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The features of muscle activity during chair standing and sitting motion in submerged condition

机译:淹没状态下椅子站立和坐着运动期间的肌肉活动特征

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摘要

This study aimed to measure muscle activity and motion kinematics during chair-based exercises under submerged and non-submerged conditions. Twelve healthy men performed chair-based standing and sitting movements. Surface electrodes were attached at the tibialis anterior, gastrocnemius, rectus femoris, biceps femoris, rectus abdominis, and erector spinae. The ankle, knee, and hip joint angles and forward inclination angle of the trunk segment in the sagittal plane were calculated. The mean muscle activities during both movements in the submerged condition for the entire motion were lower than those in the non-submerged condition except in the tibialis anterior and biceps femoris during the sitting movement (in the standing exercise, rectus femoris: 14.1% and 5.2%; and erector spinae: 18.3% and 13.6% in non-submerged and submerged conditions, respectively; and in the sitting exercise, rectus femoris: 12.1% and 4.5% and erector spinae: 12.9% and 9.9% in the non-submerged and submerged conditions, respectively). However, the integrated muscle activity in submerged conditions was similar or higher to that in non-submerged conditions during both movements, except for the rectus femoris. This was mainly due to the increased duration of motion (44.3% and 39.9% longer for standing and sitting exercises in submerged conditions, respectively, compared with non-submerged conditions). The hip joint flexion at the beginning and end of movement and forward inclination angles of the trunk segment at the beginning of the movement in the submerged condition were larger than those in the non-submerged condition during both movements (hip: 126.1° and 111.5° at the beginning, 182.3° and 178.4° at the end and trunk: 2.7° and 17.4° at the beginning in non-submerged and submerged conditions for the standing exercise, respectively; hip: 182.4° and 178.0° at the beginning, 125.9° and 111.1° at the end and trunk: 2.2° and 16.9° at the end in non-submerged and submerged conditions for the sitting exercise, respectively). Reduced or similar muscle activity but similar or higher muscular effort was observed in the submerged condition for all the muscles except the rectus femoris, with the upper body inclined forward. These findings could have beneficial implications for the prescription of exercise and rehabilitation regimens.
机译:这项研究旨在测量在水下和非水下条件下的基于椅子的锻炼过程中的肌肉活动和运动运动学。 12名健康男人进行了基于椅子的站立和坐姿运动。表面电极连接在胫骨前,腓肠肌,股直肌,股二头肌,腹直肌和竖脊肌。计算了矢状面中躯干节段的踝关节,膝关节和髋关节的角度以及前倾角。整个运动在淹没状态下两个动作中的平均肌肉活动均比非淹没状态下的平均活动低,除了在坐立运动中胫骨前部和股二头肌(在站立运动中,股直肌:14.1%和5.2) %;在非浸没和浸没条件下,直立脊柱:分别为18.3%和13.6%;在坐卧运动中,在未浸入和未浸没条件下,股直肌:分别为12.1%和4.5%和竖立脊柱:分别为12.9%和9.9%。淹没条件)。然而,除了股直肌以外,在两种运动期间,在水下条件下的综合肌肉活动与非水下条件下的相似或更高。这主要是由于运动持续时间的增加(在水下条件下站立和坐姿练习的运动时间分别比在非水下条件下长了44.3%和39.9%)。在两次运动中,浸没状态下运动开始和结束时的髋关节屈曲以及运动开始时躯干节段的前倾角均大于非浸没状态下的髋关节弯曲(髋部:126.1°和111.5°)在开始时的非浸入和浸入条件下,开始时分别为182.3°和178.4°;在末端和躯干处分别为2.7°和17.4°;臀部:开始时分别为182.4°和178.0°,125.9°末端和躯干末端的最大倾斜角度分别为111.1°和111.1°:在非水下和仰卧状态下分别为2.2°和16.9°)。在浸没状态下,除股直肌外,所有肌肉的上肢向前倾斜时,肌肉活动均减少或相似,但肌肉力量相似或较高。这些发现可能对运动和康复方案的处方有有益的启示。

著录项

  • 期刊名称 PLoS Clinical Trials
  • 作者

    Koichi Kaneda;

  • 作者单位
  • 年(卷),期 2012(14),8
  • 年度 2012
  • 页码 e0220602
  • 总页数 14
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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