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Main force directions of trunk muscles: A pilot study in healthy male subjects

机译:主力躯干肌肉的主力方向:健康男性科目的试点研究

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摘要

Muscles work most effectively along their anatomically defined action vector(s) which has implications in training and therapeutics. Action vectors can easily be identified in extremity muscles and smaller muscles of the trunk, but are less clear in larger trunk muscles. Trunk muscle exercises and diagnostics have traditionally relied on tasks in the sagittal plane - a practice that is being reconsidered. Therefore, this study aimed at identifying main force directions (MFDs) of major trunk muscles expressed in terms of deviation from the sagittal plane. 20 healthy male subjects underwent graded isometric submaximal static load applications on their trunk by application of simultaneous and incremental tilting and rotating from vertical to horizontal at rotational angles of 45 degrees starting from 0 degrees (forward tilting) around 360 degrees with only the lower body secured. Surface EMG (SEMG) from six trunk muscles on each body side was recorded. The MFD of each trunk muscle was estimated by considering SEMG amplitudes of all rotational angles, separately for all tilt angles, and was expressed as angular deviation from sagittal plane. The calculated MFDs of trunk muscles deviated from sagittal plane to differing extents. Mean MFD angle was smallest (more parallel to sagittal plane) for rectus abdominis muscle ( +/- 14 degrees), becoming more lateral for external oblique (OE, +/- 32 degrees) and internal oblique abdominal muscles (0I, +/- 47 degrees). As tilt angle increased, MFD angles increased for OE, but decreased for OI. Iliocostalis muscle showed an almost laterally directed MFD with systematic dependency on body side ( - 90 degrees for left and +75 degrees for right side). Both paravertebral muscles (longissimus and multifidus muscles) showed almost identical MFD angles of about +/- 145 degrees and varied the least with tilt angle. All trunk muscles' MFDs deviate from sagittal plane and, in addition to flexing and extending, have both bending and/or rotational capabilities. MFDs of oblique abdominal muscles are systematically altered by tilt angle in accordance with their more divergent fiber direction. ality. The results provide a basis for specifically targeted diagnostics and training of trunk muscles.
机译:肌肉沿其具有在训练和治疗影响解剖学定义的动作矢量(S)工作最有效。动作向量可以很容易地在末端肌肉和肌肉较小中继线的标识,但在较大的躯干肌肉不太清楚。正在被重新进行审查的做法 - 躯干肌肉锻炼和诊断矢状面传统上依靠任务。因此,本研究旨在确定从矢状面偏差方面表示主要躯干肌肉的主力方向(MFD的)。 20名健康男性受试者进行分级等距次最大通过同时和增量倾斜的应用程序并从垂直到水平45度的旋转角度从0度(前倾)周围360度只有下半身固定开始旋转在其躯干静载荷的应用程序。从各体方六块躯干肌肉表面肌电图(肌电)记录。每个中继线肌肉的MFD,通过考虑所有的旋转角度的表面肌电振幅,分别对所有倾斜角推定,并表示为从矢状面的角度偏差。躯干肌肉的模场直径计算从矢状面偏向不同程度。平均数MFD角度为最小的(更平行于矢状面),用于腹直肌(+/- 14度),成为外斜多个横向(OE,+/- 32度)和内斜腹肌(0I,+/- 47度)。随着倾斜角增大,MFD角度增加了OE,但降低了OI。髂肋肌肌肉显示出几乎侧向指向的MFD与体侧系统的依赖性( - 左90度和75度右侧)。既椎旁肌(最长和多裂肌)显示出几乎相同的约+/- 145度角MFD和而变化的至少与倾斜角。所有躯干肌肉的MFD从矢状平面偏离,并且在除了弯曲和延伸,同时具有弯曲和/或旋转的能力。斜腹肌的MFD被系统地由倾斜角度根据其更发散纤维方向改变。先进而精湛。研究结果为专门针对诊断和躯干肌肉的训练提供了依据。

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