首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >The relationship between muscle activation and shear elastic modulus of the sternocleidomastoid muscle during 3-D torque production
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The relationship between muscle activation and shear elastic modulus of the sternocleidomastoid muscle during 3-D torque production

机译:3-D扭矩生产胸骨细胞肌瘤肌肉肌肉活化与剪切弹性模量的关系

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摘要

The sternocleidomastoid (SCM) is a primary neck torque generator, but the relationship between its muscle activation and shear elastic modulus during 3-D torque production is unknown. This study examined variations in neural control and shear elastic modulus of the SCM across various 3-D isometric torques. Our primary hypothesis was that the SCM would display similar preferred directions where muscle activity and shear elastic modulus were maximal during voluntary 3-D isometric torque production. Surface electromyography (EMG) and ultrasound shear wave elastography (SWE) data were collected from the SCM in 20 participants performing 3-D isometric target-matching at two different torque amplitudes. We used spherical statistics to compare the preferred directions calculated from the SWE and EMG data at 40% and 80% torque level during 3-D isometric torque production. We demonstrated a small but significant difference between EMG and SWE preferred directions, with the SWE preferred direction oriented more towards ipsilateral bending and less towards contra lateral axial rotation than the preferred direction for the EMG data. We conclude that, although small differences exist, SCM shear elastic modulus is largely driven by activation during 3-D neck torques for healthy individuals.
机译:胸锁乳突肌(SCM)是主要的颈部扭矩发生器,但其肌肉激活与三维扭矩产生过程中剪切弹性模量之间的关系尚不清楚。本研究考察了不同三维等距扭矩下SCM的神经控制和剪切弹性模量的变化。我们的主要假设是,当肌肉活动和剪切弹性模量在自愿的三维等长扭矩产生过程中达到最大值时,SCM将显示类似的首选方向。从SCM收集了20名参与者的表面肌电图(EMG)和超声剪切波弹性成像(SWE)数据,这些参与者在两种不同的扭矩振幅下进行三维等距目标匹配。在三维等轴测扭矩产生过程中,我们使用球面统计来比较在40%和80%扭矩水平下根据SWE和EMG数据计算出的首选方向。我们证明了EMG和SWE首选方向之间存在微小但显著的差异,与EMG数据的首选方向相比,SWE首选方向更倾向于同侧弯曲,而较少倾向于对侧轴向旋转。我们的结论是,尽管存在微小差异,但健康个体在三维颈部扭矩期间,SCM剪切弹性模量主要由激活驱动。

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