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有限去传入后背角细胞感受野的定量分析。

Quantitative analysis of dorsal horn cell receptive fields following limited deafferentation.

作者信息

Koerber H R, Brown P B

机构信息

Department of Neurobiology, University of Pittsburgh School of Medicine, Pennsylvania 15261, USA.

出版信息

J Neurophysiol. 1995 Nov;74(5):2065-76. doi: 10.1152/jn.1995.74.5.2065.

DOI:10.1152/jn.1995.74.5.2065
PMID:8592197
Abstract
  1. To test the hypothesis that subtotal deafferentation of dorsal horn cells can stimulate plastic changes in their receptive fields (RFs), diffuse deafferentation of the cat hindlimb dorsal horn was produced by transection of L7 or L6 and L7 dorsal roots. The following single-unit cutaneous low-threshold mechanoreceptor RF properties were compared between operated and control dorsal horns: 1) distance of RF center from tips of toes, 2) RF length-width ratio; and 3) RF area. 2. In both L7 and L6-L7 rhizotomized animals there was an increased incidence of silent electrode tracks in the most deafferented portion of the hindlimb map (the foot and toe representation). In the rhizotomized L6-L7 animals, there was also an increased incidence of symmetrically placed tracks in deafferented and control dorsal horns, in which cell RFs had no mirror-symmetrical components. In addition, cells in the lateral half of the L6 and L7 dorsal horns exhibited a proximal shift in the location of their RFs. In the rhizotomized L7 animals there was a distal shift of RFs in the L5 segment at long survival times. RFs had lower length-width ratios in L5 and L6 at short survival times and in L6 at long survival times. 3. In intact preparations, dorsal horn cells normally respond to inputs via single or small numbers of low-threshold cutaneous mechanoreceptors. Because these rhizotomies do not remove all inputs from any given area of skin, the deafferentations would produce only patchy loss of input from individual receptors. Therefore observed changes cannot be accounted for entirely by loss of afferent input, suggesting that some reorganization of dorsal horn cell RFs occurred. We conclude that the threshold stimulus for plastic change is less than total deafferentation of dorsal horn cells. At least some of the mechanisms underlying these changes may be active in normal animals in the maintenance of the somatotopic map or in conditioning.
摘要
  1. 为了验证背角细胞部分去传入能刺激其感受野(RFs)发生可塑性变化这一假说,通过切断L7或L6和L7背根,对猫后肢背角进行弥漫性去传入。比较手术侧和对照侧背角以下单单位皮肤低阈值机械感受器RF特性:1)RF中心距脚趾尖的距离;2)RF长宽比;3)RF面积。2. 在L7和L6 - L7神经根切断的动物中,后肢图谱中去传入最严重的部分(足部和脚趾代表区)出现静息电极轨迹的发生率增加。在L6 - L7神经根切断的动物中,去传入侧和对照侧背角中对称放置的轨迹发生率也增加,其中细胞RF没有镜像对称成分。此外,L6和L7背角外侧半部分的细胞其RF位置出现向近端移位。在L7神经根切断的动物中,存活时间较长时L5节段的RF出现向远端移位。在存活时间较短时L5和L6以及存活时间较长时L6的RF长宽比更低。3. 在完整的标本中,背角细胞通常通过单个或少数低阈值皮肤机械感受器对输入做出反应。由于这些神经根切断术并未去除任何给定皮肤区域的所有输入,去传入只会导致单个感受器的输入出现斑片状丧失。因此,观察到的变化不能完全由传入输入的丧失来解释,这表明背角细胞RF发生了一些重组。我们得出结论,可塑性变化的阈值刺激小于背角细胞的完全去传入。这些变化背后的至少一些机制可能在正常动物维持躯体定位图谱或在条件作用中起作用。

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