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大鼠撤反射对外周神经支配早期改变的发育适应性

Developmental adaptation of withdrawal reflexes to early alteration of peripheral innervation in the rat.

作者信息

Holmberg H, Schouenborg J

机构信息

Department of Physiology and Neuroscience, University of Lund, Sweden.

出版信息

J Physiol. 1996 Sep 1;495 ( Pt 2)(Pt 2):399-409. doi: 10.1113/jphysiol.1996.sp021602.

Abstract
  1. In adult decerebrate spinal rats whose plantar nerves (PLN) had been transected at either postnatal day 1 (P1) or P21 the nociceptive withdrawal reflexes (NWR) of musculi extensor digitorum longus (EDL), peroneus longus (PER) and semitendinosus (ST) were characterized with respect to receptive field (RF) organization, magnitude and time course, using electromyography. Thermal (short CO2 laser pulses) and mechanical (calibrated pinch) stimulation were used. The innervation patterns in normal and lesioned adult rats were assessed by acute nerve lesions. 2. The spatial organization of the mean mechano- and thermonociceptive RFs of all the muscles studied was similar to normal in both P1- and P21-lesioned rats, although in some P21-lesioned rats atypical EDL RFs were encountered. 3. In P1-lesioned rats thermo-NWR of PER and EDL had normal magnitudes, while mechano-NWR were reduced. In P21-lesioned rats both thermo- and mechano-NWR of these muscles had reduced magnitudes. Except for thermo-NWR of ST in P1-lesioned rats, which were increased, NWR of ST had normal magnitudes in both P1- and P21-lesioned rats. The time course of thermonociceptive NWR of the muscles studied were near normal in both P1- and P21-lesioned rats. 4. Acute nerve lesions in adult P1-lesioned rats revealed an essentially abolished contribution to NWR from the PLN. Instead, the contribution to NWR from other hindpaw nerves, such as the superficial and deep peroneal nerves, was dramatically increased. By contrast, in P21-lesioned rats, the regenerated PLN contributed significantly to the NWR. 5. It is concluded that despite profound alterations of plantar hindpaw innervation induced by early PLN transection the cutaneous nociceptive input to NWR attained an essentially normal spatial organization. An experience-dependent mechanism is suggested to be instrumental in adapting the reflex connectivity to the peripheral innervation.
摘要
  1. 在成年去大脑脊髓大鼠中,其足底神经(PLN)在出生后第1天(P1)或第21天被横断,使用肌电图对趾长伸肌(EDL)、腓骨长肌(PER)和半腱肌(ST)的伤害性退缩反射(NWR)的感受野(RF)组织、幅度和时间进程进行了表征。使用了热刺激(短二氧化碳激光脉冲)和机械刺激(校准捏压)。通过急性神经损伤评估正常和损伤成年大鼠的神经支配模式。2. 在P1和P21损伤的大鼠中,所有研究肌肉的平均机械性和热伤害性RF的空间组织与正常情况相似,尽管在一些P21损伤的大鼠中遇到了非典型的EDL RF。3. 在P1损伤的大鼠中,PER和EDL的热NWR幅度正常,而机械NWR降低。在P21损伤的大鼠中,这些肌肉的热和机械NWR幅度均降低。除了P1损伤大鼠中ST的热NWR增加外,P1和P21损伤大鼠中ST的NWR幅度均正常。在P1和P21损伤的大鼠中,所研究肌肉的热伤害性NWR的时间进程接近正常。4. 成年P1损伤大鼠的急性神经损伤显示PLN对NWR的贡献基本消失。相反,其他后爪神经,如腓浅神经和腓深神经,对NWR的贡献显著增加。相比之下,在P21损伤的大鼠中,再生的PLN对NWR有显著贡献。5. 得出的结论是,尽管早期PLN横断导致足底后爪神经支配发生深刻改变,但NWR的皮肤伤害性输入获得了基本正常的空间组织。建议一种经验依赖性机制有助于使反射连接适应外周神经支配。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc1c/1160800/bbd6f2eba784/jphysiol00393-0105-a.jpg

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