Conduction Flashcards

1
Q

( d^2 V/ d x^2 ) = -r. di/dx

A

the cable equation
r= internal resistance (causes V drop)
x= distance

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2
Q

the cable equation describes

A

AP moving along a nerve axon with the assumption that the bath or fluid outside the cell is highly conductive

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3
Q

the cable equation components:
drop in potential difference due to?
loss of current inside cable is balanced by?
Change currents to what model?

A

internal resistance
the current leaving the cable across the membrane
Hodgkin and Huxley membrane model

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4
Q

Sub-threshold stimulus

A

refers to a stimulus that is too small in magnitude to produce an action potential in excitable cells.

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5
Q

membrane length constant

A

lambda m= sqrt( rm/ra)

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6
Q

Membrane time constant

A

tau m= r.c

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7
Q

Factors determining conduction velocity

A

Fibre diameter -velocity is higher in larger fibers
Length constant (how far the currents
associated with that AP reach)
Time constant (Reciprocal of the Time Constant)
Local-circuit current intensity (max dV/dt)
Threshold potential
Temperature
Myelination

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8
Q
  1. steps in modelling conduction
A
  1. AP mechanism
  2. Squid
    3.Voltage clamp
    4- Separate Na and K currents by changing bath
    5- Find membrane conductivity for Na and K from Ohms Law
    6- Model membrane conductivity using gating probabilities n, gk
  3. Find constant voltage solution to the model in terms of n and tau
  4. Fit model to g vs t to find alpha and Beta as functions of V
  5. Model membrane currents and understand observations
  6. Deduce membrane resistance, capacitance and cytoplasm resistance
  7. Conduction velocity dependencies
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