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The significance of gap junction location in striatal fast spiking interneurons

机译:纹状体快速突触中间神经中间隙连接位置的意义

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摘要

Fast spiking (FS) interneurons in the striatum are hypothesised to control spike timing in the numerous medium spiny (MS) projection neurons by inhibiting or delaying firing in the MS neurons. The FS neurons are connected to each other through electrical gap junctions. This might synchronise the FS neurons, leading to increased influence on target neurons. Here, we explore the possible difference between proximal and distal gap junction locations. Somatic and distal dendritic gap junctions with equal effective coupling coefficient, as defined for steady-state somatic inputs, showed significantly different effective coupling coefficient with transient inputs. However, the ability to synchronise spiking in pairwise coupled FS neurons, which received synaptic inputs as during striatal up-state periods, was as effective with distal gap junctions as with proximal ones. Proximal gap junctions, however, caused synchronisation within a more precise time window.
机译:假设纹状体中的快速突触(FS)中间神经元通过抑制或延迟MS神经元的放电来控制众多中突棘(MS)投射神经元的尖峰时序。 FS神经元通过电气间隙连接彼此连接。这可能会同步FS神经元,导致对目标神经元的影响增加。在这里,我们探索近端和远端间隙连接位置之间的可能差异。为稳态体细胞输入定义的具有相等有效耦合系数的体细胞和远端树突间隙连接显示出与瞬态输入显着不同的有效耦合系数。然而,在成对耦合的FS神经元(在纹状体上调期间接受突触输入)同步尖峰的能力,与远端间隙连接和近端间隙连接一样有效。但是,近端间隙连接会在更精确的时间窗口内引起同步。

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