Winges Sara A, Kornatz Kurt W, Santello Marco
Department of Kinesiology, Arizona State University, Tempe, AZ 85287, USA.
J Neurophysiol. 2008 Mar;99(3):1119-26. doi: 10.1152/jn.01059.2007. Epub 2008 Jan 2.
Anatomical and physiological evidence suggests that common input to motor neurons of hand muscles is an important neural mechanism for hand control. To gain insight into the synaptic input underlying the coordination of hand muscles, significant effort has been devoted to describing the distribution of common input across motor units of extrinsic muscles. Much less is known, however, about the distribution of common input to motor units belonging to different intrinsic muscles and to intrinsic-extrinsic muscle pairs. To address this void in the literature, we quantified the incidence and strength of near-simultaneous discharges of motor units residing in either the same or different intrinsic hand muscles (m. first dorsal, FDI, and m. first palmar interosseus, FPI) during two-digit object hold. To extend the characterization of common input to pairs of extrinsic muscles (previous work) and pairs of intrinsic muscles (present work), we also recorded electromyographic (EMG) activity from an extrinsic thumb muscle (m. flexor pollicis longus, FPL). Motor-unit synchrony across FDI and FPI was weak (common input strength, CIS, mean +/- SE: 0.17 +/- 0.02). Similarly, motor units from extrinsic-intrinsic muscle pairs were characterized by weak synchrony (FPL-FDI: 0.25 +/- 0.02; FPL-FPI: 0.29 +/- 0.03) although stronger than FDI-FPI. Last, CIS from within FDI and FPI was more than three times stronger (0.70 +/- 0.06 and 0.66 +/- 0.06, respectively) than across these muscles. We discuss present and previous findings within the framework of muscle-pair specific distribution of common input to hand muscles based on their functional role in grasping.
解剖学和生理学证据表明,手部肌肉运动神经元的共同输入是手部控制的重要神经机制。为了深入了解手部肌肉协调背后的突触输入,人们投入了大量精力来描述共同输入在外展肌运动单位中的分布情况。然而,对于不同固有肌以及固有肌与外展肌配对的运动单位中共同输入的分布情况,我们知之甚少。为了填补这一文献空白,我们对在双指握持物体过程中,位于同一块或不同手部固有肌(第一背侧肌,FDI,和第一掌侧骨间肌,FPI)内的运动单位近同步放电的发生率和强度进行了量化。为了将共同输入的特征扩展到外展肌对(先前的研究)和固有肌对(当前的研究),我们还记录了一块外展拇指肌(拇长屈肌,FPL)的肌电图(EMG)活动。FDI和FPI之间的运动单位同步性较弱(共同输入强度,CIS,平均值±标准误:0.17±0.02)。同样,外展肌与固有肌配对的运动单位同步性也较弱(FPL - FDI:0.25±0.02;FPL - FPI:0.29±0.03),尽管比FDI - FPI更强。最后,FDI和FPI内部的CIS比跨这些肌肉的CIS强三倍多(分别为0.70±0.06和0.66±0.06)。我们在基于手部肌肉在抓握中的功能作用而对手部肌肉共同输入进行肌肉对特异性分布的框架内讨论了当前和先前的研究结果。