Shoulder and elbow joint power differ as a general feature of vertical arm movements

被引:0
作者
J. C. Galloway
A. Bhat
J. C. Heathcock
K. Manal
机构
[1] University of Delaware,Motor Behavior Lab, Dept. of Physical Therapy
[2] University of Delaware,Biomechanics and Movement Science Program
[3] University of Delaware,Center for Biomedical Engineering Research
来源
Experimental Brain Research | 2004年 / 157卷
关键词
Arm movements; Elbow; Joint power; Multijoint control; Reaching; Shoulder;
D O I
暂无
中图分类号
学科分类号
摘要
Consistent patterns of joint power underlie coordinated lower extremity behaviors such as running and walking. Recent work found that shoulder and elbow power consistently differed during reaching movements in the horizontal plane. Moreover, joint power during horizontal reaching appears correlated with motor cortical activity. It is not known if the feature of differential joint power extends to vertical plane reaches or to reaches of different movement conditions. The purpose of this study was to test for differential shoulder and elbow power during the acceleratory and deceleratory phases of fast and normal speed vertical reaches in sitting and supine positions. Our results suggest that shoulder and elbow power typically differed both within and across conditions. First, shoulder power values were positive or negative dependent largely on movement direction and movement phase. That is, for each direction and phase, the shoulder either generated or absorbed energy independent of speed or body position. Second, and unexpectedly, reaches of certain condition combinations had similar shoulder power magnitudes across directions. In contrast, elbow power values for each direction varied between positive and negative values depending on phase, speed and position, and no two condition combinations overlapped across directions. Third, as target direction, movement phase and body position varied, shoulder power at fast and normal speeds were linearly correlated, as was shoulder power in sitting and in supine. In contrast, elbow power was linearly correlated only between speeds. These results join other studies to suggest that the neuromotor control of the shoulder may be less complex as compared to the elbow as a general feature of reaching movements. This differential control has important implications for the study of reaching impairments in neurorehabilitation populations, and provides a potentially important variable in the study of cortical firing patterns.
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页码:391 / 396
页数:5
相关论文
共 37 条
[1]  
Bastian undefined(1996)undefined J Neurophys 76 492-undefined
[2]  
Bastian undefined(2000)undefined J Neurophysiol 83 3019-undefined
[3]  
Beer undefined(1999)undefined Arch Phys Med Rehabil 80 766-undefined
[4]  
Bianchi undefined(1998)undefined J Neurophys 79 2155-undefined
[5]  
Cabel undefined(2001)undefined J Neurophys 86 2102-undefined
[6]  
Dounskaia undefined(2002)undefined Exp Brain Res 146 11-undefined
[7]  
Eng undefined(1995)undefined J Biomech 28 753-undefined
[8]  
Eng undefined(1997)undefined J Biomech 30 581-undefined
[9]  
Fisk undefined(1993)undefined J Neurophys 69 504-undefined
[10]  
Galloway undefined(2002)undefined Exp Brain Res 142 163-undefined