+ All Categories
Home > Documents > I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel...

I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel...

Date post: 20-Jan-2016
Category:
Upload: allyson-daniel
View: 213 times
Download: 0 times
Share this document with a friend
Popular Tags:
23
I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.
Transcript
Page 1: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

I. Basics

Electrophysiology is the study of cell electrical

activity resulting from ion channel function.

Page 2: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

Electrolyte composition of the cell

Na+: 5-10 mMK+: 110-145 mMCa2+: 100 nMCl-: 5-50 mM

Na+: 145 mMK+: 5-10 mMCa2+: 2 mMCl-

: 145 mM

OUT ION CHANNELS

Voltage-gated Ligand-gated

} Glu, Ach

♦ GABA

IN

Page 3: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

Fundamental laws

Nernst's equation: Er = RT/F ln [Co/Ci]

Driving force = Em - Er

Ohm's law: V = R x I

Page 4: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

A simplified view of cell-cell communication

Ligand-gated channels code for input

……...….

Neurotransmitter(s)

VG channels

Voltage-gated channels code for output

Page 5: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

Baseline

Page 6: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

Na leak

Page 7: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

GABAA IPSPs

Page 8: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

GABAB IPSP

Page 9: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

Baseline

Page 10: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

Subthreshold AMPA EPSP

Page 11: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

Threshold AMPA EPSP

Page 12: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

NMDA EPSP

Page 13: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

NMDA + GABAA PSPs

Page 14: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

II. MethodsSystems level (106+cells)

- EEG, evoked potentials

Nuclear (ensemble) level (102-103+ cells)- Population spike

Single-unit (extracellular) recording (1-3 cells)- In vivo microiontophoresis

Cell level- Intracellular recording- Patch-clamp (whole-cell recording)

Subcellular level- Patch-clamp (single-channel recording)

Cellular electrophysiology

Page 15: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

Selective antagonism of GABA responses in the cuneate nucleus of the

anesthetized rat

Page 16: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

Configurations of the patch-clamp technique

Page 17: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

Configurations of the patch-clamp technique

Page 18: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

Patch-clamp dates

⟨ 1976: First patch-clamp recording (first time ion channels wereobserved!)Neher and Sakmann, Nature 260:799

⟨ 1981: Comprehensive account of patch-clamp methods publishedHamill et al., Pflügers Arch 391:85

⟨ 1989: Methods for patch-clamp in slices publishedEdwards et al., Pflügers Arch 414:600

⟨ 1991: Nobel prize awarded to Neher and Sakmann⟨ 1993: Infra-red differential interference contrast (IR-DIC) methods

publishedStuart et al., Pflügers Arch 423:511

Page 19: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

The voltage-clamp technique

Page 20: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

III. From channels to behavior

The thalamocortical augmented response (AR)

Page 21: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

Circuits involved in the AR

Page 22: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

Cellular mechanism of the AR

Page 23: I. Basics Electrophysiology is the study of cell electrical activity resulting from ion channel function.

Behavioral component of the AR


Recommended