McKeon J, McGuffin P, Robinson P (1984).

Obsessive-Compulsive Neurosis Following Head Injury: A Report of Four Cases.

Brit. J. Psychiatry, 144, 190-192.

Medtronic (2006).

MRI Guidelines for Medtronic Deep Brain Stimulation Systems: Physician’s Manual.

Minneapolis, Medtronic.

Menzies, L., Chamberlain, S. R., Laird, A. R., Thelen, S. M., Sahakian, B. J.,

& Bullmore, E. T. (2008).

Integrating evidence from neuroimaging and neuropsychological studies of

obsessive-compulsive disorder: the orbitofronto-striatal model revisited.

Neuroscience and biobehavioral reviews, 32, 525-49.

Meunier, D., Ersche, K. D., Craig, K. J., Fornito, A., Merlo-Pich, E., Fineberg, N. a,

Shabbir, S. S., et al. (2011).

Brain functional connectivity in stimulant drug dependence and obsessive-compulsive disorder.

NeuroImage, 59, 1461–1468.

Mink, J.W. (2001).

Neurobiology of basal ganglia circuits in Tourette syndrome: faulty inhibition of unwanted

motor patterns?

Advances in Neurology, 85, 113-22.

Mittal VA, Karlsgodt K, Zinberg J, Cannon TD, Bearden CE (2010).

Identification and Treatment of a Pineal Region Tumor in an Adolescent With Prodromal

Psychotic Symptoms.

Am. J. Psychiatry, 167, 1033-1037.

Moniz, A.E. (1936).

Essai d’un traitement chirurgical de certaines psychoses.

Bulletin de l’Academie de Médecine (Paris), 115, 385-92.

Montgomery EB Jr., Gale JT (2008).

Mechanisms of action of deep brain stimulation (DBS).

Neurosci. Biobehav. Rev., 32, 388–407.

232

Moore GJ, MacMaster FP, Stewart C, Rosenberg DR (1998).

Case study: caudate glutamatergic changes with paroxetine therapy for paediatric

obsessive-compulsive disorder.

J Am Acad Child Adolesc Psychiatry 37, 663-667.

Mordecai D, Shaw RJ, Fisher PG, Mittelstadt PA, Guterman T, Donaldson SS (2000).

Case Study: Suprasellar Germinoma Presenting With Psychotic and

Obsessive-Compulsive Symptoms.

J. Am. Acad. Child. Adolesc. Psychiatry, 39, 116-119.

Moresco RM, Pietra L, Henin M et al. (2007).

Fluvoxamine treatment and D2 receptors: a pet study on OCD drug-naïve patients.

Neuropsychopharmacology 32, 197-205.

N

Nakajima T, Nimura T, Yamaguchi K, Ando T, Itoh M, Yoshimoto T, Shirane R (2003).

The impact of stereotactic pallidal surgery on the dopamine D2 receptor in Parkinson disease:

a positron emission tomography study.

J Neurosurg 98, 57-63.

Nakamae T, Narumoto J, Sakai Y, Nishida S, Yamada K, Nishimura T, Fukui K (2011).

Diffusion tensor imaging and tract-based spatial statistics in obsessive-compulsive disorder.

J. Psychiatr. Res. 45, 687–690

Narayanaswamy J C, Jose D, Kalmady S, Venkatasubramanian G, R. Y. (2013).

Clinical correlates of nucleus accumbens volume in drug-naive, adult patients with

obsessive-compulsive disorder.

Aust N Z J Psychiatry. June 4.

Naqvi NH, Bechara A. (2010).

The insula and drug addiction: an interoceptive view of pleasure, urges, and decision-making.

Brain Struct Funct. 214, 435-50.

Nestler, E. J., & Carlezon, W. a. (2006).

The mesolimbic dopamine reward circuit in depression.

Biological psychiatry, 59, 1151-9.

Neuner, I., Kupriyanova, Y., Stöcker, T., Huang, R., Posnansky, O., Schneider, F., Tittgemeyer,

M., Shah, N.J. (2010).

White-matter abnormalities in Tourette syndrome extend beyond motor pathways.

Neuroimage 51(3), 1184-93.

Nielen MM, den Boer JA, Smid HG (2009).

Patients with obsessive-compulsive disorder are impaired in associative learning based on

233

References

external feedback.

Psychol.Med 39, 1519-1526.

Nolfe G, Serra FP, Palma V, Buscaino GA (1998).

Brainstem involvement in obsessive-compulsive disorder.

Biol. Psychol., 48, 69-77.

Nuttin, B. J., Gabriëls, L. a., Cosyns, P. R., Meyerson, B. a., Andréewitch, S., Sunaert, S. G.,

Maes, A. F., et al. (2003).

Long-term Electrical Capsular Stimulation in Patients with Obsessive-Compulsive Disorder.

Neurosurgery, 52, 1263-1274.

Nuttin, B., Cosyns, P., Demeulemeester, H., Gybels, J., Meyerson, B. (1999).

Electrical stimulation in anterior limbs of internal capsules in patients with

obsessive-compulsive disorder.

Lancet 354, 1526.

O

O’ Doherty JP, Deichmann R, Critchley HD, Dolan RJ (2002).

Neural responses during anticipation of a primary taste reward.

Neuron 33, 815–826.

Ogai M, Iyo M, Mori N, Takei N (2005).

A right orbitofrontal region and OCD symptoms: A case report.

Acta Psychiatrica Scandinavica, 111, 74–76.

Oh JH, Ahn BY, Jo MK, Yoon YJ, Park KH, Na DL, Kim EJ (2011).

Obsessive-Compulsive Behavior Disappearing after Left Capsular Genu Infarction.

Case Rep. Neurol., 1, 18-20.

Okun MS, Mann G, Foote KD et al. (2007).

Deep brain stimulation in the internal capsule and nucleus accumbens region: responses

observed during active and sham programming.

J Neurol Neurosurg Psychiatry 78, 310-314.

Olver JS, O’ Doherty G, Jones GR, Burrows GD, Tochon-Danguy HJ, Ackermann U, Scott A,

Norman TR (2009).

Dopamine D1 receptor binding in the striatum of patients with obsessive-compulsive disorder.

J Affect Disord., 114, 321-6.

Olvera-Cortés ME, Anguiano-Rodríguez P, López-Vázquez MA, Alfaro JM (2008).

Serotonin/dopamine interaction in learning.

Prog Brain Res 172, 567-602.

234

Oostenveld, R., Fries, P., Maris, E. & Schoffelen (2011).

FieldTrip: Open source software for advanced analysis of MEG, EEG, and invasive

electrophysiological data.

Comput. Intellig. Neurosci.156869.

P

Page, L. a, Rubia, K., Deeley, Q., Daly, E., Toal, F., Mataix-Cols, D., Giampietro, V., et al. (2009).

A functional magnetic resonance imaging study of inhibitory control in

obsessive-compulsive disorder.

Psychiatry Research 174, 202–9.

Paradis CM, Friedman S, Hatch M, Lazar RM (1992).

Obsessive-Compulsive Disorder Onset after Removal of a Brain Tumor.

J. Nerv. Ment. Dis. 180, 535-536.

Patzold, T. & Brüne, M. (2002).

Case Report: Obsessive Compulsive Disorder in Huntington Disease:

A Case of Isolated Obsessions Successfully Treated With Sertraline.

Neuropsychiatry Neuropsychol. Behav. Neurol., 15, 216-219.

Paulus MP, Rogalsky C, Simmons A, Feinstein JS, Stein MB (2003).

Increased activation in the right insula during risk-taking decision making is related to harm

avoidance and neuroticism.

Neuroimage 19, 1439–48.

Perani D, Garibotto V, Gorini A, Moresco RM, Henin M, Panzacchi A, Matarrese M,

Carpinelli A, Bellodi L, Fazio F (2008).

In vivo PET study of 5HT(2a) serotonin and D(2) dopamine dysfunction in drug-naïve

obsessive-compulsive disorder.

Neuroimage, 42, 306-14.

Peterson BS, Bronen RA, Duncan CC (1996).

Three cases of symptom change in Tourette’s syndrome and obsessive-compulsive disorder

associated with paediatric cerebral malignancies.

J. Neurol. Neurosurg. Psychiatry, 61, 497-505.

Peterson, B.S., Thomas, P., Kane, M.J., Scahill, L., Zhang, H., Bronen, R., et al. (2003).

Basal ganglia volumes in patients with Gilles de la Tourette syndrome.

Archives of General Psychiatry, 60, 415-24.

Pfund, D.C. Chugani, C. Juhasz, O. Muzik, H.T., Chugani, I.B. Wilds, N. Seraji-Bozorgzad and

G.J. Moore (2000).

Evidence for coupling between glucose metabolism and glutamate cycling using FDG PET and

1H magnetic resonance spectroscopy in patients with epilepsy.

235

References

Journal of Cerebral Blood Flow and Metabolism 20, 871–878.

Phillips ML, Marks IM, Senior C, Lythgoe D, O’Dwyer AM, Meehan O, Williams SC, Brammer MJ,

Bullmore ET, McGuire PK (2000).

A differential neural response in obsessive-compulsive disorder patients with washing compared

with checking symptoms to disgust.

Psychol.Med. 30, 1037-1050.

Phillips MD, Baker KB, Lowe MJ, Tkach JA, Cooper SE, Kopell BH, Rezai AR (2006).

Parkinson disease: pattern of functional MR imaging activation during deep brain stimulation

of subthalamic nucleus—initial experience.

Radiology 239, 209-216.

Pirker W, Asenbaum S, Hauk M, Kandlhofer S, Tauscher J, Willeit M, et al. (2000).

Imaging serotonin and dopamine transporters with 123I-ß-CIT SPECT: binding kinetics and

effects of normal aging.

J Nucl Med 41, 36–44.

Pizzagalli DA, Holmes AJ, Dillon DG, Goetz EL, Birk JL, Bogdan R, Dougherty DD,

Iosifescu DV, Rauch SL, Fava M (2009).

Reduced caudate and nucleus accumbens response to rewards in unmedicated individuals with

major depressive disorder.

Am.J.Psychiatry 166, 702-710.

Pogarell O, Poepperl G, Mulert C et al. (2005).

SERT and DAT availabilities under citalopram treatment in obsessive-compulsive disorder (OCD).

Eur Neuropsychopharmacol. 15, 521-524.

Pogarell, O., Hamann, C., Popperl, G., Juckel, G., Chouker, M., Zaudig, M., Riedel, M.,

Moller, H.J., Hegerl, U., Tatsch, K. (2003).

Elevated brain serotonin transporter availability in patients with obsessive-compulsive disorder.

Biol. Psychiatry 54, 1406–1413.

Pogarell O, Juckel G, Mavrogiorgou P, Mulert C, Folkerts M, Hauke W, Zaudig M, Möller HJ,

Hegerl U. (2006).

Symptom-specific EEG power correlations in patients with obsessive-compulsive disorder.

Int. J. Psychophysiol. 62, 87-92.

Potenza MN (2006).

Should addictive disorders include non-substance-related conditions?

Addiction. 101(suppl 1), 142-151.

Preuschoff K, Bossaerts P, Quartz SR (2006).

Neural Differentiation of Expected Reward and Risk in Human Subcortical Structures.

Neuron 51, 381–90.

236

Preuschoff K, Quartz SR, Bossaerts P (2008).

Human insula activation reflects risk prediction errors as well as risk.

J. Neurosci. 28, 2745–52.

Price BH, Baral I, Cosgrove GR, Rauch SL, Nierenberg AA, Jenike MA, Cassem EH (2001).

Improvement in Severe Self-Mutilation Following Limbic Leucotomy:

A Series of 5 Consecutive Cases.

Journal of Clinical Psychiatry, 62, 925-932.

Puigdemont, D., Perez-Egea, R., Portella, M. J., Molet, J., de Diego-Adelino, J., Gironell, A., Radua, J.,

Gomez-Anson, B., Rodriguez, R., Serra, M., de, Quintana C., Artigas, F., Alvarez, E.,and Perez, V. (2011).

Deep brain stimulation of the subcallosal cingulate gyrus: further evidence in

treatment-resistant major depression.

Int.J.Neuropsychopharmacol. Jul 22:1-13.

Pujol J, Soriano-Mas C, Alonso P, Cardoner N, Menchón JM, Deus J, Vallejo J (2004).

Mapping Structural Brain Alterations in Obsessive-Compulsive Disorder.

Arch. Gen. Psychiatry, 61, 720-730.

R

Radua, J., van den Heuvel, O. a, Surguladze, S., & Mataix-Cols, D. (2010).

Meta-analytical comparison of voxel-based morphometry studies in obsessive-compulsive

disorder vs other anxiety disorders.

Archives of general psychiatry, 67, 701-11.

Rai A, Chopra A, Das P (2011).

Obsessive-compulsive disorder after right temporal-lobe hemorrhage.

J. Neuropsychiatry Clin. Neurosci., 23, E13.

Rasmussen S, Eisen J (2002).

The course and clinical features of obsessive-compulsive disorder.

Neuropsychopharmacology - 5th generation of progress.

Philadelphia, pennsylvania: Lippincott, Williams & Wilkins, p. 1593–607.

Rauch, S.L. (2003).

Neuroimaging and neurocircuitry models pertaining to the neurosurgical treatment of

psychiatric disorders.

Neurosurg Clin N Am 14, 213–223.

Rauch, S. L., Dougherty, D. D., Malone, D., Rezai, A., Friehs, G., Fischman, A. J.,

Alpert, N. M., et al. (2006).

A functional neuroimaging investigation of deep brain stimulation in patients with

obsessive-compulsive disorder.

Journal of neurosurgery, 104, 558-65.

237

References

Rauch SL, Wedig MM, Wright CI, Martis B, McMullin KG, Shin LM, Cannistraro PA,

Wilhelm S (2007).

Functional magnetic resonance imaging study of regional brain activation during implicit

sequence learning in obsessive-compulsive disorder.

Biol.Psychiatry 61, 330-336.

Reimold M., M. N. Smolka, A. Zimmer, A. Batra, A. Knobel, C. Solbach, A. Mundt, H. U.

Smoltczyk, D. Goldman, K. Mann, G. Reischl, H.-J. Machulla, R. Bares, Heinz A (2007).

Reduced availability of serotonin transporters in obsessive-compulsive disorder correlates with

symptom severity – a [¹¹C]DASB PET study.

J Neural Transm 114, 1603–1609

Reuter J, Raedler T, Rose M, Hand I, Gläscher J, Büchel C (2005).

Pathological gambling is linked to reduced activation of the mesolimbic reward system.

Nat Neurosci. 8, 147-8.

Remijnse PL, Nielen MM, van Balkom AJ, Cath DC, van OP, Uylings HB, Veltman DJ. (2006).

Reduced orbitofrontal-striatal activity on a reversal learning task in

obsessive-compulsive disorder.

Arch.Gen.Psychiatry 63[11], 1225-1236.

Remijnse, P. L., Van den Heuvel, O. a, Nielen, M. M. a, Vriend, C., Hendriks,G.-J.,

Hoogendijk, W. J. G., Uylings, H. B. M., et al. (2013).

Cognitive inflexibility in obsessive-compulsive disorder and major depression is associated with

distinct neural correlates.

PloS one, 8, e59600.

Rezai AR, Baker KB, Tkach JA, Phillips M, Hrdlicka G, Sharan AD, Nyenhuis J, Ruggieri P,

Shellock FG, Henderson J (2005).

Is magnetic resonance imaging safe for patients with neurostimulation systems used for deep

brain stimulation?

Neurosurgery 57, 1056- 1062; discussion 1056-1062.

Robbins, T. W., Gillan, C. M., Smith, D. G., Wit, S. D., & Ersche, K. D. (2011).

Neurocognitive endophenotypes of impulsivity and compulsivity: towards dimensional psychiatry.

Trends Cogn. Sci. 16, 81-91.

Robinson, O. J., Cools, R., Carlisi, C. O., Sahakian, B. J., & Drevets, W. C. (2011).

Ventral Striatum Response During Reward and Punishment Reversal Learning in Unmedicated

Major Depressive Disorder.

American Journal of Psychiatry, 169, 152-9.

Rosario-Campos MC, Leckman JF, Mercadante MT, Shavitt RG, Prado HS, Sada P, Zamignani D,

Miguel EC (2001).

Adults with early-onset obsessive-compulsive disorder.

238

Am J Psychiatry 158, 1899-903.

Rosenberg D.R., Y. Mirza, A. Russell, J. Tang, J.M. Smith, S.P. Banerjee, R. Bhandari,

M. Rose, J. Ivey, C. Boyd and G.J. Moore (2004).

Reduced anterior cingulate glutamatergic concentrations in childhood OCD and major

depression versus healthy controls.

Journal of the American Academy of Child and Adolescent Psychiatry 43, pp. 1146–1153.

Rosenberg DR, MacMaster FP, Keshavan MS, Fitzgerald KD, Stewart CM, Moore (2000).

Decrease in caudate glutamatergic concentrations in paediatric obsessive-compulsive disorder

patients taking paroxetine.

J Am Acad Child Adolesc Psychiatry 39, 1096–1103

Rotge, J., Guehl, D., Dilharreguy, B., Cuny, E., Tignol, J., Bioulac, B., Allard, M., et al. (2008).

Examen critique Provocation of obsessive-compulsive symptoms: a quantitative voxel-based

meta-analysis of functional neuroimaging studies.

Journal of Psychiatry & Neuroscience 33, 405-412.

Roth, R. M., Saykin, A. J., Flashman, L. a, Pixley, H. S., West, J. D., & Mamourian, A. C. (2007).

Event-related functional magnetic resonance imaging of response inhibition in

obsessive-compulsive disorder.

Biological psychiatry 62, 901–9

Rothfeld JM. (1995).

Generalized dystonia and obsessive-compulsive disorder associated with bilateral circumscribed

magnetic resonance signal changes in the putamen.

J. Nerv. Ment. Dis. 183, 113-4.

Ruscio AM, Stein DJ, Chiu WT, Kessler RC (2010).

The epidemiology of obsessive-compulsive disorder in the National Comorbidity Survey

Replication.

Mol Psychiatry. 15, 53-63.

Rushing EJ, Sandberg GD, Judkins AR, Vezina G, Kadom N, Myseros JS, Packer RJ, Santi M. (2006).

Germinoma: unusual imaging and pathological characteristics.Report of two cases.

J. Neurosurg, 104, 2Suppl, 143-148.

S

Saiz PA, Garcia-Portilla MP, Arango C, Morales B, Bascaran MT, Martinez-Barrondo S, Florez

G, Sotomayor E, Paredes B, Alvarez C, San Narciso G, Carreño E, Bombin I, Alvarez V, Coto E,

Fernandez JM, Bousoño M, Bobes J (2008).

Association study between obsessive-compulsive disorder and serotonergic candidate genes.

Prog Neuropsychopharmacol Biol Psychiatry. 32, 765-70.

239

References

Sakai, Y., Narumoto, J., Nishida, S., Nakamae, T., Yamada, K., Nishimura, T., & Fukui, K. (2010).

Corticostriatal functional connectivity in non-medicated patients with

obsessive-compulsive disorder.

Eur Psychiatry, 26, 463-9.

Saxena S, Brody AL, Schwartz JM, Baxter LR (1998).

Neuroimaging and frontal-subcortical circuitry in obsessive-compulsive disorder.

Br. J. Psychiatry, 173, 26-37.

Saxena, S., & Rauch, S. L. (2000).

Functional neuroimaging and the neuroanatomy of obsessive-compulsive disorder.

The Psychiatric clinics of North America 57, Suppl 8, 26-35.

Schienle A, Schafer A, Stark R, Walter B, Vaitl D (2005).

Neural responses of OCD patients towards disorder-relevant, generally disgust-inducing and

ear-inducing pictures.

Int.J.Psychophysiol. 57, 69-77.

Schlaepfer, T. E., Cohen, M. X., Frick, C., Kosel, M., Brodesser, D., Axmacher, N., Joe, A. Y., et al. (2008).

Deep brain stimulation to reward circuitry alleviates anhedonia in refractory major depression.

Neuropsychopharmacology, 33, 368-77.

Schmand B, Bakker D, Saan R, Louman J (1991).

[The Dutch Reading Test for Adults: a measure of premorbid intelligence level].

Tijdschr Gerontol Geriatr. 22, 15–9.

Schmuckermair, C., Gaburro, S., Sah, A., Landgraf, R., Sartori, S. B., & Singewald, N. (2013).

Behavioral and neurobiological effects of deep brain stimulation in a mouse model of high

anxiety- and depression-like behavior.

Neuropsychopharmacology, 38, 1234–44.

Schneier FR, Liebowitz MR, Abi-Dargham A, Zea-Ponce Y, Lin SH, Laruelle M (2000).

Low dopamine D(2) receptor binding potential in social phobia.

Am J Psychiatry. 157, 457-9.

Schneier FR, Martinez D, Abi-Dargham A, Zea-Ponce Y, Simpson HB, Liebowitz MR,

Laruelle M (2008).

Striatal dopamine D(2) receptor availability in OCD with and without comorbid social anxiety

disorder: preliminary findings.

Depress Anxiety 25, 1-7.

Schultz W, Tremblay L, Hollerman JR (2000).

Reward processing in primate orbitofrontal cortex and basal ganglia.

Cereb.Cortex 10, 272-284.

240

Schultz W (1998).

Predictive reward signal of dopamine neurons.

J Neurophysiol. 80, 1-27.

Schwartzer, J. J., Careaga, M., Onore, C. E., Rushakoff, J. a, Berman, R. F. & Ashwood, P. (2013).

Maternal immune activation and strain specific interactions in the development of autism-like

behaviors in mice.

Translational psychiatry, 3, e240.

Scicutella, A. (2000).

Late-Life Obsessive-Compulsive Disorder and Huntington’s Disease.

J. Neuropsychiatry Clin. Neurosci., 12, 288-289.

Sesia T, Bulthuis V, Tan S, Lim LW, Vlamings R, Blokland A, Steinbusch HWM, et al. (2010).

Deep brain stimulation of the nucleus accumbens shell increases impulsive behavior and tissue

levels of dopamine and serotonin.

Experimental Neurology 225, 302-309.

Sheehan DV, Lecrubier Y, Sheehan KH, Amorim P, Janavs J, Weiller E, Hergueta T, Baker R,

Dunbar GC (1998).

The Mini-International Neuropsychiatric Interview (M.I.N.I.): the development and validation

of a structured diagnostic psychiatric interview for DSM-IV and ICD-10.

J.Clin.Psychiatry 59 Suppl 20, 22-33.

Simpson, H.B., Lombardo, I., Slifstein, M., Huang, H.Y., Hwang, D.R., Abi-Dargham, A.,

Liebowitz, M.R., Laruelle, M. (2003).

Serotonin transporters in obsessive-compulsive disorder: a positron emission tomography

study with [¹¹C]McN 5652.

Biol. Psychiatry 54,1414–1421.

Simpson, S. & Baldwin, B. (1995).

Neuropsychiatry and SPECT of an Acute Obsessive-Compulsive Syndrome Patient.

Br. J. Psychiatry, 166, 390-392.

Singer T, Critchley HD, Preuschoff K (2009).A common role of insula in feelings, empathy and uncertainty.

Trends Cogn. Sci. 13, 334–40.

Slama, F., Amrani, H., Leboyer, M., & Houenou, J. (2012).

Idiopathic basal ganglia calcification and pathological hoarding.

J. Neuropsychiatry Clin. Neurosci., 24, E9.

Smith GS, Dewey SL, Brodie JD, Logan J, Vitkun SA, Simkowitz P, Schloesser R, Alexoff DA,

Hurley A, Cooper T, Volkow ND (1997).

Serotonergic modulation of dopamine measured with [¹¹C]raclopride and PET in normal

241

References

human subjects.

Am J Psychiatry 154, 490–496

Smith, D. G., & Robbins, T. W. (2013).

The neurobiological underpinnings of obesity and binge eating: a rationale for adopting

the food addiction model.

Biological psychiatry, 73(9), 804–10.

Smolders R, Mazaheri A, van Wingen G, Figee M, de Koning PP, Denys D. (2013).

Deep Brain Stimulation Targeted at the Nucleus Accumbens Decreases the Potential for

Pathologic Network Communication.

Biological Psychiatry Apr 23.

Solyom L, Turnbull IM, Wilensky M. (1987).

A case of self-inflicted leucotomy.

Br. J. Psychiatry, 151, 855-870.

Soomro GM, Altman D, Rajagopal S, Oakley-Browne M (2008).

Selective serotonin re-uptake inhibitors (SSRIs) versus placebo for

obsessive compulsive disorder (OCD).

Cochrane Database Syst Rev. 2008;(1):CD001765.

Spreckelmeyer KN, Krach S, Kohls G, Rademacher L, Irmak A, Konrad K, Kircher T,

Grunder G. (2009).

Anticipation of monetary and social reward differently activates mesolimbic brain structures in

men and women.

Soc.Cogn Affect.Neurosci. 4, 158-165.

Starck G, Ljungberg M, Nilsson M, Jönsson L, Lundberg S, Ivarsson T, Ribbelin S, Ekholm S,

Carlsson A, Forssell-Aronsson E, Carlsson ML (2008).

A 1H magnetic resonance spectroscopy study in adults with obsessive compulsive disorder:

relationship between metabolite concentrations and symptom severity.

J Neural Transm. 115, 1051-62.

Starcke K, Tuschen-Caffier B, Markowitsch HJ, Brand M (2010).

Dissociation of decisions in ambiguous and risky situations in obsessive–compulsive disorder.

Psychiatry Research. 175, 114–20.

Stein DJ, Fineberg NA, Bienvenu OJ, Denys D, Lochner C, Nestadt G, Leckman JF, Rauch SL,

Phillips KA. (2010).

Should OCD be classified as an anxiety disorder in DSM-V?

Depress Anxiety 27, 495-506

Stefurak T, Mikulis D, Mayberg H, Lang AE, Hevenor S, Pahapill P, Saint-Cyr J, Lozano A (2003).

Deep brain stimulation for Parkinson’s disease dissociates mood and motor circuits: a functional

242

MRI case study.

Mov Disord 18, 1508-1516.

Stengler-Wenzke K, Müller U, Barthel H, Angermeyer MC, Sabri O, Hesse S (2006).

Serotonin transporter imaging with [¹²³I]beta-CIT SPECT before and after one year of

citalopram treatment of obsessive-compulsive disorder.

Neuropsychobiology 53, 40-5.

Stengler-Wenzke, K., Müller, U., Angermeyer, M.C., Sabri, O., Hesse, S (2004).

Reduced serotonin transporter-availability in obsessive-compulsive disorder (OCD).

Eur. Arch. Psychiatry Clin. Neurosci. 254, 252–255.

Stern ER, Welsh RC, Fitzgerald KD, Gehring WJ, Lister JJ, Himle JA, et al. (2011).

Hyperactive error responses and altered connectivity in ventromedial and frontoinsular cortices

in obsessive-compulsive disorder.

Biol. Psychiatry. 69, 583–91.

Stice E, Yokum S, Bohon C, Marti N, Smolen A (2010).

Reward circuitry responsivity to food predicts future increases in body mass:

Moderating effects of DRD2 and DRD4.

Neuroimage 50, 1618–1625.

Stoeckel, L. E., Kim, J., Weller, R. E., Cox, J. E., Cook, E. W., & Horwitz, B. (2009).

Effective connectivity of a reward network in obese women.

Brain research bulletin, 79, 388–95.

Sturm V, Lenartz D, Koulousakis A, Treuer H, Herholz K, Klein JC, Klosterkotter J (2003).

The nucleus accumbens: a target for deep brain stimulation in

obsessive-compulsive- and anxiety-disorders.

J.Chem.Neuroanat. 26, 293-299.

Sturm, V., Fricke, O., Bührle, C. P., Lenartz, D., Maarouf, M., Treuer, H., Mai, J. K., et al. (2012).

DBS in the basolateral amygdala improves symptoms of autism and related self-injurious

behavior: a case report and hypothesis on the pathogenesis of the disorder.

Frontiers in human neuroscience, 6, 341.

Sun, B. and Liu, W (2012).

Surgical Treatments for Drug Addictions in Humans.

Deep Brain Stimulation: A New Frontier in Psychiatry. Berlin;

Heidelberg: Springer,131-140

Swoboda, K. J. & Jenike, M.A. (1995).

Frontal abnormalities in a patient with obsessive-compulsive disorder:

The role of structural lesions in obsessive-compulsive behavior.

Neurol., 45, 2130-2134.

243

References

T

Talairach, J., Hécaen, H, David, M. (1949).

Lobotomie préfrontale limitée par électrocoagulation des fibres thalamo-forntales à leur

émergence du bras antérieur de la capsule interne.

In : Proceedings of the 4th Congrès Neurologique International, Masson, Paris, p141.

Thobois S, Jouanneau E, Bouvard M, Sindou M (2004).

Case Report: Obsessive-compulsive disorder after unilateral caudate nucleus bleeding.

Acta Neurochirurgica, 146, 1027-1031.

Tobler PN, Christopoulos GI, O’Doherty JP, Dolan RJ, Schultz W. (2009).

Risk-dependent reward value signal in human prefrontal cortex.

Proc.Natl.Acad.Sci.U.S.A 106, 7185-7190.

Tonkonogy, J. & Barreira, P. (1989).

Obsessive-Compulsive Disorder and Caudate-Frontal Lesion.

Neuropsychiatry Neuropsychol. Behav. Neurol., 2, 203-209.

Tricomi, E., Balleine, B. W., & O’Doherty, J. P. (2009).

A specific role for posterior dorsolateral striatum in human habit learning.

The European journal of neuroscience 29, 2225-32.

Trummer, M., Eustacchio, S., Unger, F., Tillich, M., & Flaschka, G. (2002).

Right hemispheric frontal lesions as a cause for anorexia nervosa report of three cases.

Acta Neurochir., 144, 797-801.

Tzourio-Mazoyer N, Landeau B, Papathanassiou D, Crivello F, Etard O, Delcroix N, Mazoyer B,

Joliot M (2002).

Automated anatomical labeling of activations in SPM using a macroscopic anatomical

parcellation of the MNI MRI single-subject brain.

Neuroimage 15, 273-89

U

Uher R and Treasure J (2005).

Brain lesions and eating disorders.

J. Neurol. Neurosurg. Psychiatry; 76, 852-857.

Upadhyay, J., Maleki, N., Potter, J., Elman, I., Rudrauf, D., Knudsen, J., Wallin, D., et al. (2010).

Alterations in brain structure and functional connectivity in prescription opioid-dependent patients.

Brain 133, 2098–114.

244

V

Valencia-Alfonso, C.-E., Luigjes, J., Smolders, R., Cohen, M. X., Levar, N., Mazaheri, A.,

van den Munckhof, P., et al. (2012).

Effective deep brain stimulation in heroin addiction: a case report with complementary

intracranial electroencephalogram.

Biol. Psychiatry, 71, e35–7.

Valente AA Jr, Miguel EC, Castro CC, Amaro E Jr, Duran FL, Buchpiguel CA, Chitnis X,

McGuire PK, Busatto GF (2005).

Regional Gray Matter Abnormalities in Obsessive-Compulsive Disorder:

A Voxel-Based Morphometry Study.

Biol. Psychiatry, 58, 479-487.

Van den Heuvel OA, Veltman DJ, Groenewegen HJ, Dolan RJ, Cath DC, Boellaard R, Mesina CT,

van Balkom AJ, van OP, Witter MP, Lammertsma AA, van Dyck R. (2004).

Amygdala activity in obsessive-compulsive disorder with contamination fear: a study with

oxygen-15 water positron emission tomography.

Psychiatry Res. 132, 225-237.

Van den Heuvel OA, Remijnse PL, Mataix-Cols D, Vrenken H, Groenewegen HJ, Uylings HB,

van Balkom AJ, Veltman DJ. (2009).

The major symptom dimensions of obsessive-compulsive disorder are mediated by partially

distinct neural systems.

Brain, 132, 853-68.

Van den Hout, M. & Kindt, M. (2003).

Repeated checking causes memory distrust.

Behav. Res. Ther., 41, 301-316.

Van den Hout, M. & Kindt, M. (2004)

Obsessive-compulsive disorder and the paradoxical effects of perseverative behaviour on

experienced uncertainty.

J. Behav. Ther. Exp. Psychiatry, 35, 16-181.

Van Holst, R. J., Van den Brink, W., Veltman, D. J., & Goudriaan, A. E. (2010). Why gamblers fail to win: a review of cognitive and neuroimaging

findings in pathological gambling.

Neuroscience and biobehavioral reviews, 34(1), 87–107.

Van der Wee, N.J., Stevens, H., Hardeman, J.A., Mandl, R.C., Denys, D.A., van Megen, H.J.,

Kahn, R.S., Westenberg, H.M (2004).

Enhanced dopamine transporter density in psychotropic-naïve patients with

obsessive-compulsive disorder shown by [¹²³I]{beta}-CIT SPECT.

Am. J. Psychiatry 161, 2201–2206.

245

References

Van Dijk A, Mason O, Klompmakers A, Feenstra MGP, Denys D (2011).

Unilateral deep brain stimulation in the nucleus accumbens core does not affect local

monoamine release.

J Neurosci Meth 202, 113-118.

Van Dijk, A., Klompmakers, A, Feenstra, M. G. P., & Denys, D. (2012).

Deep brain stimulation of the accumbens increases dopamine, serotonin,‘ “and noradrenaline in

the prefrontal cortex.

Journal of neurochemistry, 123, 897–903.

Van Dijk, A., Klompmakers, A, Feenstra, M. G. P., & Denys, D. (2013).

Deep brain stimulation affects conditioned and unconditioned anxiety in different brain areas.

Translational Psychiatry, 3, e289.

Van Herk M, de Jaeger K, de Munck J, Hoogeman M, Meinders JPL, Zijp L (2000).

A delineation system for N modalities – software aspects (Extended Abstract).

In Proceedings XIII International Conference on the Use of Computers in Radiation Therapy (XII ICCR)

(ed. W. Schlegel and T. Bortfelt), pp. 73–75. Springer-Verlag : Heidelberg, Germany.

Van Laere, K., Nuttin, B., Gabriels, L., Dupont, P., Rasmussen, S., Greenberg, B. D., & Cosyns, P. (2006).

Metabolic imaging of anterior capsular stimulation in refractory obsessive-compulsive disorder:

a key role for the subgenual anterior cingulate and ventral striatum.

Journal of nuclear medicine: official publication, Society of Nuclear Medicine 47, 740-7.

Vandewalle, V. van der Linden, C. Groenewegen, H.J., Caemaert, J. (1999).

Stereotactic treatment of Gilles de la Tourette syndrome by high frequency stimulation

of thalamus.

Lancet 353, 724.

Vernaleken, I., Kuhn, J., Lenartz, D., Raptis, M., Huff, W., Janouschek, et al., (2009).

Bithalamic deep brain stimulation in Tourette syndrome is associated with reduction in

dopaminergic transmission.

Biological Psychiatry, 66, e15-17.

Volkow ND, Wang GJ, Ma Y, Fowler JS, Wong C, Ding YS, et al. (2005).

Activation of orbital and medial prefrontal cortex by methylphenidate in cocaine-addicted

subjects but not in controls: relevance to addiction.

J Neurosci. 25, 3932-9.

Volkow ND, Fowler JS, Wang GJ, Baler R, Telang F (2009).

Imaging dopamine’s role in drug abuse and addiction.

Neuropharmacology 56, Suppl 1, 3–8.

Volkow N.D., Wang G.J., Baler R.D (2011).

Reward, dopamine and the control of food intake: implications for obesity.

246

Trends Cogn. Sci. 15,37-46.

Volkow, N. D., Wang, G.-J., Tomasi, D., & Baler, R. D. (2013).

Obesity and addiction: neurobiological overlaps.

Obesity reviews : an official journal of the International Association for the Study of Obesity, 14(1), 2–18.

Volle, E., Beato, R., Levy, R., & Dubois, B. (2002).

Forced collectionism after orbitofrontal damage.

Neurology, 58, 488–490.

Volpato C, Piccione F, Cavinato M, Duzzi D, Schiff S, Foscolo L, Venneri A (2012).

Modulation of affective symptoms and resting state activity by brain stimulation in a

treatment-resistant case of obsessive-compulsive disorder.

Neurocase 19, 360-70.

Vulink NC, Denys D, Fluitman SB, Meinardi JC, Westenberg HG (2009). Quetiapine augments the effect of citalopram in non-refractory obsessive-compulsive disorder:

a randomized, double-blind, placebo-controlled study of 76 patients.

J Clin Psychiatr 70, 1001-1008.

W

Wang, L., Lee, D.Y., Bailey, E., Hartlein, J.M., Gado, M.H., Miller, M.I., et al. (2007).

Validity of large-deformation high dimensional brain mapping of the basal ganglia in adults in

Tourette syndrome.

Psychiatry Research, 154, 181-90.

Wang, Z., Maia, T.V., Marsh, R., Colibazzi, T., Gerber, A., Peterson, B.S. (2011).

The neural circuits that generate tics in Tourette’s syndrome.

American journal of Psychiatry, 168, 1326-37.

Ward, C.D. (1988).

Short report: Transient feelings of compulsion caused by hemispheric lesions: three cases.

J. Neurol., Neurosurg. Psychiatry, 51, 266-268.

Weilburg, J.B., Mesulam, M-M., Weintraub, S., Buonanno, F., Jenike, M. & Stakes, J.W. (1989).

Focal Striatal Abnormalities in a Patient With Obsessive-Compulsive Disorder.

Arch. Neurol., 46, 233-235.

Weiss, A.P. & Jenike, M.A. (2000).

Late-Onset Obsessive-Compulsive Disorder: A Case Series.

J. Neuropsychiatry Clin. Neurosci., 12, 265-268.

Welter ML, Grabli D, Vidailhet M (2010).

Deep brain stimulation for hyperkinetics disorders: dystonia, tardive dyskinesia, and tics.

247

References

Curr. Opin. Neurol., 23, 420-425.

Westenberg HGM, Verhoeven WM (1988).

CSF monoamine metabolites in patients and controls: support for a bimodal distribution in major

affective disorders.

Acta Psychiatr Scand 78: 541-549.

Whiteside SP, Port JD, Deacon BJ, Abramowitz JS (2006).

A magnetic resonance spectroscopy investigation of obsessive-compulsive disorder and anxiety.

Psychiatry Res. 2006 Mar 31;146(2):137-47.

Whiteside, S. P., Port, J. D., & Abramowitz, J. S. (2004).

A meta-analysis of functional neuroimaging in obsessive-compulsive disorder.

Psychiatry: Interpersonal and Biological Processes, 132, 69-79.

Williams AC, Owen C, Heath DA (1988).

A compulsive movement disorder with cavitation of caudate nucleus.

J. Neurol. Neurosurg. Psychiatry, 51, 447-448.

Wong, D.F., Brašic, J.R., Singer, H.S., Schretlen, D.J., Kuwabara, H., Zhou, Y., Nandi, A., Maris,

M.A., Alexander, M., Ye, W., Rousset, O., Kumar, A., Szabo, Z., Gjedde, A., Grace, A.A., (2008).

Mechanisms of dopaminergic and serotonergic neurotransmission in Tourette Syndrome:

clues from an in vivo neurochemistry study with PET.

Neuropsychopharmacology 33, 1239–1251.

Woolley, J., Heyman, I., Brammer, M., Frampton, I., McGuire, P. K., & Rubia, K. (2008).

Brain activation in paediatric obsessive compulsive disorder during tasks of inhibitory control.

British J Psychiatry 192, 25–31

Worsley KJ, Marrett S, Neelin P, Vandal AC, Friston KJ, Evans AC (1996).

A unified statistical approach for determining significant signals in images of cerebral activation.

Human Brain Mapping, 4, 58–73.

X

Xue G, Lu Z, Levin IP, Bechara A (2010).

The Impact of Prior Risk Experiences on Subsequent Risky Decision-Making:

The Role of the Insula.

Neuroimage 50, 709–16

Y

Yaryura-Tobias, J.A. & Neziroglu, F. (2003).

Basal ganglia hemorrhagic ablation associated with temporary suppression of

obsessive-compulsive symptoms.

248

Rev. Bras. Psiquiatr., 25, 40-42.

Yücel M, Wood SJ, Wellard RM, Harrison BJ, Fornito A, Pujol J, Velakoulis D, Pantelis C (2008).

Anterior cingulate glutamate-glutamine levels predict symptom severity in women with

obsessive-compulsive disorder.

Aust N Z J Psychiatry 42, 467-77.

Yücel M, Harrison BJ, Wood SJ, Fornito A, Wellard RM, Pujol J, Clarke K, Phillips ML, Kyrios M,

Velakoulis D, Pantelis C (2007).

Functional and Biochemical Alterations of the Medial Frontal Cortex in

Obsessive-Compulsive Disorder.

Archives of General Psychiatry 64, 946-955.

Z

Zandbelt BB, Vink M (2010).

On the role of the striatum in response inhibition.

PLoS One 11:e13848.

Zandbelt, B. B., Van Buuren, M., Kahn, R. S., & Vink, M. (2011).

Reduced proactive inhibition in schizophrenia is related to corticostriatal dysfunction and poor

working memory.

Biological Psychiatry 70, 1151–8.

Zhou FM, Liang Y, Salas R, Zhang L, De Biasi M, Dani JA (2005).

Corelease of dopamine and serotonin from striatal dopamine terminals.

Neuron 46, 65-74.

Zitterl W, Aigner M, Stompe T, Zitterl-Eglseer K, Gutierrez-Lobos K, Schmidl-Mohl B,

Wenzel T, Demal U, Zettinig G, Hornik K, Thau K (2007).

[¹²³I]-beta-CIT SPECT imaging shows reduced thalamus–hypothalamus serotonin transporter

availability in 24 drug free obsessive-compulsive checkers.

Neuropsychopharmacology 32, 1661-8.

Zitterl W, Aigner M, Stompe T, Zitterl-Eglseer K, Gutierrez-Lobos K, Wenzel T, Zettinig G,

Hornik K, Pirker W, Thau K (2008).

Changes in thalamus-hypothalamus serotonin transporter availability during clomipramine

administration in patients with obsessive-compulsive disorder.

Neuropsychopharmacology 33, 3126-34.

Zrinzo, L., Yoshida, F., Hariz, M. I., Thornton, J., Foltynie, T., Yousry, T. a, & Limousin, P. (2011).

Clinical safety of brain magnetic resonance imaging with implanted deep brain stimulation

hardware: large case series and review of the literature.

World neurosurgery, 76, 164–72


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