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首页> 外文期刊>The Journal of Physiology >Excitatory and inhibitory intermediate zone interneurons in pathways from feline group I and II afferents: differences in axonal projections and input.
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Excitatory and inhibitory intermediate zone interneurons in pathways from feline group I and II afferents: differences in axonal projections and input.

机译:猫I和II组传入途径中的兴奋性和抑制性中间区中间神经元:轴突投射和输入的差异。

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The aim of the present study was to compare properties of excitatory and inhibitory spinal intermediate zone interneurons in pathways from group I and II muscle afferents in the cat. Interneurons were labelled intracellularly and their transmitter phenotypes were defined by using immunocytochemistry. In total 14 glutamatergic, 22 glycinergic and 2 GABAergic/glycinergic interneurons were retrieved. All interneurons were located in laminae V-VII of the L3-L7 segments. No consistent differences were found in the location, the soma sizes or the extent of the dendritic trees of excitatory and inhibitory interneurons. However, major differences were found in their axonal projections; excitatory interneurons projected either ipsilaterally, bilaterally or contralaterally, while inhibitory interneurons projected exclusively ipsilaterally. Terminal projections of glycinergic and glutamatergic cells were found within motor nuclei as well as other regions of the grey matter which include the intermediate region, laminae VII and VIII. Cells containing GABA/glycine had more restricted projections, principally within the intermediate zone where they formed appositions with glutamatergic axon terminals and unidentified cells and therefore are likely to be involved in presynaptic as well as postsynaptic inhibition. The majority of excitatory and inhibitory interneurons were found to be coexcited by group I and II afferents (monosynaptically) and by reticulospinal neurons (mono- or disynaptically) and to integrate information from several muscles. Taken together the morphological and electrophysiological data show that individual excitatory and inhibitory intermediate zone interneurons may operate in a highly differentiated way and thereby contribute to a variety of motor synergies.
机译:本研究的目的是比较猫的I组和II组肌肉传入途径中的兴奋性和抑制性脊柱中间区中间神经元的特性。在细胞内标记中间神经元,并通过免疫细胞化学确定其递质表型。总共检索出14个谷氨酸能,22个甘氨酸能和2个GABA能/甘氨酸能神经元。所有中间神经元都位于L3-L7段的V-VII层中。在兴奋性和抑制性中间神经元的位置,躯干大小或树突树的范围上均未发现一致的差异。但是,在轴突投影方面发现了主要差异。兴奋性神经元在同侧,双侧或对侧投射,而抑制性神经元仅在同侧投射。在运动核以及灰质的其他区域(包括中间区域VII和VIII)中发现了甘氨酸和谷氨酸能细胞的末端投射。含有GABA /甘氨酸的细胞具有更多受限制的投射,主要在中间区域,在那里它们与谷氨酸能轴突末端和未鉴定的细胞形成并列,因此可能参与突触前和突触后抑制。发现大多数兴奋性和抑制性中间神经元由I和II组传入(单突触地)和网状脊髓神经元(单突触或非突触地)共同激发,并整合了来自几条肌肉的信息。形态学和电生理学数据合计显示,单个兴奋性和抑制性中间区中间神经元可能以高度分化的方式起作用,从而有助于多种运动协同作用。

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