Koo Terry K K, Mak Arthur F T
Jockey Club Rehabilitation Engineering Centre, The Hong Kong Polytechnic University, Hung Hom, Kwoloon, Hong Kong.
Med Eng Phys. 2006 Jan;28(1):60-9. doi: 10.1016/j.medengphy.2005.03.012.
We developed a neuromusculoskeletal model to simulate the stretch reflex torque induced during a constant angular velocity elbow extension by tuning a set of physiologically-based parameters. Our model extended past modeling efforts in the investigation of elbow spasticity by incorporating explicit musculotendon, muscle spindle, and motoneuron pool models in each prime elbow flexor. We analyzed the effects of changes in motoneuron pool and muscle spindle properties as well as muscle mechanical properties on the biomechanical behavior of the elbow joint observed during a constant angular velocity elbow extension. Results indicated that both motoneuron pool thresholds and gains could be substantially different among muscles. In addition, sensitivity analysis revealed that spindle static gain and motoneuron pool threshold were the most sensitive parameters that could affect the stretch reflex responses of the elbow flexors during a constant angular velocity elbow extension, followed by motoneuron pool gain, and spindle dynamic gain. It is hoped that the model will contribute to the understanding of the underlying mechanisms of spasticity after validation by more elaborate experiments, and will facilitate the future development of more specific treatment of spasticity.
我们开发了一种神经肌肉骨骼模型,通过调整一组基于生理学的参数,来模拟在恒定角速度的肘部伸展过程中诱发的牵张反射扭矩。我们的模型超越了以往在肘部痉挛研究中的建模工作,在每个主要的肘部屈肌中纳入了明确的肌肉肌腱、肌梭和运动神经元池模型。我们分析了运动神经元池和肌梭特性以及肌肉力学特性的变化对在恒定角速度肘部伸展过程中观察到的肘关节生物力学行为的影响。结果表明,运动神经元池的阈值和增益在不同肌肉之间可能存在显著差异。此外,敏感性分析表明,在恒定角速度肘部伸展过程中,肌梭静态增益和运动神经元池阈值是影响肘部屈肌牵张反射反应的最敏感参数,其次是运动神经元池增益和肌梭动态增益。希望该模型在经过更精细的实验验证后,将有助于理解痉挛的潜在机制,并将促进未来更具体的痉挛治疗方法的发展。