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Factors determining the precision of the correlated firing generated by a monosynaptic connection in the cat visual pathway

机译:影响猫视觉通路中单突触连接产生的相关射击精度的因素

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摘要

Across the visual pathway, strong monosynaptic connections generate a precise correlated firing between presynaptic and postsynaptic neurons. The precision of this correlated firing is not the same within thalamus and visual cortex. While retinogeniculate connections generate a very narrow peak in the correlogram (peak width < 1 ms), the peaks generated by geniculocortical and corticocortical connections have usually a time course of several milliseconds. Several factors could explain these differences in timing precision such as the amplitude of the monosynaptic EPSP (excitatory postsynaptic potential), its time course or the contribution of polysynaptic inputs. While it is difficult to isolate the contribution of each factor in physiological experiments, a first approximation can be done in modelling studies. Here, we simulated two monosynaptically connected neurons to measure changes in their correlated firing as we independently modified different parameters of the connection. Our results suggest that the precision of the correlated firing generated by strong monosynaptic connections is mostly determined by the EPSP time course of the connection and much less by other factors. In addition, we show that a polysynaptic pathway is unlikely to emulate the correlated firing generated by a monosynaptic connection unless it generates EPSPs with very small latency jitter.
机译:在整个视觉通路中,强烈的单突触连接会在突触前和突触后神经元之间产生精确的相关放电。在丘脑和视觉皮层内,这种相关射击的精度是不同的。尽管视网膜生成连接在相关图中产生一个非常窄的峰(峰值宽度<1 ms),但由皮下和皮层连接产生的峰通常需要几毫秒的时间。几个因素可以解释这些时间精度上的差异,例如单突触EPSP的幅度(兴奋性突触后电位),其时程或多突触输入的贡献。虽然很难在生理实验中分离出每个因素的贡献,但是可以在建模研究中进行第一近似。在这里,我们模拟了两个单突触连接的神经元,以测量我们独立修改连接的不同参数时相关触发的变化。我们的结果表明,由强单突触连接产生的相关放电的精度主要取决于连接的EPSP时间过程,而不受其他因素影响。此外,我们表明多突触通路不太可能模拟单突触连接所产生的相关放电,除非它产生的潜伏期抖动非常小。

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