The Human Neck is Part of the Musculoskeletal Core: Cervical Muscles Help Stabilize the Pelvis During Running and Jumping.

IF 1.9 4区 生物学 Q2 BIOLOGY
Integrative Organismal Biology Pub Date : 2022-06-02 eCollection Date: 2022-01-01 DOI:10.1093/iob/obac021
Alicia M Boynton, David R Carrier
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引用次数: 2

Abstract

During locomotion, cervical muscles must be active to stabilize the head as the body accelerates and decelerates. We hypothesized that cervical muscles are also part of the linked chain of axial muscles that provide core stabilization against torques applied to the hip joint by the extrinsic muscles of the legs. To test whether specific cervical muscles play a role in postural stabilization of the head and/or core stabilization of the pelvic girdle, we used surface electromyography to measure changes in muscle activity in response to force manipulations during constant speed running and maximum effort counter-movement jumps. We found that doubling the mass of the head during both running and maximum effort jumping had little or no effect on (1) acceleration of the body and (2) cervical muscle activity. Application of horizontal forward and rearward directed forces at the pelvis during running tripled mean fore and aft accelerations, thereby increasing both the pitching moments on the head and flexion and extension torques applied to the hip. These manipulations primarily resulted in increases in cervical muscle activity that is appropriate for core stabilization of the pelvis. Additionally, when subjects jumped maximally with an applied downward directed force that reduced acceleration and therefore need for cervical muscles to stabilize the head, cervical muscle activity did not decrease. These results suggest that during locomotion, rather than acting to stabilize the head against the effects of inertia, the superficial muscles of the neck monitored in this study help to stabilize the pelvis against torques imposed by the extrinsic muscles of the legs at the hip joint. We suggest that a division of labor may exist between deep cervical muscles that presumably provide postural stabilization of the head versus superficial cervical muscles that provide core stabilization against torques applied to the pelvic and pectoral girdles by the extrinsic appendicular muscles.

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人的颈部是肌肉骨骼核心的一部分:颈部肌肉有助于在跑步和跳跃时稳定骨盆。
在运动过程中,当身体加速和减速时,颈部肌肉必须活跃以稳定头部。我们假设颈椎肌也是轴向肌链的一部分,轴向肌链提供核心稳定,抵抗腿部外部肌肉施加到髋关节的扭矩。为了测试特定的颈部肌肉是否在头部的姿势稳定和/或骨盆带的核心稳定中发挥作用,我们使用表面肌电图来测量肌肉活动在恒速跑步和最大努力反运动跳跃时对力操作的反应变化。我们发现,在跑步和最大努力跳跃时,头部质量加倍对(1)身体加速度和(2)颈部肌肉活动几乎没有影响。在跑步过程中,骨盆上水平的向前和向后方向的力增加了平均前后加速度的三倍,从而增加了头部的俯仰力矩和髋部的屈伸扭矩。这些操作主要导致颈椎肌肉活动的增加,这对于骨盆的核心稳定是合适的。此外,当受试者在施加向下的力的情况下最大限度地跳跃时,减少了加速度,因此需要颈椎肌肉来稳定头部,颈椎肌肉活动并没有减少。这些结果表明,在运动过程中,本研究中监测的颈部浅表肌肉并不是为了稳定头部以抵抗惯性的影响,而是帮助稳定骨盆以抵抗髋关节处腿部外部肌肉施加的扭矩。我们认为,在深层颈肌和浅层颈肌之间可能存在分工,前者可能提供头部的姿势稳定,而后者提供核心稳定,以抵抗由外部尾肌施加到骨盆和胸带的扭矩。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.70
自引率
6.70%
发文量
48
审稿时长
20 weeks
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