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猫在虚拟运动过程中背根电位和初级传入纤维逆向放电的节律性波动。

Rhythmic fluctuations of dorsal root potentials and antidromic discharges of primary afferents during fictive locomotion in the cat.

作者信息

Dubuc R, Cabelguen J M, Rossignol S

机构信息

Département de Physiologie, Faculté de Médecine, Université de Montréal, Québec, Canada.

出版信息

J Neurophysiol. 1988 Dec;60(6):2014-36. doi: 10.1152/jn.1988.60.6.2014.

DOI:10.1152/jn.1988.60.6.2014
PMID:3236059
Abstract
  1. This study examines rhythmical activity of primary afferents occurring during "fictive" locomotion in decorticate paralyzed cats. Oscillations of the dorsal root potential (DRP) at the frequency of the locomotor rhythm have been observed at the lumbosacral and cervical levels. In addition, rhythmic antidromic discharges of primary afferent units have been recorded from the proximal stumps of cut dorsal root filaments. A detailed study of the relationships between the DRP fluctuations, the antidromic discharges, and the locomotor activity monitored by recording extensor and flexor muscle nerves is presented. 2. Typical DRP recordings from both lumbosacral and cervical levels show two negative waves (N1 and N2) separated by positive troughs (P1 and P2) in each locomotor cycle. Linear regression analyses indicate that the first negative wave (which generally has the largest amplitude) is related to the flexor activity whereas the second is related to the extensor activity. The relative amplitude of the two negative waves may vary without apparent concomitant changes in the recorded flexor or extensor motor nerves. The positive troughs occur respectively close to the period of transition between flexor and extensor activities and between extensor and flexor activities. 3. DRPs of similar period and amplitude can be observed in different ipsilateral roots recorded simultaneously. The DRPs recorded bilaterally from the same segment have the same periodicity but are out-of-phase. Point-to-point variations of amplitude in bilaterally recorded roots are not correlated. This suggests that the polarization of primary afferents on one side is mainly related to the locomotor events on that side. DRPs have been recorded in cats spinalized at Th13 and injected with nialamide and l-DOPA. This suggests that although the supraspinal contribution may be important, at least part of the DRPs may result from locomotor activity within the spinal cord itself. 4. A salient finding in our experiments was that of rhythmic antidromic unit discharges in the proximal stump of cut dorsal root filaments. Of the 194 units recorded, 19% (37/194) discharged in distinct bursts occurring at fixed times in the locomotor cycle. The majority of the units discharged either one burst during the period of flexor or extensor activity or one burst during one of the two periods of transition. Three units discharged two bursts per locomotor cycle. The frequency of the antidromic discharges of some units in one limb were also found to be modulated by stimulation of the skin or passive manipulation of the limbs.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 本研究考察了去皮质瘫痪猫在“虚拟”运动期间初级传入神经的节律性活动。在腰骶部和颈部水平观察到了与运动节律频率相同的背根电位(DRP)振荡。此外,还从切断的背根细丝近端残端记录到了初级传入神经单位的节律性逆向放电。本文详细研究了DRP波动、逆向放电与通过记录伸肌和屈肌神经监测的运动活动之间的关系。2. 来自腰骶部和颈部水平的典型DRP记录显示,在每个运动周期中,有两个负波(N1和N2),中间被正波谷(P1和P2)隔开。线性回归分析表明,第一个负波(通常幅度最大)与屈肌活动有关,而第二个负波与伸肌活动有关。两个负波的相对幅度可能会变化,而记录的屈肌或伸肌运动神经中却没有明显的伴随变化。正波谷分别出现在屈肌和伸肌活动之间以及伸肌和屈肌活动之间的转换期附近。3. 在同时记录的不同同侧神经根中,可以观察到周期和幅度相似的DRP。从同一节段双侧记录的DRP具有相同的周期性,但相位相反。双侧记录的神经根中幅度的逐点变化不相关。这表明一侧初级传入神经的极化主要与该侧的运动事件有关。在第13胸椎脊髓横断并注射烟酰胺和左旋多巴的猫中记录到了DRP。这表明,虽然脊髓上部分的作用可能很重要,但至少部分DRP可能是由脊髓本身的运动活动引起的。4. 我们实验中的一个显著发现是,在切断的背根细丝近端残端出现了节律性逆向单位放电。在记录的194个单位中,19%(37/194)在运动周期的固定时间以明显的爆发形式放电。大多数单位在屈肌或伸肌活动期间放电一次,或者在两个转换期之一放电一次。三个单位在每个运动周期放电两次。还发现,通过刺激皮肤或被动操作肢体,可以调节一侧肢体中一些单位的逆向放电频率。(摘要截选至400字)

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