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Prolonged Intermittent Trunk Flexion Increases Trunk Muscles Reflex Gains and Trunk Stiffness

机译:延长的间歇性躯干屈曲可增加躯干肌肉的反射增益和躯干刚度

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摘要

The goal of the present study was to determine the effects of prolonged, intermittent flexion on trunk neuromuscular control. Furthermore, the potential beneficial effects of passive upper body support during flexion were investigated. Twenty one healthy young volunteers participated during two separate visits in which they performed 1 hour of intermittent 60 seconds flexion and 30 seconds rest cycles. Flexion was set at 80% lumbar flexion and was performed with or without upper body support. Before and after intermittent flexion exposure, lumbar range of motion was measured using inertial measurement units and trunk stability was assessed during perturbations applied in the forward direction with a force controlled actuator. Closed-loop system identification was used to determine the trunk translational admittance and reflexes as frequency response functions. The admittance describes the actuator displacement as a function of contact force and to assess reflexes muscle activation was related to actuator displacement. Trunk admittance gain decreased after unsupported flexion, while reflex gain and lumbar range of motion increased after both conditions. Significant interaction effects confirmed a larger increase in lumbar range of motion and reflex gains at most frequencies analysed following unsupported flexion in comparison to supported flexion, probably compensating for decreased passive tissue stiffness. In contrast with some previous studies we found that prolonged intermittent flexion decreased trunk admittance, which implies an increase of the lumped intrinsic and reflexive stiffness. This would compensate for decreased stiffness at the cost of an increase in cumulative low back load. Taking into account the differences between conditions it would be preferable to offer upper body support during activities that require prolonged trunk flexion.
机译:本研究的目的是确定长期间歇性屈曲对躯干神经肌肉控制的影响。此外,研究了屈曲过程中被动上身支撑的潜在有益作用。 21名健康的年轻志愿者参加了两次单独的探访,其中他们间歇性地进行了1小时的60秒屈曲和30秒的休息周期。屈曲设定为80%的腰椎屈曲,在有或没有上身支撑的情况下进行。在间歇性屈曲暴露前后,使用惯性测量装置测量腰部运动范围,并在使用力控制执行器向前施加扰动期间评估躯干稳定性。闭环系统识别被用来确定躯干的平移导纳和反射作为频率响应函数。导纳将执行机构的位移描述为接触力的函数,并评估反射的肌肉激活与执行机构的位移有关。在两种情况下,无支撑的屈曲后,躯干的导纳增加都会减少,而反射增益和腰部运动范围会增加。与支撑的屈曲相比,显着的相互作用效应证实了在无支撑的屈曲后,在大多数频率下腰椎运动范围和反射增益的增加要大于支撑的屈曲,这可能弥补了被动组织硬度的降低。与以前的一些研究相反,我们发现长时间的间歇性屈曲会降低躯干的导纳,这意味着集总的固有和反射刚度会增加。这将以增加累积的低背负荷为代价来补偿刚度降低。考虑到条件之间的差异,最好在需要长时间弯曲躯干的活动中提供上身支撑。

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