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Torso flexion modulates stiffness and reflex response

机译:躯干屈曲调节硬度和反射反应

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Neuromuscular factors that contribute to spinal stability include trunk stiffness from passive and active tissues as well as active feedback from reflex response in the paraspinal muscles. Trunk flexion postures are a recognized risk factor for occupational low-back pain and may influence these stabilizing control factors. Sixteen healthy adult subjects participated in an experiment to record trunk stiffness and paraspinal muscle reflex gain during voluntary isometric trunk extension exertions. The protocol was designed to achieve trunk flexion without concomitant influences of external gravitational moment, i.e., decouple the effects of trunk flexion posture from trunk moment. Systems identification analyses identified reflex gain by quantifying the relation between applied force disturbances and time-dependent EMG response in the lumbar paraspinal muscles. Trunk stiffness was characterized from a second order model describing the dynamic relation between the force disturbances versus the kinematic response of the torso. Trunk stiffness increased significantly with flexion angle and exertion level. This was attributed to passive tissue contributions to stiffness. Reflex gain declined significantly with trunk flexion angle but increased with exertion level. These trends were attributed to correlated changes in baseline EMG recruitment in the lumbar paraspinal muscles. Female subjects demonstrated greater reflex gain than males and the decline in reflex gain with flexion angle was greater in females than in males. Results reveal that torso flexion influences neuromuscular factors that control spinal stability and suggest that posture may contribute to the risk of instability injury. (c) 2006 Elsevier Ltd. All rights reserved.
机译:有助于脊柱稳定性的神经肌肉因素包括来自被动和主动组织的躯干僵硬,以及来自脊柱旁肌肉反射反应的主动反馈。躯干屈曲姿势是职业性下腰痛的公认危险因素,可能会影响这些稳定的控制因素。 16名健康成人受试者参加了一项实验,以记录自愿性等距躯干伸展运动期间的躯干僵硬和椎旁肌肉反射增益。该方案旨在在不伴随外部重力的影响的情况下实现躯干屈曲,即将躯干屈曲姿势的影响与躯干力矩解耦。系统识别分析通过量化腰椎旁肌肉中施加的力干扰与时间依赖性EMG反应之间的关系来识别反射增益。躯干刚度由二阶模型表征,该模型描述了力扰动与躯干运动响应之间的动态关系。躯干刚度随着屈曲角度和运动水平显着增加。这归因于被动组织对僵硬的贡献。反射增益随躯干屈曲角度显着下降,但随运动水平而增加。这些趋势归因于腰椎旁肌的基线EMG募集的相关变化。女性受试者表现出比男性更大的反射增益,并且女性的反射增益随屈曲角度的下降比男性更大。结果显示躯干屈曲影响控制脊柱稳定性的神经肌肉因素,并表明姿势可能会导致不稳定损伤的风险。 (c)2006 Elsevier Ltd.保留所有权利。

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