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Three-dimensional organization of local excitatory and inhibitory inputs to neurons in laminae III–IV of the spinal dorsal horn

机译:脊髓背角III-IV层神经元的局部兴奋性和抑制性输入的三维组织

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摘要

Laser scanning photostimulation was used to map the distribution of the synaptic input zones (sites that give local synaptic inputs) for dorsal horn laminae III–IV neurons, in parasagittal and transverse slices of the rat lumbar spinal cord, and examine how these inputs differed for neurons of different morphologies. All neurons received local excitatory and inhibitory synaptic inputs from within laminae III–IV, while a subset of neurons also received excitatory input from the superficial laminae, especially lamina IIi, as well as the II/III border region. Two anatomical properties were found to be predictive of the dorsoventral position of a neuron's input zone relative to its soma: (1) both excitatory and inhibitory input zones were more dorsal for neurons with longer dorsal dendrites, and (2) excitatory, but not inhibitory, input zones were more dorsal (relative to the soma) for more ventral neurons, with the transition between the dorsal input zones of laminae III–IV neurons and the ventral input zones of lamina II neurons occurring at the II/III border. The observed morphophysiological correlations support the idea that interlaminar connectivity is mediated via translaminar dendritic extensions and that, more generally, local connectivity within the dorsal horn is governed by rules relating the position of a neuron's soma and dendrites to the position of the local presynaptic neurons from which it receives inputs, which are specific to the axis and direction (dorsal vs. ventral), whether the input is excitatory or inhibitory, and the laminar position of the postsynaptic neuron.
机译:激光扫描光刺激用于在大鼠腰脊髓的矢状和横切面上绘制背角层III–IV神经元的突触输入区(提供局部突触输入的部位)的分布图,并检查这些输入对于不同形态的神经元。所有神经元都从III-IV层内接受局部的兴奋性和抑制性突触输入,而一部分神经元也从浅层,尤其是IIi层以及II / III边界区接受了兴奋性输入。发现两个解剖学特性可以预测神经元输入区相对于其躯体的腹背位置:(1)兴奋性和抑制性输入区对于背侧树突较长的神经元而言背侧更大,(2)兴奋性但非抑制性,输入区域的背侧相对于躯体神经更多(相对于躯体),III-IV层神经元的背侧输入区与II / III边界的层板II神经元的腹侧输入区之间有过渡。观察到的形态生理相关性支持以下观点:层间连接是通过跨层树突延伸来介导的,并且更一般地,背角内的局部连接由与神经元的体细胞和树突的位置相关的局部突触前神经元的位置相关的规则支配。它接收输入的信息,这些输入特定于轴和方向(背侧与腹侧),输入是兴奋性的还是抑制性的以及突触后神经元的层状位置。

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