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外周神经再生后背角细胞感受野的可塑性。

Plasticity of dorsal horn cell receptive fields after peripheral nerve regeneration.

作者信息

Koerber H R, Mirnics K

机构信息

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

出版信息

J Neurophysiol. 1996 Jun;75(6):2255-67. doi: 10.1152/jn.1996.75.6.2255.

Abstract
  1. The tibial and sural nerves were transected and repaired in nine adult cats. The receptive field (RF) properties of dorsal horn neurons were examined at three different intervals (5-6, 9, or 12 mo) after axotomy. The properties examined included RF location, area, and modality convergence. In some cases, discrete areas of the cell's RF were stimulated electrically while the evoked cord dorsum potentials (CDPs) and any intracellularly recorded responses were simultaneously recorded. 2. At the shortest interval following reinnervation, the somatotopic organization in the affected areas of the dorsal horn was lost. Dorsal horn cells that received input primarily from regenerated fibers had large, low-threshold excitatory RFs that contained much of the reinnervated skin. Those cells with RFs restricted to a fraction of the reinnervated skin had significant components of their RFs on the foot dorsum supplied by intact fibers (i.e., superficial peroneal nerve). 3. At longer intervals the somatotopic organization remained scrambled. Dorsal horn cell low-threshold RFs were significantly reduced in size. Many cells exhibited large areas of excitatory subliminal fringe and concise inhibitory RFs. In addition, those cells that responded to peripheral stimuli across a wide range of stimulus intensities (wide-dynamic-range cells) also exhibited plasticity in the relative sizes of their low- and high-threshold RFs. 4. At the shortest recovery time, focal electrical stimulation of the skin within the RF of an impaled cell and simultaneous recordings of the evoked CDPs and postsynaptic potentials revealed that at numerous locations within the initial large RFs, single fibers or small groups of fibers could be electrically activated that were not connected to the dorsal horn cell. At the longer recovery times there was a much higher incidence of connectivity. 5. These results suggest that mechanisms affecting both synaptic efficacy of afferent fiber connections and/or the establishment of afferent-driven inhibitory inputs may effect the reshaping of dorsal horn cell RFs after reinnervation. These results are discussed in relation to their potential contribution to previously observed cortical plasticity and functional recovery following similar lesions.
摘要
  1. 在9只成年猫中切断并修复胫神经和腓肠神经。在轴突切断术后的三个不同时间间隔(5 - 6个月、9个月或12个月)检查背角神经元的感受野(RF)特性。所检查的特性包括RF位置、面积和模式汇聚。在某些情况下,当诱发脊髓背电位(CDP)和任何细胞内记录的反应同时被记录时,对细胞RF的离散区域进行电刺激。2. 在重新支配后的最短时间间隔内,背角受影响区域的躯体定位组织丧失。主要从再生纤维接收输入的背角细胞具有大的、低阈值兴奋性RF,其包含大部分重新支配的皮肤。那些RF局限于重新支配皮肤一部分的细胞,其RF的显著部分位于由完整纤维(即腓浅神经)供应的足背。3. 在更长的时间间隔,躯体定位组织仍然混乱。背角细胞的低阈值RF大小显著减小。许多细胞表现出大面积的兴奋性阈下边缘和简洁的抑制性RF。此外,那些在广泛的刺激强度范围内对外周刺激有反应的细胞(广动力范围细胞)在其低阈值和高阈值RF的相对大小上也表现出可塑性。4. 在最短恢复时间时,对刺入细胞RF内的皮肤进行局部电刺激,并同时记录诱发的CDP和突触后电位,发现在最初大RF内的许多位置,可以电激活未与背角细胞相连的单根纤维或小纤维束。在更长的恢复时间,连接的发生率要高得多。5. 这些结果表明,影响传入纤维连接的突触效能和/或传入驱动抑制性输入建立的机制可能影响重新支配后背角细胞RF的重塑。结合它们对先前观察到的类似损伤后皮质可塑性和功能恢复的潜在贡献对这些结果进行了讨论。

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