Nielsen J, Nagaoka M, Kagamihara Y, Kakuda N, Tanaka R
Department of Medical Physiology, Panum Institute, University of Copenhagen, Denmark.
Neurosci Lett. 1994 Apr 11;170(2):277-80. doi: 10.1016/0304-3940(94)90337-9.
The discharge of 38 tibialis anterior (TA) muscle spindle endings was recorded at rest and during isometric voluntary contraction of the ankle joint in eight healthy human subjects. With the ankle joint in 110 degrees plantarflexion, 24 endings (61%) were tonically active in the resting subject. During weak voluntary dorsiflexion, seven additional endings were activated, so that a total of 31 endings were active (82%). 24 of these were either newly recruited or discharged at a faster rate than at rest (average discharge rate 6.6 Hz at rest, 9.7 Hz during contraction). At matched levels of TA EMG, one ending was newly recruited and 10 were more active during co-contraction of dorsi and plantar flexors than during isolated dorsiflexion. 26 endings were equally active during the two tasks and one ending decreased its firing rate with co-contraction. Four of the 11 endings, which had a higher discharge rate during co-contraction than during dorsiflexion, discharged faster during plantarflexion than at rest although slower than during co-contraction. Plantarflexion had no effect on the discharge of three endings. The remaining four endings were not investigated during plantarflexion. It is suggested that the increased discharge rate of muscle endings during co-contraction is caused either by small changes in the length of the TA muscle or by a disproportionately high fusimotor drive during co-contraction.
在8名健康受试者休息时以及踝关节等长自主收缩过程中,记录了38条胫骨前肌(TA)肌梭末梢的放电情况。当踝关节处于110度跖屈位时,24个末梢(61%)在休息的受试者中呈紧张性活动。在轻微自主背屈过程中,另外7个末梢被激活,因此共有31个末梢活动(82%)。其中24个要么是新募集的,要么放电频率比休息时更快(休息时平均放电频率为6.6赫兹,收缩时为9.7赫兹)。在TA肌电图水平匹配时,在背屈肌和跖屈肌共同收缩期间,有1个末梢是新募集的,10个比单独背屈时更活跃。26个末梢在两项任务中活动程度相同,1个末梢在共同收缩时放电频率降低。在共同收缩期间放电频率高于背屈期间的11个末梢中,有4个在跖屈时放电比休息时快,尽管比共同收缩时慢。跖屈对3个末梢的放电没有影响。其余4个末梢在跖屈期间未进行研究。有人提出,共同收缩期间肌肉末梢放电频率增加,要么是由于TA肌长度的微小变化,要么是由于共同收缩期间运动神经对梭内肌的驱动过高。