首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >The intrinsic stiffness of the in vivo lumbar spine in response to quick releases: Implications for reflexive requirements
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The intrinsic stiffness of the in vivo lumbar spine in response to quick releases: Implications for reflexive requirements

机译:体内腰椎对快速释放的固有刚度:对反射要求的影响

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摘要

Torso muscles contribute both intrinsic and reflexive stiffness to the spine; recent modeling studies indicate that intrinsic stiffness alone is sometimes insufficient to maintain stability in dynamic situations. The purpose of this study was to experimentally test this idea by limiting muscular reflexive responses to sudden trunk perturbations. Nine healthy males lay on a near-frictionless apparatus and were subjected to quick trunk releases from the neutral position into flexion or right-side lateral bend. Different magnitudes of moment release were accomplished by having participants contract their musculature to create a range of moment levels. EMG was recorded from 12 torso muscles and three-dimensional lumbar spine rotations were monitored. A second-order linear model of the trunk was employed to estimate trunk stiffness and damping during each quick release. Participants displayed very limited reflex responses to the quick load release paradigms, and consequently underwent substantial trunk displacements (>50% flexion range of motion and >70% lateral bend range of motion in the maximum moment trials). Trunk stiffness increased significantly with significant increases in muscle activation, but was still unable to prevent the largest trunk displacements in the absence of reflexes. Thus, it was concluded that the intrinsic stiffness of the trunk was insufficient to adequately prevent the spine from undergoing potentially harmful rotational displacements. Voluntary muscular responses were more apparent than reflexive responses, but occurred too late and of too low magnitude to sufficiently make up for the limited reflexes。
机译:躯干肌肉对脊柱既有固有的刚性又有反射的刚性。最近的建模研究表明,仅固有刚度有时不足以在动态情况下保持稳定性。这项研究的目的是通过限制对躯干突然发动的肌肉反射反应来实验性地验证这一想法。九名健康的男性躺在近乎无摩擦的器械上,并从中立位置快速松开躯干,进入屈曲或右侧侧弯。通过让参与者收缩其肌肉组织以创建一定范围的力矩水平,可以实现不同程度的力矩释放。从12个躯干肌中记录肌电图,并监测三维腰椎旋转。躯干的二阶线性模型用于估算每次快速释放过程中的躯干刚度和阻尼。参与者对快速负荷释放范式的反射反应非常有限,因此,躯干发生了明显的位移(在最大力矩试验中,> 50%的活动屈曲范围和> 70%的横向屈曲范围)。躯干刚度随着肌肉激活的显着增加而显着增加,但在没有反射的情况下仍无法防止最大的躯干移位。因此,得出的结论是,躯干的固有刚度不足以充分防止脊柱遭受潜在有害的旋转位移。自愿性肌肉反应比反射性反应更明显,但发生得太晚且幅度太低,不足以弥补有限的反射。

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