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发育中大鼠周围神经挤压伤后,面部运动神经元再生导致的非选择性再支配。

Non-selective reinnervation by regenerating facial motoneurons after peripheral nerve crush in the developing rat.

作者信息

Ito M, Okoyama S, Furukawa M, Kitao Y, Moriizumi T, Kudo M

机构信息

Department of Anatomy, School of Medicine, Kanazawa University, Japan.

出版信息

Kaibogaku Zasshi. 1994 Apr;69(2):168-74.

PMID:8023679
Abstract

To study the regeneration process after the facial nerve crush in the neonatal period, the location of cranial motoneurons supplying the posterior belly of the digastric muscle (PDG) and the vibrissae follicular muscles was examined using retrograde tracing methods in the rat with facial nerves that had been surgically injured 1-2 day(s) after birth. In different stages after the induced facial palsy was functionally recovered, i.e. 4-20 weeks after the surgical operation, Fluoro-Gold (FG) was injected into the PDG, while wheat germ-agglutinated horseradish peroxidase (WGA-HRP) was injected into the vibrissae follicular muscles. Distribution of neurons retrogradely labeled with FG and/or WGA-HRP was then examined in the brainstem. On the intact side, used as a control, FG-positive neurons were restrictedly seen within the accessory facial nucleus (Acs7), while HRP-positive neurons were found in the main facial nucleus (FMN) proper. On the injured sides with any survival periods: 1) FG-positive neurons were diffusely seen not only in the Acs7 but also in the FMN, where the normal myotopical representation seemed to be no longer maintained. 2) HRP-positive neurons were also seen scattered not only in the FMN but in the Acs7. 3) The volume and cell number in both the Acs7 and the FMN were notably reduced. Thus, the present results indicate: 1) that the misdirectional regeneration of nerve fibers occurs widely across the facial motoneuron pools, and 2) that the non-selective distribution can never be restored to the selective one when severely damaged even in the neonatal periods.

摘要

为研究新生期面神经损伤后的再生过程,采用逆行示踪法,在出生后1 - 2天手术损伤面神经的大鼠中,检查支配二腹肌后腹(PDG)和触须滤泡肌的颅运动神经元的位置。在诱导性面瘫功能恢复后的不同阶段,即手术后4 - 20周,将荧光金(FG)注入PDG,同时将小麦胚芽凝集辣根过氧化物酶(WGA - HRP)注入触须滤泡肌。然后在脑干中检查用FG和/或WGA - HRP逆行标记的神经元的分布。在作为对照的完整侧,FG阳性神经元仅在副面神经核(Acs7)内可见,而HRP阳性神经元则在面神经主核(FMN)中发现。在任何存活期的损伤侧:1)不仅在Acs7而且在FMN中都广泛可见FG阳性神经元,其中正常的肌局部代表似乎不再维持。2)HRP阳性神经元也不仅散在于FMN中,而且在Acs7中也可见。3)Acs7和FMN中的体积和细胞数量均明显减少。因此,本研究结果表明:1)神经纤维的错向再生广泛发生于整个面部运动神经元池;2)即使在新生期受到严重损伤,非选择性分布也永远无法恢复为选择性分布。

相似文献

1
Non-selective reinnervation by regenerating facial motoneurons after peripheral nerve crush in the developing rat.发育中大鼠周围神经挤压伤后,面部运动神经元再生导致的非选择性再支配。
Kaibogaku Zasshi. 1994 Apr;69(2):168-74.
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The vibrissal motor output following severing and repair of the facial nerve in the newborn rat reorganises less than in the adult.新生大鼠面神经切断并修复后,触须运动输出的重组程度小于成年大鼠。
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[Distribution of rat facial motoneurons and its reorganization following nerve reinnervation].[大鼠面神经运动神经元的分布及其神经再支配后的重组]
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Acta Otolaryngol. 2006 Dec;126(12):1334-8. doi: 10.1080/00016480600801332.

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