Granata K P, Slota G P, Bennett B C
Motion Analysis and Motor Performance Laboratory, University of Virginia, 2270 Ivy Road, Charlottesville, VA 22903, USA.
J Biomech. 2004 Feb;37(2):241-7. doi: 10.1016/s0021-9290(03)00249-5.
Neuromuscular control of spinal stability may be represented as a control system wherein the paraspinal muscle reflex acts as feedback response to kinetic and kinematic disturbances of the trunk. The influence of preparatory muscle recruitment for the control of spinal stability has been previously examined, but there are few reported studies that characterize paraspinal reflex gain as feedback response. In the current study, the input-output dynamics of paraspinal reflexes were quantified by means of the impulse response function (IRF), with trunk perturbation force representing the input signal and EMG the output signal. Surface EMGs were collected from the trunk muscles in response to a brief anteriorly directed impact force applied to the trunk of healthy participants. Reflex behavior was measured in response to three levels of force impulse, 6.1, 9.2 and 12.0 Ns, and two different levels of external trunk flexion preload, 0 and 110 N anterior force. Reflex EMG was quantifiable in response to 91% of the perturbations. Mean reflex onset latency was 30.7+/-21.3 ms and reflex amplitude increased with perturbation amplitude. Impulse response function gain, G(IRF), was defined as the peak amplitude of the measured IRF and provided a consistent measure of response behavior. EMG reflex amplitude and G(IRF) increased with force impulse. Mean G(IRF) was 2.27+/-1.31% MVC/Ns and demonstrated declining trend with flexion preload. Results agree with a simple systems model of the neuromechanical feedback behavior. The relative contribution of the reflex dynamics to spinal stability must be investigated in future research.
脊柱稳定性的神经肌肉控制可被视为一个控制系统,其中椎旁肌反射作为对躯干动力学和运动学干扰的反馈反应。先前已研究了预备性肌肉募集对脊柱稳定性控制的影响,但鲜有报道将椎旁反射增益表征为反馈反应。在本研究中,通过脉冲响应函数(IRF)对椎旁反射的输入输出动态进行量化,以躯干扰动力作为输入信号,肌电图作为输出信号。对健康受试者的躯干施加短暂向前的冲击力,采集躯干肌肉的表面肌电图。测量对三种力脉冲水平(6.1、9.2和12.0 Ns)以及两种不同水平的外部躯干屈曲预负荷(0和110 N向前力)的反射行为。91%的扰动可测得反射性肌电图。平均反射起始潜伏期为30.7±21.3 ms,反射幅度随扰动幅度增加。脉冲响应函数增益G(IRF)定义为测量的IRF的峰值幅度,提供了对反应行为的一致度量。肌电图反射幅度和G(IRF)随力脉冲增加。平均G(IRF)为2.27±1.31%MVC/Ns,且随屈曲预负荷呈下降趋势。结果与神经力学反馈行为的简单系统模型一致。反射动力学对脊柱稳定性的相对贡献必须在未来研究中进行探究。