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Action Potential Bursts Modulate the NMDA-R Mediated Spike Timing Dependent Plasticity in a Biophysical Model

机译:动作电位突发在生物物理模型中调节NMDA-R介导的尖峰定时依赖性可塑性

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Spike timing dependent plasticity (STDP) requires the temporal association of presynaptic and postsynaptic action potentials (APs). However, some synapses in the CAl region of the hippocampus are suprisingle unreliable at signaling the arrival of single spikes to the postsynaptic neuron [4]. In such unreliable synapses pairing of excitatory postsynaptic potentials (EPSPs) and single APs at low frequencies is ineffective at generating plasticity [2], [3]. A recent computational study [7] has shown that the shape of the STDP curve strongly depends on the burst interspike interval in the presence/absence of inhibition when a presynaptic dendritic burst and a postsynaptic somatic spike were paired together. In this study, we investigate via computer simulations the conditions under which STDP is affected when now a high frequency somatic burst instead of a single spike is paired with another dendritic spike. We show that during such pairing conditions in the absence of inhibition a symmetric STDP profile with a distinct positive LTP region is evident at 10-30ms interstimulus interval and flat LTD tails at all other interstimulus intervals. The symmetry is preserved at all burst interspike intervals. When inhibition is present, the STDP profile shape into a Mexican hat shaped one or an inverted symmetrical one with flat LTP tails.
机译:尖峰定时依赖塑性(STDP)需要突触前和突触后动作电位(AP)的时间关联。然而,海马的Cal区的一些突触在向后腹膜神经元的到达时,SupriseLe不可靠,以向后腹膜神经元[4]。在这种不可靠的突触突触突触突触潜力(EPSP)和低频下的单个AP在产生可塑性时无效[2],[3]。最近的计算研究[7]表明,当突触前​​的树突突发和突触后体制尖端在一起时,STDP曲线的形状强烈取决于抑制存在/不存在的爆破间隔。在这项研究中,我们通过计算机模拟调查STDP在现在时STDP的条件在现在是高频体突发而不是单个尖峰与另一个树突峰配对。我们表明,在这种配对条件下,在没有抑制的情况下,具有不同阳性LTP区域的对称STDP曲线在10-30ms间隙间隔和平台尾部处于所有其他间隙间隔。对称性以所有突发的间隔间隔保存。当存在抑制时,STDP轮廓形状成墨西哥帽,形成一个或具有平坦LTP尾部的倒置对称的帽子。

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