Institute of Biomedical Engineering, National Cheng Kung University, Tainan, Taiwan.
Neuroscience. 2010 Apr 28;167(1):185-98. doi: 10.1016/j.neuroscience.2010.01.064. Epub 2010 Feb 8.
Progressive changes in the muscle tone and stretch reflex after spinal cord injury (SCI) provide insight into the time-course development of spasticity. This study quantified the time-course changes of hypertonia for rats following SCI of T8 hemisection. A miniature manual stretching device measured the reactive torque via a pair of pressure sensing balloons; the angular displacement was measured via an optoelectronic device. Various stretching frequencies were tested, specifically 1/3, 1/2, 1, 3/2 and 2 Hz. The reactive torque and angular displacement were used to derive the viscous and elastic components representing the viscosity and stiffness of the rat's ankle joint. The enhanced velocity-dependent properties of spasticity were observed in the SCI hemisection rats (n=9) but not in the controls (n=9). Time-course measurements from pre-surgery to 56 days following SCI showed that the muscle tone of the hemisection rats dropped immediately after spinal shock and then gradually increased to reach a peak around 21 days postinjury (P<0.01). The muscle tone remained at least 75% of the peak value up to the end of an 8 week observation period (P<0.05). The changes of muscle tone can also be verified from the electrophysiological evaluations of electromyography (EMG) (P<0.05). In addition to conventional BBB motor behavior score, our results provided time-course quantification of the biomechanical and electrophysiological properties of muscle tone from the onset of SCI. Such data are useful for investigating progressive recovery of spinal damage in animal model and for future objective assessment of improved treatment for SCI human subjects.
脊髓损伤 (SCI) 后肌肉张力和伸展反射的逐渐变化,为痉挛的时程发展提供了深入了解。本研究通过 T8 半切伤测量了大鼠 SCI 后肌肉张力的时程变化。微型手动拉伸设备通过一对压力感应球测量反应扭矩;通过光电设备测量角位移。测试了各种拉伸频率,具体为 1/3、1/2、1、3/2 和 2 Hz。反应扭矩和角位移用于得出代表大鼠踝关节粘性和刚性的粘性和弹性分量。在 SCI 半切伤大鼠(n=9)中观察到痉挛的增强速度依赖性特性,但在对照组(n=9)中未观察到。从术前到 SCI 后 56 天的时程测量显示,半切伤大鼠的肌肉张力在脊髓休克后立即下降,然后逐渐增加,在损伤后约 21 天达到峰值(P<0.01)。肌肉张力在 8 周观察期结束时至少保持在峰值的 75%(P<0.05)。肌肉张力的变化也可以从肌电图(EMG)的电生理评估中得到验证(P<0.05)。除了常规 BBB 运动行为评分外,我们的结果还提供了从 SCI 开始时肌肉张力的生物力学和电生理特性的时程定量。这些数据对于研究动物模型中脊髓损伤的渐进性恢复以及未来对 SCI 人类受试者的治疗改善进行客观评估非常有用。