Roy A L, Keller T S, Colloca C J
University of Vermont, Department of Mechanical Engineering, 33 Colchester Avenue, 119 Votey Building, Burlington, VT 05405-0156, USA.
J Electromyogr Kinesiol. 2003 Oct;13(5):469-76. doi: 10.1016/s1050-6411(03)00060-9.
Posture-dependent trunk function data are important for appropriate normalization of submaximal trunk exertions, and is also necessary to define a more precise and specific use for strength testing in the prevention and diagnosis of spinal disorders. The aim of the current study was to quantify maximal effort trunk muscle extensor activity and trunk isometric extension torque over a functional range of sagittal standing postures. Twenty healthy, young adult male and female subjects performed isometric extension tasks over a sagittal posture range of -20 degrees extension to +50 degrees flexion, in 10 degrees increments. Erector spinae muscle activity was recorded bilaterally at the level of L3 using surface EMG electrodes. Isometric trunk extension torque was measured using a trunk dynamometer. EMG and trunk torque differed significantly between genders, but there were no differences between male and female subjects when the data were normalized with respect to the upright posture. For the combined male and female population, upright posture normalized L3 EMG activity (EMGn) and trunk extension torque (Tn) increased 1.7-fold and 3.5-fold, respectively, over the 70 degrees range of sagittal postures examined. The ratio (Tn/EMGn) increased two-fold (0.83 to 1.67) from -20 degrees extension to +50 degrees flexion, indicating that the neuromuscular efficiency increases with flexion. Trunk extension torque normalized with respect to the upright posture was linearly and positively correlated (r = 0.59, P < 0.001) to similarly normalized L3 EMG activity. This relatively weak correlation suggests that trunk muscle synergism and/or intrinsic muscle length-tension relationships are also modulated by posture. This study provides data that can be used to estimate trunk extensor muscle function over a broad range of sagittal postures. Our findings indicate that appropriate postural normalization of trunk extensor EMG activity is necessary for studies where submaximal trunk exertions are performed over a range of upright postures.
姿势依赖性躯干功能数据对于亚最大躯干用力的适当标准化很重要,对于在脊柱疾病的预防和诊断中更精确、具体地定义力量测试的用途也很有必要。本研究的目的是量化矢状面站立姿势功能范围内最大用力时躯干伸肌活动和躯干等长伸展扭矩。20名健康的年轻成年男性和女性受试者在矢状面姿势范围从-20度伸展到+50度屈曲(以10度递增)内进行等长伸展任务。使用表面肌电图电极在L3水平双侧记录竖脊肌活动。使用躯干测力计测量等长躯干伸展扭矩。肌电图和躯干扭矩在性别之间存在显著差异,但当数据相对于直立姿势进行标准化时,男性和女性受试者之间没有差异。对于男性和女性的综合人群,在检查的70度矢状面姿势范围内,相对于直立姿势标准化的L3肌电图活动(EMGn)和躯干伸展扭矩(Tn)分别增加了1.7倍和3.5倍。从-20度伸展到+50度屈曲,比率(Tn/EMGn)增加了两倍(从0.83到1.67),表明神经肌肉效率随屈曲增加。相对于直立姿势标准化的躯干伸展扭矩与同样标准化的L3肌电图活动呈线性正相关(r = 0.59,P < 0.001)。这种相对较弱的相关性表明,躯干肌肉协同作用和/或内在肌肉长度-张力关系也受姿势调节。本研究提供的数据可用于估计广泛矢状面姿势范围内的躯干伸肌功能。我们的研究结果表明,对于在一系列直立姿势下进行亚最大躯干用力的研究,对躯干伸肌肌电图活动进行适当的姿势标准化是必要的。