15.Diffusive_Noise_and_The_subthreshold_Regime

本文探讨了由随机脉冲到达产生的扩散噪声对神经元膜电位的影响,包括超阈值与次阈值刺激下膜电位的变化特性。文中还介绍了区间分布的概念及其在不同刺激条件下的表现,并讨论了变异系数(Coefficient of Variation)如何衡量放电间隔的规律性。

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Diffusive noise

Interval distribution

Because the diffusive noise generated by stochastic spike arrival, we cannot predict the exact value of the neuronal membrane potential, but only the probability that the membrane potential is in a certain interval[u0,u1]

Prob{u0<u(t)<u1|u(t^)ur}=u1u0p(u,t)du

thus ,we can get the survivor function,
SI(t|t^)=ϑp(u,t)du

the interval distribution,
PI(t|t^)=ddtϑp(u,t)du

The sub-threshold regime

sub and super threshold stimulation

Input I(t) is sub-threshold, if it generates a membrane potential that stays below the firing threshold
Input I(t) is sup-threshold, if it generates a membrane potential higher than the threshold
In the super-threshold regime,
noise broadens the interspike interval distribution.
In the sub-threshold regime,
spikes are generated by the fluctuations of the membrane potential, rather than by its mean.

coefficient of variation C

C2V=Δs2s2

Cv>1,broader than that generate by Poisson distribution
Cv=1,noise generate by Poisson distribution
Cv<1,more regular
Cv=0,regular firing with a fixed period s
Poisson neuron with absolute refractoriness,
CV=1Δabss

refractoriness make the spikes more regularly than a Poisson neuron.
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