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用于引发脊髓龟三种形式搔抓反射的皮肤节段。

Cutaneous dermatomes for initiation of three forms of the scratch reflex in the spinal turtle.

作者信息

Mortin L I, Stein P S

机构信息

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

出版信息

J Comp Neurol. 1990 May 22;295(4):515-29. doi: 10.1002/cne.902950402.

Abstract

The turtle spinal cord produces three forms of the hindlimb scratch reflex. Each scratch form is initiated in response to gentle mechanical stimulation of a distinct set of sites in the periphery, termed the receptive field for that scratch form. The turtle spinal cord consists of 8 cervical segments (C1-C8), 10 dorsal segments (D1-D10), 2 sacral segments (S1, S2), and about 16 caudal segments (Ca1-Ca16). First, we recorded cutaneous afferents in peripheral nerves to reveal the tactile dermatomes of segments D3-D8. These segments innervate regions of the body between the forelimb and hindlimb, directly lateral to their spinal cord segments. Adjacent segments innervate adjacent and partially overlapping regions of the periphery. Second, we used successive spinal cord transections combined with either a) behavioral analysis in turtles with limb movements or b) electroneurographic recordings in immobilized turtles, and mapped the zone of remaining sensibility after each transection to measure the borders of dermatomes D2-Ca2. This technique revealed that adjacent dermatomes are innervated by non-adjacent spinal segments in regions near the hip. Segments D8 and Ca1 innervate adjacent and partially overlapping regions ventral to the hip. There is a similar discontinuity in the innervation of the shell and skin dorsal to the hip. These discontinuities correlate with the innervation of the hindlimb skin by segments D8-Ca1. The rostral scratch receptive field is innervated by sensory afferents entering spinal segments D3-D6; the pocket scratch receptive field is innervated by D6-D8; the caudal scratch receptive field is innervated by S2, Ca1, and more caudal segments. The rostral-pocket transition zone is innervated mainly by one segment, D6; the ventral part of the caudal-pocket transition zone is innervated by two non-adjacent segments, D8 and Ca1. Thus the motor pattern blends elicited by stimulation of sites within the rostral-pocket transition zone must be produced in response to a very different distribution of sensory inputs than the blends elicited by stimulation of sites within the caudal-pocket transition zone.

摘要

龟的脊髓会产生三种形式的后肢抓挠反射。每种抓挠形式都是由对外周特定部位的轻柔机械刺激引发的,这些部位被称为该抓挠形式的感受野。龟的脊髓由8个颈段(C1 - C8)、10个背段(D1 - D10)、2个骶段(S1、S2)和约16个尾段(Ca1 - Ca16)组成。首先,我们记录了外周神经中的皮肤传入神经,以揭示D3 - D8段的触觉皮节。这些节段支配前肢和后肢之间身体的区域,直接位于其脊髓节段的外侧。相邻节段支配外周的相邻且部分重叠的区域。其次呢,我们采用连续脊髓横断术,并结合以下两种方法之一:a)对有肢体运动的龟进行行为分析,或者b)对固定的龟进行神经电图记录,然后在每次横断后绘制剩余感觉区域,以测量D2 - Ca2皮节的边界。这项技术揭示,在靠近髋部的区域,相邻皮节由不相邻的脊髓节段支配。D8和Ca1节段支配髋部腹侧相邻且部分重叠的区域。在髋部背侧的壳和皮肤的神经支配中也存在类似的不连续性。这些不连续性与D8 - Ca1节段对后肢皮肤的神经支配相关。头侧抓挠感受野由进入脊髓节段D3 - D6的感觉传入神经支配;袋状抓挠感受野由D6 - D8支配;尾侧抓挠感受野由S2、Ca1以及更靠后的节段支配。头侧 - 袋状过渡区主要由一个节段D6支配;尾侧 - 袋状过渡区的腹侧部分由两个不相邻的节段D8和Ca1支配。因此,刺激头侧 - 袋状过渡区内的位点所引发的运动模式混合,其产生所响应的感觉输入分布与刺激尾侧 - 袋状过渡区内的位点所引发的运动模式混合非常不同。

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