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脊髓损伤大鼠脊髓背角神经元对非伤害性和伤害性刺激的反应特性分析

An analysis of response properties of spinal cord dorsal horn neurones to nonnoxious and noxious stimuli in the spinal rat.

作者信息

Menétrey D, Giesler G J, Besson J M

出版信息

Exp Brain Res. 1977 Jan 18;27(1):15-33. doi: 10.1007/BF00234822.

Abstract

Electrophysiological properties of neurones in the spinal cord dorsal horn were studied in decerebrated, immobilized spinal rats. Extracellular recordings were performed at the thoraco-lumbar junction level. Each track was systematically located by extracellular injection of pontamine sky blue. According to their responses to mechanical peripheral stimuli, cells were classified in four classes: Class 1 cells: Cells activated only by nonnoxious stimuli. They were divided into - 1A: hair movement and/or touch and 1B: hair movement and/or touch and pressure or pressure only. Class 2 cells: Cells driven by both nonnoxious and noxious stimuli, divided into - 2A: hair movement and/or touch, pressure, pinch and/or pin-prick, and 2B: pressure, pinch and/or pin-prick. Class 3 cells: Cells only activated by noxious stimuli (pinch and/or pin-prick). Class 4 cells: Cells responding to joint movement or pressure on deep tissues. Peripheral transcutaneous or sural nerve stimulation clearly showed that class 1 cells were activated only by A fiber input while 68% of classes 2 and 3 cells received A and C input. Histological examination indicated that cells driven only by noxious input were located either in the deepest part or in the marginal zone (lamina I) of the dorsal horn. Nevertheless, some lamina I cells were also driven by both nonnoxious and noxious stimuli. In addition, there is a great deal of overlap between class 1 and class 2 cells. This fact was confirmed by considering the wide distribution in the dorsal horn of cells receiving A and C input. However, spinal organization of the different classes of cells consists of a preferential distribution rather than a strict lamination. This study indicates that properties of dorsal horn inter-neurones in the rat have a high degree of similarity with those previously described in other species (cat and monkey).

摘要

在去大脑、固定脊髓的大鼠中研究了脊髓背角神经元的电生理特性。在胸腰交界处水平进行细胞外记录。通过细胞外注射滂胺天蓝系统地定位每条记录轨迹。根据它们对机械性外周刺激的反应,细胞被分为四类:1类细胞:仅由无害刺激激活的细胞。它们又分为 - 1A:毛发运动和/或触觉,以及1B:毛发运动和/或触觉以及压力或仅压力。2类细胞:由无害和有害刺激驱动的细胞,分为 - 2A:毛发运动和/或触觉、压力、捏和/或针刺,以及2B:压力、捏和/或针刺。3类细胞:仅由有害刺激(捏和/或针刺)激活的细胞。4类细胞:对关节运动或深部组织压力有反应的细胞。外周经皮或腓肠神经刺激清楚地表明,1类细胞仅由A纤维输入激活,而2类和3类细胞中有68%接受A和C纤维输入。组织学检查表明,仅由有害输入驱动的细胞位于背角的最深部分或边缘区(I层)。然而,一些I层细胞也由无害和有害刺激驱动。此外,1类和2类细胞之间有大量重叠。通过考虑接受A和C纤维输入的细胞在背角的广泛分布,这一事实得到了证实。然而,不同类细胞的脊髓组织由优先分布而非严格分层组成。这项研究表明,大鼠背角中间神经元的特性与先前在其他物种(猫和猴)中描述的特性高度相似。

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