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猫在运动过程中的后肢运动神经元。I. 投射目的地、轴突传导速度和募集阈值。

Cat hindlimb motoneurons during locomotion. I. Destination, axonal conduction velocity, and recruitment threshold.

作者信息

Hoffer J A, Loeb G E, Marks W B, O'Donovan M J, Pratt C A, Sugano N

出版信息

J Neurophysiol. 1987 Feb;57(2):510-29. doi: 10.1152/jn.1987.57.2.510.

Abstract

Fine flexible wire microelectrodes chronically implanted in the fifth lumbar ventral root (L5 VR) of 17 cats rendered stable records of the natural discharge patterns of 164 individual axons during locomotion on a treadmill. Fifty-one out of 164 axons were identified as motoneurons projecting to the anterior thigh muscle group. For these axons, the centrifugal propagation of action potentials was demonstrated by the technique of spike-triggered averaging using signals recorded from cuff electrodes implanted around the femoral nerve. The axonal conduction velocity was measured from the femoral nerve cuff records. For 43/51 motoneurons, the corresponding target muscle was identified by spike-triggered averaging of signals recorded from bipolar EMG electrodes implanted in each of the anterior thigh muscles: vastus intermedius, medialis and lateralis, sartorius anterior and medialis, and rectus femoris. For 32/51 motoneurons, the recruitment threshold during locomotion was determined from the mean value of the rectified digitally smoothed EMG of the target muscle measured at the time when the motoneuron fired its first spike for each step. The recruitment threshold of every motoneuron was relatively constant for a given speed of walking, but for some units there were small systematic variations as a function of treadmill speed (range: 0.1-1.3 m/s). Recruitment thresholds were standardized with respect to the mean value of peak EMG activity of the target muscle during 16 s of walking at 0.5 m/s. For 28/51 motoneurons recorded in nine cats, recruitment thresholds (range: 3-93% of peak target muscle EMG) were linearly correlated (r = 0.51, P less than 0.02) to axonal conduction velocities (range: 57-117 m/s). In addition, for seven recorded pairs of motoneurons that projected to the same muscle in the same cat, the recruitment thresholds were ordered by relative conduction velocities. Taken together, these results are consistent with the notion that, in normal cat locomotion up to a medium trot, anterior thigh motoneurons are progressively recruited in an orderly fashion.

摘要

将精细的柔性线微电极长期植入17只猫的第五腰段腹根(L5 VR),可在跑步机上运动期间稳定记录164个单根轴突的自然放电模式。164根轴突中有51根被鉴定为投射到大腿前肌群的运动神经元。对于这些轴突,通过使用从围绕股神经植入的袖带电极记录的信号进行峰电位触发平均技术,证明了动作电位的离心传播。从股神经袖带记录中测量轴突传导速度。对于43/51个运动神经元,通过对植入大腿前侧各肌肉(股中间肌、股内侧肌和股外侧肌、缝匠肌前侧和内侧以及股直肌)的双极肌电图电极记录的信号进行峰电位触发平均,确定相应的目标肌肉。对于32/51个运动神经元,运动期间的募集阈值由在运动神经元每一步首次发放峰电位时测量的目标肌肉经数字平滑整流的肌电图平均值确定。对于给定的行走速度,每个运动神经元的募集阈值相对恒定,但对于一些单位,随着跑步机速度(范围:0.1-1.3 m/s)存在小的系统变化。募集阈值相对于在0.5 m/s行走16 s期间目标肌肉的峰肌电图活动平均值进行标准化。在9只猫中记录的28/51个运动神经元,募集阈值(范围:目标肌肉峰肌电图的3-93%)与轴突传导速度(范围:57-117 m/s)呈线性相关(r = 0.51,P小于0.02)。此外,对于在同一只猫中投射到同一肌肉的7对记录的运动神经元,募集阈值按相对传导速度排序。综上所述,这些结果与以下观点一致:在正常猫的中速小跑之前的运动中,大腿前侧运动神经元以有序的方式逐渐被募集。

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