Effects of arm and leg positions on lumbar multifidus muscle activity while on hands and knees or while standing.

IF 3.3 4区 医学 Q1 PHYSIOLOGY
Yasuhiro Mitani, Masaru Hanafusa, Junichi Hashimoto, Ryuta Inada, Hitoshi Koda
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引用次数: 0

Abstract

Background: The lumbar multifidus (LMF) muscle, which is involved in the mechanical stability of the lumbar spine, reportedly undergoes atrophy in patients with low back pain. Preventing or mitigating low back pain requires strengthening the LMF muscle; however, methods for triggering selective and significant contraction of this muscle have not been fully studied. This study aims to clarify how, in the hands-and-knees or standing position, the position of the arm and leg on one side affects the activity of the lumbar erector spinae (LES) and LMF muscles.

Methods: We recruited nine adult men with no prior history of low back pain. Measurements were taken in four different postures under varying conditions (that is, one arm and one leg were lifted in either the hands-and-knees or standing position,) as follows: (1) shoulder joint flexion and hip joint extension in the hands-and-knees position; (2) 90° shoulder joint abduction and hip joint abduction in the hands-and-knees position; (3) shoulder joint flexion and hip joint extension in the standing position; and (4) 90° shoulder joint abduction and hip joint abduction in the standing position. The 90° shoulder joint abduction involved simultaneous horizontal abduction, while the hip joint abduction involved simultaneous extension. Muscle activity of the LES and LMF in each posture was measured using a surface electromyograph.

Results: Muscle activity of the LMF was significantly higher in 90° shoulder joint abduction and hip joint abduction than in shoulder joint flexion and hip joint extension in both the hands-and-knees and standing positions. The LES muscle showed no significant differences in activity between each posture.

Conclusions: The results suggest that unilateral 90° shoulder joint abduction and contralateral hip joint abduction in the hands-and-knees and standing positions may produce selective and significant contraction of the LMF muscle.

手膝跪地或站立时手臂和腿部姿势对腰部多裂肌活动的影响。
背景:腰椎多裂肌(LMF)参与腰椎的机械稳定性,据报道,腰痛患者的腰椎多裂肌会发生萎缩。预防或减轻腰背痛需要加强腰背多裂肌的力量;然而,引发腰背多裂肌选择性明显收缩的方法尚未得到充分研究。本研究旨在阐明在手脚并用或站立姿势下,一侧手臂和腿的位置如何影响腰椎直立肌(LES)和腰背肌的活动:我们招募了九名没有腰痛病史的成年男性。在不同条件下(即在手脚并用或站立姿势下抬起一只胳膊和一条腿),以以下四种不同姿势进行测量:(1)手膝姿势下的肩关节屈曲和髋关节伸展;(2)手膝姿势下的肩关节内收 90°和髋关节外展;(3)站立姿势下的肩关节屈曲和髋关节伸展;以及(4)站立姿势下的肩关节内收 90°和髋关节外展。90°肩关节外展包括同时水平外展,而髋关节外展包括同时伸展。使用表面肌电图测量了每种姿势下 LES 和 LMF 的肌肉活动:结果:在手脚并用和站立姿势下,肩关节外展90°和髋关节外展时的LMF肌肉活动明显高于肩关节屈曲和髋关节伸展时的LMF肌肉活动。LES肌肉在各种姿势下的活动无明显差异:结果表明,手膝位和站立位的单侧 90° 肩关节外展和对侧髋关节外展可能会对 LMF 肌肉产生选择性的显著收缩。
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来源期刊
自引率
6.50%
发文量
39
期刊介绍: Journal of Physiological Anthropology (JPA) is an open access, peer-reviewed journal that publishes research on the physiological functions of modern mankind, with an emphasis on the physical and bio-cultural effects on human adaptability to the current environment. The objective of JPA is to evaluate physiological adaptations to modern living environments, and to publish research from different scientific fields concerned with environmental impact on human life. Topic areas include, but are not limited to: environmental physiology bio-cultural environment living environment epigenetic adaptation development and growth age and sex differences nutrition and morphology physical fitness and health Journal of Physiological Anthropology is the official journal of the Japan Society of Physiological Anthropology.
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