Hwang Ing-Shiou, Wang Chun-Hou, Chen Yi-Ching, Cho Chiung-Yu, Yeung Kwok-Tak
Department of Physical Therapy, National Cheng Kung University, Tainan 701, Taiwan.
J Electromyogr Kinesiol. 2006 Aug;16(4):313-23. doi: 10.1016/j.jelekin.2005.07.012. Epub 2005 Oct 21.
The intensity and spatial representation of electromyographical (EMG) activity were examined to characterize the effects of limb dominance and movement direction upon global synkinesis (GS). Twenty-two healthy young subjects (11 men, 11 women) with a mean age of 24.7 years participated in this study. Three trials of EMG activities from eight primary muscles in the unexercised limb were recorded when a maximal isometric contraction in various directions was performed by the shoulder, elbow, and wrist of the dominant and non-dominant upper limbs. The features of GS, including intensity and spatial representation, were quantified with standardized net excitation levels (SNE) and relative excitation (RE), respectively. Our data indicated that (1) GS intensity was strongly limb-dependent with a larger SNE level arising when target joints of the non-dominant upper limb were active, (2) the GS intensity was more influenced by movement direction of the non-dominant limb than by that of the dominant limb, (3) the gradient change in GS intensity was observed bilaterally with a larger SNE level associated with contralateral movements of a proximal joint than a distal joint, and (4) GS spatial representations of the upper limbs were patterned and symmetrical, but seemly insensitive to movement direction. Laterality in GS intensity and structured GS spatial representation with symmetry could be a consequence of use-dependent hemispheric organization.
研究了肌电图(EMG)活动的强度和空间表现,以表征肢体优势和运动方向对整体联带运动(GS)的影响。22名平均年龄为24.7岁的健康年轻受试者(11名男性,11名女性)参与了本研究。当优势和非优势上肢的肩部、肘部和腕部进行不同方向的最大等长收缩时,记录未运动肢体中八块主要肌肉的三次EMG活动试验。GS的特征,包括强度和空间表现,分别用标准化净兴奋水平(SNE)和相对兴奋(RE)进行量化。我们的数据表明:(1)GS强度强烈依赖于肢体,当非优势上肢的目标关节活动时,SNE水平更高;(2)GS强度受非优势肢体运动方向的影响大于优势肢体;(3)双侧观察到GS强度的梯度变化,近端关节对侧运动的SNE水平大于远端关节;(4)上肢的GS空间表现具有模式且对称,但似乎对运动方向不敏感。GS强度的侧性和具有对称性的结构化GS空间表现可能是依赖于使用的半球组织的结果。