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大鼠腰膨大处脊髓网状束起始部位背角神经元的定位与特性

Location and properties of dorsal horn neurons at origin of spinoreticular tract in lumbar enlargement of the rat.

作者信息

Menétrey D, Chaouch A, Besson J M

出版信息

J Neurophysiol. 1980 Nov;44(5):862-77. doi: 10.1152/jn.1980.44.5.862.

Abstract
  1. Spinoreticular tract neurons at the rat lumbar cord level were identified by antidromic activation following stimulation at mainly pontine and mesencephalic levels. These units, which were found in the dorsal half of the cord, could be separated into two groups according to their spinal location, electrophysiological properties, and their central projections. 2. Units in the dorsolateral funiculus nucleus projected mainly to the cuneiformis area and adjacent structures with frequent bilateral projections. They had the slowest conduction velocities, sometimes in the unmyelinated range. Generally, they were driven only by stimulation of subcutaneous and/or deep structures. 3. Neurons located in the dorsal horn mainly projected contralaterally to pontine and mesencephalic levels. their conduction velocities and the electrophysiological properties were identical to those observed for the rat spinothalamic tract (22). Almost all (86%) had clear cutaneous sensitivity and generally large receptive fields: 40% responded to nonnoxious and noxious mechanical cutaneous stimuli and frequently to noxious radiant heat, 26% were exclusively excited by light tactile stimuli, and 20% required noxious cutaneous mechanical stimulation for activation. There was a good correlation between responses to natural and transcutaneous electrical stimulation: units driven by noxious mechanical stimuli received A-delta- and/or C-fiber inputs. The remaining units (14%) had more complex receptive fields associated with both excitatory and inhibitory inputs originating from a single peripheral area. 4. The functional heterogeneity of the rat spinoreticular tract is reminiscent of that demonstrated for the rat and monkey spinothalamic tracts. Similarly, the rat spinoreticular neurons are under the influence of descending inhibitory controls originating from the nucleus raphe magnus and bulbar reticular formation. 5. Responses of the rat spinoreticular tract neurons are consistent with the involvement of this pathway in the transmission of messages of both innocuous and noxious origins.
摘要
  1. 通过在主要脑桥和中脑水平进行刺激后的逆向激活,确定了大鼠腰髓水平的脊髓网状束神经元。这些位于脊髓背侧半部的神经元,根据其脊髓位置、电生理特性及其中枢投射,可分为两组。2. 背外侧索核中的神经元主要投射到楔状核区域和相邻结构,常有双侧投射。它们的传导速度最慢,有时处于无髓鞘范围内。一般来说,它们仅由皮下和/或深部结构的刺激所驱动。3. 位于背角的神经元主要对侧投射到脑桥和中脑水平。它们的传导速度和电生理特性与大鼠脊髓丘脑束所观察到的相同(22)。几乎所有(86%)都有明显的皮肤敏感性,通常具有较大的感受野:40%对无害和有害的机械性皮肤刺激有反应,且常对有害的辐射热有反应,26%仅由轻触觉刺激兴奋,20%需要有害的皮肤机械刺激才能激活。对自然刺激和经皮电刺激的反应之间有良好的相关性:由有害机械刺激驱动的神经元接受A-δ和/或C纤维输入。其余的神经元(14%)具有更复杂的感受野,与来自单个外周区域的兴奋性和抑制性输入相关。4. 大鼠脊髓网状束的功能异质性让人想起在大鼠和猴脊髓丘脑束中所表现出的情况。同样,大鼠脊髓网状神经元受源自中缝大核和延髓网状结构的下行抑制控制的影响。5. 大鼠脊髓网状束神经元的反应与该通路参与无害和有害来源信息的传递是一致的。

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