猫颈脊髓背角神经元的体位组织和反应特征。

L S Sorkin, D G Ferrington, W D Willis
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引用次数: 17

摘要

对氯氯糖麻醉猫C6和C7节段背角细胞203个进行了体位组织检测。爪的腹侧和脚趾区域被表示为内侧的一个较小的区域,输入来自爪背。腹内侧前肢的代表是爪的吻侧,而肩膀和背外侧肢体的代表是它的尾侧。在22个电极轨迹中,有13个发现了三个或更多的细胞,在连续记录的细胞中,感受野的位置逐渐改变。爪子上的感受野比近端肢体上的更靠近,重叠的也更多。203个细胞中只有7个细胞的接受野包含无毛皮肤;均位于C7背角内侧三分之一。看来无毛的皮肤在背角中代表性不足;这可能是由门体系统输入的更高水平的补偿。观察了172个背角神经元的反应特征。在这些单位中,135个(78%)有皮肤感受野。另外37个细胞(22%)对肌肉或肌腱的操作有反应,并被分类为深(D)细胞。具有皮肤感受野的细胞分为低阈值(LT)细胞(38%)、高阈值(HT)细胞(20%)和宽动态范围(WDR)细胞(20%)。另外,使用聚类分析,57个具有皮肤感受野的细胞被分类为五种机械类型之一。1型细胞主要对低阈值输入做出反应,而其他四种类型的细胞则以特有的模式对无害和有害刺激的组合做出反应。大鼠LT细胞位于脊髓较浅部位;它们在脐带表面下的平均深度为1.9毫米。WDR细胞(平均为2.1 mm)位于LT细胞下方,HT和D细胞上方(平均为2.6 mm)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Somatotopic organization and response characteristics of dorsal horn neurons in the cervical spinal cord of the cat.

Somatotopic organization was examined for 203 dorsal horn cells in spinal segments C6 and C7 of chloralose-anesthetized cats. The ventral paw and toe area were represented medial to a smaller area with input from the dorsal paw. Representation of the ventromedial forelimb was rostral to that of the paw, while the shoulder and dorsolateral limb were represented caudal to it. In 13 out of 22 electrode tracks in which three or more cells were found, the location of receptive fields progressively changed for successively recorded cells. Receptive fields on the paw were closer together and overlapped more than those on the proximal limb. Receptive fields that included glabrous skin were found for only 7 of 203 cells; all were located in the medial third of the C7 dorsal horn. It appears that glabrous skin is underrepresented in the dorsal horn; this may be compensated for a higher levels by input from the lemniscal system. The response characteristics of 172 dorsal horn neurons were examined. Of these units, 135 (78%) had cutaneous receptive fields. An additional 37 cells (22%) responded to manipulation of muscle or tendon and were classified as deep (D) cells. The cells with cutaneous receptive fields were classified as low-threshold (LT) cells (38%), high-threshold (HT) cells (20%), and wide-dynamic-range (WDR) cells (20%). Alternatively, using cluster analysis, 57 cells with cutaneous receptive fields were classified as one of five mechanical types. Type 1 cells responded primarily to low-threshold input, while the other four types fired in characteristic patterns in response to a combination of innocuous and noxious stimuli. LT cells were located more superficially in the spinal cord than the other classes; their average depth below the cord surface was 1.9 mm. WDR cells (mean = 2.1 mm) were located below the LT cells and above the HT and D cells (mean = 2.6 mm).

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