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Effect of muscle-fiber velocity recovery function on motor unit action potential properties in voluntary contractions.

机译:肌纤维速度恢复功能对自愿性收缩中运动单位动作电位特性的影响。

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Measurements of muscle-fiber conduction velocity during voluntary contractions have been used in the diagnosis of neuromuscular diseases. However, the velocity of propagation of action potentials depends on the interspike interval of activation due to the velocity recovery function (VRF) of muscle fibers. The comparison of muscle-fiber conduction velocity estimates between individuals may thus be influenced by differences in motor unit discharge rate. This study investigates action potential properties of motor units of the sternocleidomastoid muscle during voluntary modulation of discharge rate with the purpose of assessing the effect of the VRF on motor unit properties in voluntary contractions. Nineteen healthy men trained to control a target motor unit with feedback of surface multichannel electromyographic (EMG) signals. The subjects performed three 30-s contractions of cervical flexion/rotation modulating the discharge rate of the target motor unit from 6.6 +/- 1.6 pps to 28.0 +/- 6.4 pps. Actionpotential conduction velocity was correlated to instantaneous discharge rate (R = 0.38 +/- 0.21). Action potential conduction velocity, peak-to-peak amplitude, and duration varied between minimum and maximum discharge rate (P < 0.01; percent change 12.3 +/- 5.0, -11.8 +/- 9.9, and -12.9 +/- 7.3). Thus, the properties of surface motor unit action potentials vary with modulation of discharge rate. This has implications for the use of conduction velocity values measured during voluntary contractions to differentiate patient populations from healthy individuals and for the development of normative data.
机译:测量自愿收缩过程中的肌纤维传导速度已用于诊断神经肌肉疾病。但是,由于肌肉纤维的速度恢复功能(VRF),动作电位的传播速度取决于激活的尖峰间隔。因此,个体之间的肌肉纤维传导速度估计值的比较可能会受到运动单位放电速率差异的影响。本研究调查了自愿调节放电速率期间胸锁乳突肌运动单位的动作电位特性,目的是评估VRF对自愿收缩中运动单位特性的影响。十九名健康男性经过培训,可以利用表面多通道肌电图(EMG)信号的反馈控制目标运动单元。受试者进行了三个30秒钟的颈椎屈曲/旋转收缩,将目标运动单元的放电速率从6.6 +/- 1.6 pps调整为28.0 +/- 6.4 pps。动作电位传导速度与瞬时放电速率相关(R = 0.38 +/- 0.21)。动作电位的传导速度,峰-峰幅度和持续时间在最小放电速率和最大放电速率之间变化(P <0.01;百分比变化12.3 +/- 5.0,-11.8 +/- 9.9和-12.9 +/- 7.3)。因此,表面电动机单元动作电位的特性随放电速率的调制而变化。这对于使用自愿收缩过程中测得的传导速度值来区分患者人群与健康个体以及规范性数据的发展具有重要意义。

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