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Homogeneous distribution of excitatory and inhibitory synapses on the dendrites of the cat surea triceps alpha-motoneurons increases synaptic efficacy: Computer model

机译:兴奋性和抑制性突触在猫的三头肌肱三头肌α-运动神经元的树突上的均匀分布增加了突触的功效:计算机模型

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The effects of input distribution in dendrites on postsynaptic inhibition of spinal monosynap- tic refiex were studied in morphologically and physiologically characterized alpha-motoneurons. In homogeneous (HOM) and heterogeneous (HEM) models, the location of the excitatory and inhibitory synapses was randomly selected for each bin of dendritic length. In the HOM, each compartment was forced to contain only one synapse as long as other compartments did not have at least one synapse. In the HEM. no restriction was made for synaptic distribution within a bin. EPSP amplitude in the HOM was enhanced by 28 and inhibition of EPSP peak (upon activation of inhibition) was increased by 66, compared to the HEM. These results indicate that synaptic efficacy is greater in the HOM, both for excitatory and inhibitory synapses. Thus, it is suggested that homogeneously distributed postsynaptic inhibition may serve as the powerful inhibition of the monosynaptic reflex in realistic alpha-motoneurons.
机译:在形态和生理学特征的α-运动神经元中研究了树突中的输入分布对突触后抑制脊髓单突触反射的影响。在同质(HOM)和异质(HEM)模型中,对于每个树突长度段,都随机选择兴奋性突触和抑制性突触的位置。在HOM中,只要其他隔室没有至少一个突触,每个隔室就只能包含一个突触。在HEM中。对于箱内的突触分布没有限制。与HEM相比,HOM中的EPSP振幅增加了28,而EPSP峰的抑制作用(在抑制作用激活时)增加了66。这些结果表明,对于兴奋性和抑制性突触,HOM中的突触效力更高。因此,建议在现实的α-运动神经元中,均匀分布的突触后抑制可作为单突触反射的有力抑制。

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