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Sonomyographic responses during voluntary isometric ramp contraction of the human rectus femoris muscle

机译:股直肌自愿等距斜道收缩期间的声像学响应

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This paper aims to investigate the relationship between torque and muscle morphological change, which is derived from ultrasound image sequence and termed as sonomyography (SMG), during isometric ramp contraction of the rectus femoris (RF) muscle, and to further compare SMG with the electromyography (EMG) and mechanomyography (MMG), which represent the electrical and mechanical activities of the muscle. Nine subjects performed isometric ramp contraction of knee up to 90% of the maximal voluntary contraction (MVC) at speeds of 45, 22.5 and 15% MVC/s, and EMG, MMG and ultrasonography were simultaneously recorded from the RF muscle. Cross-sectional area, which was referred to as SMG, was automatically extracted from continuously captured ultrasound images using a newly developed image tracking algorithm. Polynomial regression analyses were applied to fit the EMG/MMG/SMG-to-torque relationships, and the regression coefficients of EMG, MMG, and SMG were compared. Moreover, the effect of contraction speed on SMG/EMG/MMG-to-torque relationships was tested by pair-wise comparisons of the mean relationship curves at different speeds for EMG, MMG and SMG. The results show that continuous SMG could provide important morphological parameters of continuous muscle contraction. Compared with EMG and MMG, SMG exhibits different changing patterns with the increase of torque during voluntary isometric ramp contraction, and it is less influenced by the contraction speed.
机译:本文旨在研究股直肌(RF)肌肉的等距斜面收缩过程中扭矩与肌肉形态变化之间的关系,该关系源自超声图像序列并称为Sonomyography(SMG),并将其与肌电图进行进一步比较(EMG)和机械法(MMG),它们代表肌肉的电气和机械活动。九名受试者以45、22.5和15%MVC / s的速度进行了等轴测斜率的膝盖收缩,最大收缩率为最大自愿收缩(MVC)的90%,同时从RF肌肉同时记录了EMG,MMG和超声检查。使用新开发的图像跟踪算法从连续捕获的超声图像中自动提取横截面面积(称为SMG)。应用多项式回归分析来拟合EMG / MMG / SMG与扭矩的关系,并比较EMG,MMG和SMG的回归系数。此外,通过成对比较EMG,MMG和SMG在不同速度下的平均关系曲线,测试了收缩速度对SMG / EMG / MMG与扭矩的关系的影响。结果表明,连续肌电可以提供连续肌肉收缩的重要形态学参数。与EMG和MMG相比,SMG在等距斜坡收缩过程中随着扭矩的增加而呈现出不同的变化模式,并且受收缩速度的影响较小。

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