Dipartimento di Meccanica, Politecnico di Milano, Via La Masa 1, Milano, Italy.
Med Eng Phys. 2010 May;32(4):339-48. doi: 10.1016/j.medengphy.2010.01.005. Epub 2010 Feb 19.
Functional electrical stimulation (FES) is a well established method in the rehabilitation of stroke patients. Indeed, a bilateral movement such as cycling induced by FES would be crucial for these patients who had an unilateral motor impairment and had to recover an equivalent use of limbs. The aim of this study was to develop a low-cost meteorologically qualified cycle-ergometer, optimized for patients with stroke. A commercial ergometer was instrumented with resistive strain gauges and was able to provide the torque produced at the right and left crank, independently. The developed system was integrated with a stimulator, obtaining a novel FES cycling device able to control in real-time the movement unbalance. A dynamic calibration of the sensors was performed and a total torque uncertainty was computed. The system was tested on a healthy subject and on a stroke patient. Results demonstrated that the proposed sensors could be successfully used during FES cycling sessions where the maximum torque produced is about 9Nm, an order of magnitude less than the torque produced during voluntary cycling. This FES cycling system will assist in future investigations on stroke rehabilitation by means of FES and in new exercise regimes designed specifically for patients with unilateral impairments.
功能性电刺激(FES)是一种在中风患者康复中得到广泛应用的方法。实际上,FES 诱导的双侧运动对于那些单侧运动障碍并需要恢复肢体等效使用的患者来说至关重要。本研究的目的是开发一种低成本、气象合格的循环测力计,专门针对中风患者进行优化。商用测力计配备了电阻应变计,能够独立提供左右曲柄产生的扭矩。开发的系统与刺激器集成在一起,获得了一种新型的 FES 循环装置,能够实时控制运动不平衡。对传感器进行了动态校准,并计算了总扭矩不确定性。该系统在健康受试者和中风患者上进行了测试。结果表明,所提出的传感器可以在 FES 循环训练期间成功使用,FES 循环训练期间产生的最大扭矩约为 9Nm,比自愿循环训练期间产生的扭矩小一个数量级。这种 FES 循环系统将通过 FES 辅助和专门为单侧损伤患者设计的新运动方案来协助未来对中风康复的研究。