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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Passive spatial and temporal integration of excitatory synaptic inputs in cerebellar Purkinje cells of young rats.
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Passive spatial and temporal integration of excitatory synaptic inputs in cerebellar Purkinje cells of young rats.

机译:幼鼠小脑浦肯野细胞中兴奋性突触输入的被动时空整合。

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摘要

We have investigated the integration of excitatory (parallel fiber) synaptic inputs in cerebellar Purkinje cells of young rats in vitro and in a compartmental model of such a cell, based on 3D morphological reconstruction. Excitatory synaptic inputs at two independent dendritic sites were activated by electrical stimulation with various delays between the two stimuli. Population postsynaptic potentials summed linearly under current clamp condition when the two dendritic input sites were spatially separated (>200 microm) but sublinearly, in a delay dependent manner, when the input sites were close (<50 microm) to each other. Population postsynaptic currents measured under voltage clamp conditions summed linearly independent of the spatial and temporal separation of inputs. Summation of inputs in a passive compartmental model of a Purkinje cell was similar to that of Purkinje cells in vitro. We show that sublinear summation of neighboring inputs is independent of inhibitory mechanisms and suggest that sublinearity is mainly due to a locally reduced driving force.
机译:我们已经在3D形态重建的基础上研究了幼鼠小脑Purkinje细胞的兴奋性(平行纤维)突触输入的整合以及这种细胞的隔室模型的整合。通过两个刺激之间的各种延迟的电刺激来激活两个独立的树突状部位的兴奋性突触输入。当两个树突状输入位点在空间上分开(> 200微米)时,在电流钳制条件下,种群突触后电位线性求和,但当输入位点彼此接近(<50微米)时,它们呈延迟依赖的亚线性关系。在电压钳制条件下测得的群体突触后电流线性加总,与输入的空间和时间间隔无关。浦肯野细胞被动隔室模型中输入的求和与体外浦肯野细胞相似。我们表明,相邻输入的亚线性求和与抑制机制无关,并且表明亚线性主要是由于局部减小的驱动力引起的。

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