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红耳龟后肢膨大处的下行脊髓 propriospinal 轴突:起源细胞和索状走行

Descending propriospinal axons in the hindlimb enlargement of the red-eared turtle: cells of origin and funicular courses.

作者信息

Berkowitz A, Stein P S

机构信息

Department of Biology, Washington University, St. Louis, Missouri 63130.

出版信息

J Comp Neurol. 1994 Aug 15;346(3):321-36. doi: 10.1002/cne.903460302.

Abstract

Spinal neurons with descending axons are important components of spinal sensorimotor networks. We used an anatomical tracing technique to study the distribution of descending propriospinal axons and cell bodies in red-eared turtles. We injected horseradish peroxidase into a portion of one funiculus in the middle of the hindlimb enlargement and examined six spinal segments rostral to the injection site (dorsal 3 through dorsal 8) for labeled neuronal cell bodies. Injections into each region of the white matter labeled substantial numbers of descending propriospinal neurons. Each injection labeled cell bodies over most of the six spinal segments examined. Each injection also labeled cell bodies in the ipsilateral dorsal horn, intermediate zone, and ventral horn as well as the contralateral intermediate zone and ventral horn. Injections into each of four regions of the white matter, the dorsal funiculus, the medial part of the lateral funiculus, the lateral part of the lateral funiculus, and the ventral funiculus reliably gave rise to a distinct distribution of labeled cell bodies. These experiments establish that descending propriospinal axons in red-eared turtles are found in all regions of the spinal white matter. This finding contrasts with a popular contemporary view of the organization of descending propriospinal axons in mammals. These experiments also demonstrate that neurons in each region of the gray matter give rise to a different distribution of descending, funicular axons, although these distributions are widely overlapping. Different funicular axon distributions could be associated with different sets of synaptic contacts with the white-matter dendrites of spinal neurons.

摘要

具有下行轴突的脊髓神经元是脊髓感觉运动网络的重要组成部分。我们使用解剖追踪技术研究了红耳龟中下行脊髓固有轴突和细胞体的分布。我们将辣根过氧化物酶注入后肢膨大中部的一个脊髓索的一部分,并检查注射部位前方的六个脊髓节段(背侧3至背侧8)中标记的神经元细胞体。向白质的每个区域注射都标记了大量下行脊髓固有神经元。每次注射都在检查的六个脊髓节段的大部分区域标记了细胞体。每次注射还在同侧背角、中间带和腹角以及对侧中间带和腹角标记了细胞体。向白质的四个区域(背侧脊髓索、外侧脊髓索内侧部分、外侧脊髓索外侧部分和腹侧脊髓索)中的每个区域注射,都可靠地产生了标记细胞体的独特分布。这些实验表明,红耳龟的下行脊髓固有轴突存在于脊髓白质的所有区域。这一发现与当前关于哺乳动物下行脊髓固有轴突组织的流行观点形成对比。这些实验还表明,灰质每个区域的神经元产生不同分布的下行脊髓索轴突,尽管这些分布广泛重叠。不同的脊髓索轴突分布可能与脊髓神经元白质树突的不同突触接触组相关。

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