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Nervous Circuits Reverend Dr David C.M. Taylor School of Medicine [email protected] dcmt.

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Nervous Circuits Reverend Dr David C.M. Taylor School of Medicine [email protected] http://www.liv.ac.uk/~dcmt
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Page 1: Nervous Circuits Reverend Dr David C.M. Taylor School of Medicine dcmt@liverpool.ac.uk dcmt.

Nervous Circuits

Reverend Dr David C.M. TaylorSchool of Medicine

[email protected]://www.liv.ac.uk/~dcmt

Page 2: Nervous Circuits Reverend Dr David C.M. Taylor School of Medicine dcmt@liverpool.ac.uk dcmt.

To use our understanding of the case to Be able to distinguish between upper and

lower motor neuron lesions To gain an understanding of the spinal reflexes To start to understand the control of

movement

Our objectives in this plenary

Page 3: Nervous Circuits Reverend Dr David C.M. Taylor School of Medicine dcmt@liverpool.ac.uk dcmt.

Experienced one-sided weakness in her arm and face In principle the problem could lie in the

periphery (spinal motor neurones etc.,) Or it could lie centrally (with the motor

neurones or pathways that control the spinal motor neurones)

Mrs Webster

Page 4: Nervous Circuits Reverend Dr David C.M. Taylor School of Medicine dcmt@liverpool.ac.uk dcmt.

We need to distinguish between upper and lower motor neurones.

Upper motor neurones are in the motor cortex

Lower motor neurones are in the spinal cord - think about the knee jerk reflex

So?

Page 5: Nervous Circuits Reverend Dr David C.M. Taylor School of Medicine dcmt@liverpool.ac.uk dcmt.

The descending fibres cross in the medulla en route to the spinal cord

Upper motor neurones

This image of an homunculus has been removed to avoid breach of copyright

Page 6: Nervous Circuits Reverend Dr David C.M. Taylor School of Medicine dcmt@liverpool.ac.uk dcmt.

Pathway

This image of descending motor pathways has been removed to avoid breaching copyright

Page 7: Nervous Circuits Reverend Dr David C.M. Taylor School of Medicine dcmt@liverpool.ac.uk dcmt.

Click on the black box to view video

Page 8: Nervous Circuits Reverend Dr David C.M. Taylor School of Medicine dcmt@liverpool.ac.uk dcmt.

Knee jerk reflex

stretch receptorin muscle

contraction of muscle

spinal motor neurone

Page 9: Nervous Circuits Reverend Dr David C.M. Taylor School of Medicine dcmt@liverpool.ac.uk dcmt.

Tap tendon just below patella

stretch muscle activate receptors

extensor contracts extensor mn

Renshaw cellinhibitory

interneuronesflexor relaxes flexor mn

Monosynaptic Reflex

Page 10: Nervous Circuits Reverend Dr David C.M. Taylor School of Medicine dcmt@liverpool.ac.uk dcmt.

Simple withdrawal reflex

Page 11: Nervous Circuits Reverend Dr David C.M. Taylor School of Medicine dcmt@liverpool.ac.uk dcmt.

More fully…

Page 12: Nervous Circuits Reverend Dr David C.M. Taylor School of Medicine dcmt@liverpool.ac.uk dcmt.

Full crossed extensor reflex

Page 13: Nervous Circuits Reverend Dr David C.M. Taylor School of Medicine dcmt@liverpool.ac.uk dcmt.

Simple scheme

Plan Execute

Cortical associationareas

MovementIdea Premotor andmotor cortex

Page 14: Nervous Circuits Reverend Dr David C.M. Taylor School of Medicine dcmt@liverpool.ac.uk dcmt.

Overview of control

Plan Execute

Basal ganglia

Cortical associationareas

Lateral cerebellum

intermediatecerebellum

MovementIdea Premotor andmotor cortex


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