Falla D, Farina D
Department of Health Science and Technology, Center for Sensory-Motor Interaction (SMI), Aalborg University, Aalborg, Denmark.
Acta Physiol (Oxf). 2008 Apr;192(4):551-8. doi: 10.1111/j.1748-1716.2007.01776.x. Epub 2007 Nov 2.
To compare the discharge patterns of motor unit populations from different locations within the upper trapezius muscle during brief submaximal constant-force contractions.
Intramuscular and surface electromyographic (EMG) signals were collected from three sites of the right upper trapezius muscle distributed along the cranial-caudal direction in 11 volunteers during 10 s shoulder abduction at 25% of the maximum voluntary force.
A total of 38 motor units were identified at the cranial location, 36 from the middle location and 17 from the caudal location. Initial discharge rate was greatest at the caudal location (P < 0.05; mean +/- SD, cranial: 16.7 +/- 3.6 pps, middle: 16.9 +/- 4.0 pps, caudal: 19.2 +/- 3.3 pps). Discharge rate decreased during the contraction for the most caudal location only (P < 0.05). Initial estimates of surface EMG root mean square values were highest at the most caudal location (P < 0.05; cranial: 32.3 +/- 20.9 microV, middle: 41.3 +/- 21.0 microV, caudal: 51.6 +/- 23.6 microV).
This study demonstrates non-uniformity of motor unit discharge within the upper trapezius muscle during a brief submaximal constant-force contraction. Location-dependent modulation of discharge rate may reflect spatial dependency in the control of motor units necessary for the development and maintenance of force output.
比较在短暂次最大等长收缩过程中,斜方肌上部不同位置运动单位群的放电模式。
在11名志愿者以最大自主力量的25%进行10秒肩部外展时,从沿头-尾方向分布的右斜方肌上部三个部位采集肌内和表面肌电图(EMG)信号。
在头侧部位共识别出38个运动单位,中间部位36个,尾侧部位17个。初始放电率在尾侧部位最高(P < 0.05;均值±标准差,头侧:16.7±3.6次/秒,中间:16.9±4.0次/秒,尾侧:19.2±3.3次/秒)。仅在最尾侧部位,收缩过程中放电率下降(P < 0.05)。表面EMG均方根值的初始估计在最尾侧部位最高(P < 0.05;头侧:32.3±20.9微伏,中间:41.3±21.0微伏,尾侧:51.6±23.6微伏)。
本研究表明,在短暂次最大等长收缩过程中,斜方肌上部运动单位放电不均匀。放电率的位置依赖性调制可能反映了在力输出的产生和维持中,运动单位控制的空间依赖性。