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浣熊外周去传入后丘脑腹后外侧核神经元反应特性的变化。

Changes in the response properties of neurons in the ventroposterior lateral thalamic nucleus of the raccoon after peripheral deafferentation.

作者信息

Rasmusson D D

机构信息

Department of Physiology, Dalhousie University, Halifax, Nova Scotia, Canada.

出版信息

J Neurophysiol. 1996 Jun;75(6):2441-50. doi: 10.1152/jn.1996.75.6.2441.

Abstract
  1. Single neurons in the ventroposterior lateral thalamic nucleus were studied in 10 anesthetized raccoons, 4 of which had undergone amputation of the fourth digit 4-5 mo before recording. Neurons with receptive fields on the glabrous skin of a forepaw digit were examined in response to electrical stimulation of the "on-focus" digit that contained the neuron's receptive field and stimulation of an adjacent, "off-focus" digit. 2. In normal raccoons all neurons responded to on-focus stimulation with an excitation at a short latency (mean 13 ms), whereas only 63% of the neurons responded to off-focus digit stimulation. The off-focus responses had a longer latency (mean 27.2 ms) and a higher threshold than the on-focus responses (800 and 452 microA, respectively). Only 3 of 32 neurons tested with off-focus stimulation had both a latency and a threshold within the range of on-focus values. Inhibition following the excitation was seen in the majority of neurons with both types of stimulation. 3. In the raccoons with digit removal, the region of the thalamus that had lost its major peripheral input (the "deafferented" region) was distinguished from the normal third and fifth digit regions on the basis of the sequence of neuronal receptive fields within a penetration and receptive field size as described previously. 4. Almost all of the neurons in the deafferented region (91%) were excited by stimulation of one or both adjacent digits. The average latency for these responses was shorter (15.3 ms) and the threshold was lower than was the case with off-focus stimulation in control animals. These values were not significantly different from the responses to on-focus stimulation in the animals with digit amputation. 5. These results confirm that reorganization of sensory pathways can be observed at the thalamic level. In addition to the changes in the somatotopic map that have been shown previously with the use of mechanical stimuli, the present paper demonstrates an improvement in several quantitative measures of single-unit responses. Many of these changes suggest that this reorganization could be explained by an increased effectiveness of preexisting, weak connections from the off-focus digits; however, the increase in the proportion of neurons responding to stimulation of adjacent digits may indicate that sprouting of new connections also occurs.
摘要
  1. 对10只麻醉的浣熊的腹后外侧丘脑核中的单个神经元进行了研究,其中4只在记录前4 - 5个月进行了第四指截肢。研究了在前爪指无毛皮肤上具有感受野的神经元,以响应包含该神经元感受野的“聚焦”指的电刺激以及相邻“非聚焦”指的刺激。

  2. 在正常浣熊中,所有神经元对聚焦刺激均以短潜伏期(平均13毫秒)的兴奋做出反应,而只有63%的神经元对非聚焦指刺激有反应。非聚焦反应的潜伏期更长(平均27.2毫秒),且阈值高于聚焦反应(分别为800和452微安)。在接受非聚焦刺激测试的32个神经元中,只有3个神经元的潜伏期和阈值在聚焦值范围内。在大多数接受两种刺激的神经元中都观察到兴奋后的抑制。

  3. 在去除手指的浣熊中,丘脑失去其主要外周输入的区域(“去传入”区域)根据先前描述的穿透内神经元感受野的顺序和感受野大小与正常的第三和第五指区域区分开来。

  4. 几乎所有去传入区域的神经元(91%)都受到一个或两个相邻指刺激的兴奋。这些反应的平均潜伏期较短(15.3毫秒),阈值低于对照动物中非聚焦刺激的情况。这些值与截肢动物中聚焦刺激的反应没有显著差异。

  5. 这些结果证实可以在丘脑水平观察到感觉通路的重组。除了先前使用机械刺激所显示的躯体定位图的变化外,本文还展示了单单位反应的几个定量指标的改善。这些变化中的许多表明,这种重组可以通过来自非聚焦指的先前存在的弱连接有效性增加来解释;然而,对相邻指刺激做出反应的神经元比例增加可能表明也发生了新连接的发芽。

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