Hedayatpour Nosratollah, Arendt-Nielsen Lars, Farina Dario
Center for Sensory-Motor Interaction, Department of Health Science and Technology, Aalborg University, Fredrik Bajers Vej 7 D-3, 9220 Aalborg, Denmark.
Exp Brain Res. 2007 Jul;180(3):509-16. doi: 10.1007/s00221-007-0877-4. Epub 2007 Feb 8.
The aim of the study was to analyze motor unit conduction velocity at varying force of the vastus medialis muscle during sustained contraction. Surface (8-electrode array) and intramuscular (two wire electrodes) EMG signals were recorded from the distal part of the dominant vastus medialis muscle of ten healthy male subjects. The subjects sat on a chair with the knee 90 degrees flexed and performed seven 180-s long contractions at forces in the range 2.5-30% of the maximal voluntary contraction force. For each force level, the discharge patterns of the newly recruited motor units with respect to the previous force level were identified from the intramuscular recordings and used as trigger for averaging the surface EMG signals. Motor unit conduction velocity was estimated from the averaged surface EMG. Average discharge rate at which motor units were analyzed was the same for each force level (mean +/- SD, 8.3 +/- 0.8 pulses per second). Motor unit conduction velocity at the beginning of the contraction and its rate of change over time increased with force (P < 0.05). Conduction velocity at the beginning of the contraction estimated from the interference surface EMG (4.44 +/- 0.66 m/s) and from single motor units (4.75 +/- 0.56 m/s) were positively correlated (R (2) = 0.46; P < 0.0001) but significantly different (P < 0.05). The results indicate that single motor unit conduction velocity and its rate of change during sustained contraction, assessed at a fixed discharge rate, depend on force level.
本研究的目的是分析在持续收缩过程中,股内侧肌在不同力量下的运动单位传导速度。从10名健康男性受试者优势侧股内侧肌远端记录表面(8电极阵列)和肌内(两根线电极)肌电图信号。受试者坐在椅子上,膝关节屈曲90度,以最大自主收缩力的2.5%-30%的力量进行7次持续180秒的收缩。对于每个力量水平,从肌内记录中识别新募集运动单位相对于先前力量水平的放电模式,并将其用作平均表面肌电图信号的触发信号。从平均表面肌电图估计运动单位传导速度。每个力量水平分析运动单位的平均放电率相同(平均值±标准差,每秒8.3±0.8个脉冲)。收缩开始时的运动单位传导速度及其随时间的变化率随力量增加(P<0.05)。从干扰表面肌电图(4.44±0.66米/秒)和单个运动单位(4.75±0.56米/秒)估计的收缩开始时的传导速度呈正相关(R²=0.46;P<0.0001),但有显著差异(P<0.05)。结果表明,在固定放电率下评估的持续收缩过程中单个运动单位的传导速度及其变化率取决于力量水平。