IEEE Trans Neural Syst Rehabil Eng. 2018 Nov;26(11):2210-2216. doi: 10.1109/TNSRE.2018.2874991. Epub 2018 Oct 9.
Anticipatory postural adjustments (APAs) precede gait initiation and function to accelerate the center of mass forward and towards the initial stance leg. Impairments in APA generation, such as those seen in people with Parkinson's disease (PD), can impact the quality of the first step. An initial burst of activity in the dorsiflexor muscle (tibialis anterior) of the stepping leg is an important contributor to the posterior excursion of the center of pressure that accelerates the center of mass forward during an APA. Tibialis anterior activation can be diminished or absent in people with PD; however, the neuromechanical consequence of this diminished dorsiflexor torque on APA generation is not fully understood. Computational models of gait initiation that include components of the neuromuscular system may provide additional insight. In this paper, an inverted pendulum model of the body generated from healthy young adult data was used to simulate reduced dorsiflexor torque during an APA for gait initiation. Forward body lean angle and center of pressure were assessed over various settings of decreased dorsiflexor torque and compared to experimental data from a person with PD. Results from the model demonstrate that reducing the peak dorsiflexor torque by as little as 8-Nm may alter forward body lean and the center of pressure excursion from their nominal trajectories. These results can help inform how much torque is needed from an external device to effectively modulate APAs for gait initiation, as well as provide insight into compensation strategies for reduced dorsiflexor torque in pathology.
预期姿势调整 (APAs) 先于步态启动,其作用是向前和向初始支撑腿加速质心。APAs 生成方面的障碍,如帕金森病 (PD) 患者所见,可能会影响第一步的质量。迈步腿背屈肌(胫骨前肌)的初始爆发活动是对压力中心向后运动的重要贡献,该运动在 APA 期间加速质心向前。PD 患者的胫骨前肌激活可能会减少或消失;然而,这种背屈肌扭矩减少对 APA 生成的神经力学后果尚不完全清楚。包含神经肌肉系统组件的步态启动计算模型可能会提供更多的见解。在本文中,使用来自健康年轻成年人数据的身体倒立摆模型模拟了在 APA 期间减少背屈肌扭矩以进行步态启动。评估了各种减少背屈肌扭矩设置下的前体倾斜角度和压力中心,并将其与 PD 患者的实验数据进行了比较。模型的结果表明,即使将峰值背屈肌扭矩减少 8-Nm,也可能改变前体倾斜和压力中心的偏移量,使其偏离其标称轨迹。这些结果可以帮助了解外部设备需要多少扭矩才能有效地调节 APA 以进行步态启动,并深入了解病理状态下减少背屈肌扭矩的补偿策略。