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首页> 外文期刊>Experimental Brain Research >Discharge rate during low-force isometric contractions influences motor unit coherence below 15 Hz but not motor unit synchronization
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Discharge rate during low-force isometric contractions influences motor unit coherence below 15 Hz but not motor unit synchronization

机译:低力等距收缩期间的放电速率会影响15 Hz以下的电机单元相干性,但不会影响电机单元同步

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摘要

The purpose of the study was to determine whether pairs of motor units that discharge action potentials at different rates during isometric contractions exhibit different levels of motor unit synchronization or coherence. Twelve subjects (28.6 ± 6.1 years) performed isometric contractions at target forces slightly above the recruitment threshold (1.02–20.9%) of an isolated motor unit. Based on audio feedback, subjects maintained a relatively constant discharge rate of the isolated unit for about 80 s. Intramuscular electrodes were used to record the discharge of 47 pairs of motor units at rates that ranged from 8.07 to 13.6 pps. Correlated discharge between pairs of motor units was quantified with the common input strength (CIS) index, k′ index, and coherence spectrum. Greater discharge rates across pairs of motor units were predicted (R 2 = 0.36, P < 0.001) by higher coherence from 8 to 13 Hz (r = ?0.52) and lower coherence from 0 to 4 Hz (r = 0.37). Indexes of motor unit synchronization (CIS and k′) were strongly associated with motor unit coherence from 16 to 32 Hz (CIS: R 2 = 0.63; k′: R 2 = 0.4; P = 0.001). The CIS index of motor unit synchronization and the motor unit coherence from 16 to 32 Hz did not vary with discharge rate. In contrast, the k′ index of motor unit synchronization declined with discharge rate (r 2 = 0.20, P = 0.001). Furthermore, greater discharge rates across pairs of motor units were accompanied by higher motor unit coherence in the 8–13 Hz band and lower motor unit coherence in the 0–4 Hz band. These results demonstrate that differences in discharge rate between pairs of motor units in first dorsal interosseus during low-force, isometric contractions were associated with modulation of the correlation in the discharge times of the two motor units at frequencies less than 15 Hz.
机译:该研究的目的是确定在等轴测收缩期间以不同速率释放动作电位的成对运动单元是否表现出不同水平的运动单元同步性或连贯性。 12名受试者(28.6±6.1岁)在目标力的作用下进行了等距收缩,其收缩力略高于隔离运动单元的招募阈值(1.02–20.9%)。根据音频反馈,对象在大约80 s内保持隔离单元的放电速率相对恒定。肌内电极用于记录47对运动单元的放电,速率范围为8.07至13.6 pps。使用共同输入强度(CIS)指数,k'指数和相干光谱对成对的电机单元之间的相关放电进行了量化。通过在8至13 Hz时具有较高的相干性(r =?0.52)和在0至4 Hz时具有较低的相干性(r = 0.37),可以预测成对的电机单元之间的放电速率更大(R 2 = 0.36,P <0.001)。 )。运动单位同步指数(CIS和k')与16至32 Hz的运动单位相干性密切相关(CIS:R 2 = 0.63; k':R 2 = 0.4; P = 0.001 )。电机单元同步的CIS指数以及从16到32 Hz的电机单元相干性均不随放电速率而变化。相反,电机单元同步的k'指数随放电率的降低而下降(r 2 = 0.20,P = 0.001)。此外,在成对的电动机单元之间更高的放电速率伴随着在8–13 Hz频带内较高的电动机单元相干性和在0–4 Hz频带内较低的电动机单元相干性。这些结果表明,在低力等距收缩过程中,第一背骨间的成对运动单元之间的放电速率差异与频率小于15 Hz时两个运动单元放电时间相关性的调制有关。

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