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人类下肢对肌肉拉伸的中潜伏期反应:II类纤维传导速度及中枢延迟的估计

Medium-latency response to muscle stretch in human lower limb: estimation of conduction velocity of group II fibres and central delay.

作者信息

Nardone A, Schieppati M

机构信息

Salvatore Maugeri Foundation (IRCCS), Rehabilitation Institute of Veruno, Division of Physical Therapy and Rehabilitation, Veruno (NO), Italy.

出版信息

Neurosci Lett. 1998 Jun 12;249(1):29-32. doi: 10.1016/s0304-3940(98)00383-8.

Abstract

In standing subjects, ankle dorsiflexion evoked short-latency responses (SLRs) at 41 and 57 ms, on the average, in soleus (Sol) and flexor digitorum brevis (FDB), respectively. Medium-latency responses (MLRs) occurred at 70 and 95 ms. The time between the MLRs was 25 ms and between the SLRs was 16 ms. The difference between these two values represents the extra-time to conduct the FDB volley for MLR from distal to proximal muscle, in excess to that for SLR. The velocity of the afferents mediating the FDB MLR (21.4 m/s on average) was estimated by dividing the distance between the two muscles by the sum of the above extra-time and the conduction time of Ia fibres along the same distance. The central delay of FDB MLR (6.7 ms on average) was obtained by dividing the distance between FDB and spinal cord by the sum of afferent and efferent MLR conduction times. The central delay of FDB SLR (1.4 ms) was analogously obtained. These findings give an estimation of the conduction velocity of the group II afferent fibres in humans and support the hypothesis that the FDB MLR is relayed through a spinal oligosynaptic pathway.

摘要

在站立的受试者中,踝关节背屈分别在比目鱼肌(Sol)和趾短屈肌(FDB)平均于41毫秒和57毫秒诱发短潜伏期反应(SLR)。中潜伏期反应(MLR)出现在70毫秒和95毫秒。MLR之间的时间间隔为25毫秒,SLR之间的时间间隔为16毫秒。这两个值之间的差异代表了从远端肌肉向近端肌肉传导MLR的FDB冲动所需的额外时间,超过了SLR的额外时间。通过将两块肌肉之间的距离除以上述额外时间与Ia纤维沿相同距离的传导时间之和,估计介导FDB MLR的传入神经速度(平均为21.4米/秒)。通过将FDB与脊髓之间的距离除以传入和传出MLR传导时间之和,获得FDB MLR的中枢延迟(平均为6.7毫秒)。类似地获得FDB SLR的中枢延迟(1.4毫秒)。这些发现给出了人类II类传入纤维传导速度的估计,并支持了FDB MLR通过脊髓寡突触通路中继的假说。

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