Effects of hand dominance on myoelectric signal of non‑fatigued lumbar multifidus muscle during single arm lifts.

IF 1.4 4区 医学 Q4 NEUROSCIENCES
Dawid Łochyński, Grzegorz Stępień, Silvija Angelova, Rositsa Raikova, Marcin Grześkowiak
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引用次数: 0

Abstract

Some evidence indicates that lower back muscles located at the non‑dominant side of the body are more fatigue resistant than their opposite counterparts presumably due to preferential use of the dominant hand. The aim of the study was to determine if any distinction exists in the surface electromyographic activity of corresponding contralateral non‑fatigued lumbar multifidus (LM) muscles as a function of hand dominance. The relative to maximum root mean square, the median frequency (MdF) and spike shape parameters were computed from the surface myoelectric signals of ipsilateral and contralateral lumbar multifidus muscle of 46 adult healthy subjects (27 right‑handed, 19 left‑handed) during voluntary contractions evoked by the single arm lifts in prone position. Activation of LM as a contralateral muscle to lifted arm was greater than as ipsilateral muscle, independently of handedness. Regardless if LM performed ipsi‑ or contralateral action to the lifted arm, the mean spike amplitude, slope, number of peaks per spike and spike duration were greater and mean spike frequency as well as MdF were smaller in the muscle of dominant than non‑dominant side. Combined changes of spike shape measures indicate increased recruitment, lower firing rates and higher synchronization of motor units in the LM of dominant side as compared to its counterpart.

单臂抬举时手的主导性对非疲劳腰部多裂肌肌电信号的影响
有证据表明,位于身体非优势侧的腰背肌比对侧的腰背肌更耐疲劳,这可能是由于优势手的优先使用所致。本研究旨在确定相应对侧非疲劳腰部多裂肌(LM)的表面肌电活动是否因手的主导地位而存在差异。研究人员根据 46 名成年健康受试者(27 名右撇子和 19 名左撇子)在俯卧位单臂抬举诱发的自主收缩过程中同侧和对侧腰部多裂肌的表面肌电信号,计算了相对最大均方根、中位频率(MdF)和尖峰形状参数。作为抬起手臂的对侧肌肉,腰部多裂肌的激活程度高于同侧肌肉,这与嗜好手势无关。无论 LM 在抬起的手臂上是同侧还是对侧动作,优势侧肌肉的平均尖峰振幅、斜率、每个尖峰的峰值数和尖峰持续时间均大于非优势侧肌肉,平均尖峰频率和 MdF 均小于非优势侧肌肉。尖峰形状测量值的综合变化表明,与同侧相比,优势侧 LM 的运动单位募集增加、发射率降低和同步性提高。
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来源期刊
CiteScore
2.20
自引率
7.10%
发文量
40
审稿时长
>12 weeks
期刊介绍: Acta Neurobiologiae Experimentalis (ISSN: 0065-1400 (print), eISSN: 1689-0035) covers all aspects of neuroscience, from molecular and cellular neurobiology of the nervous system, through cellular and systems electrophysiology, brain imaging, functional and comparative neuroanatomy, development and evolution of the nervous system, behavior and neuropsychology to brain aging and pathology, including neuroinformatics and modeling.
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