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猫楔状神经元反应性与可逆性部分去传入相关的定量分析。

Quantitative analysis of cuneate neurone responsiveness in the cat in association with reversible, partial deafferentation.

作者信息

Zhang S P, Rowe M J

机构信息

School of Physiology and Pharmacology, University of New South Wales, Sydney, Australia.

出版信息

J Physiol. 1997 Dec 15;505 ( Pt 3)(Pt 3):769-83. doi: 10.1111/j.1469-7793.1997.769ba.x.

Abstract
  1. Partial deafferentation, based on peripheral nerve section or local anaesthetic blockade, has been reported to induce both immediate loss of responsiveness and/or immediate reorganization in receptive fields of neurones in the somatosensory system. In the present study, in anaesthetized cats, we have used a rapid, reversible deafferentation procedure based on cold block of the median nerve in order to evaluate quantitatively the response characteristics of cuneate neurones (n = 39) before, during and after partial deafferentation. 2. The first hypothesis tested was that cuneate neurones with input from ulnar or superficial radial nerve fields in the vicinity of the median nerve field should undergo, in association with median nerve blockade, an increased level of responsiveness to tactile stimuli within the ulnar or radial nerve zone, and an expansion of their cutaneous receptive fields. However, among eighteen cuneate neurones of this type, there was no evidence for any systematic enhancement of responsiveness nor, in at least sixteen of the eighteen neurones, any evidence for receptive field expansion. 3. The second hypothesis tested was that cuneate neurones whose input came from both the median nerve and another peripheral nerve source should undergo, in association with median nerve blockade, an increase in responsiveness to the remaining input and an expansion of the receptive field into the field of that remaining nerve source. However, in none of thirteen neurones of this type tested was there evidence of such a change. 4. The third hypothesis was that cuneate neurones whose control' receptive fields were within the median nerve zone of deafferentation should show an emergence of novel receptive fields and responsiveness from areas around the field of innervation of the median nerve. However, in none of eight neurones of this type was there evidence for such changes in adjacent skin areas. 5. In conclusion, with the use of cold block of the median nerve for partial deafferentation, the present study has confirmed previous findings of denervation-related loss of responsiveness in dorsal column nuclei neurones. The conflicting findings in studies of central nervous system plasticity indicate the need to understand better factors that do and do not lead to acute central changes.
摘要
  1. 据报道,基于外周神经切断或局部麻醉阻滞的部分传入神经阻滞,会导致体感系统中神经元的反应性立即丧失和/或感受野立即重组。在本研究中,我们对麻醉猫采用了基于正中神经冷阻滞的快速、可逆的传入神经阻滞程序,以定量评估部分传入神经阻滞后、期间和之前楔状神经元(n = 39)的反应特性。2. 所检验的第一个假设是,在正中神经区域附近接受来自尺神经或桡神经浅支区域输入的楔状神经元,在正中神经阻滞时,对尺神经或桡神经区域内触觉刺激的反应性应增强,且其皮肤感受野应扩大。然而,在这18个此类楔状神经元中,没有证据表明反应性有任何系统性增强,并且在这18个神经元中的至少16个中,也没有证据表明感受野扩大。3. 所检验的第二个假设是,其输入来自正中神经和另一个外周神经源的楔状神经元,在正中神经阻滞时,对剩余输入的反应性应增加,且感受野应扩展到该剩余神经源的区域。然而,在所测试的13个此类神经元中,没有一个有这种变化的证据。4. 第三个假设是,其“对照”感受野在传入神经阻滞的正中神经区域内的楔状神经元,应在正中神经支配区域周围的区域出现新的感受野和反应性。然而,在这8个此类神经元中,没有一个在相邻皮肤区域有这种变化的证据。5. 总之,通过使用正中神经冷阻滞进行部分传入神经阻滞,本研究证实了先前关于背柱核神经元去神经相关反应性丧失的发现。中枢神经系统可塑性研究中的矛盾发现表明,需要更好地理解导致和不导致急性中枢变化的因素。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/835b/1160051/b4dabe133f72/jphysiol00375-0225-a.jpg

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