IEEE Trans Neural Syst Rehabil Eng. 2021;29:1669-1678. doi: 10.1109/TNSRE.2021.3105388. Epub 2021 Aug 27.
Push-rim wheelchair propulsion frequently causes severe upper limb injuries in people relying on the wheelchair for ambulation. To address this problem, we developed a novel handle-based wheelchair propulsion method that follows a cyclic motion within ergonomic joint ranges of motion. The aim of this study was to measure hand propulsion forces, joint excursions and net joint torques for this novel propulsion device and to compare its performance against traditional push-rim wheelchair propulsion. We hypothesized that under similar conditions, joint excursions of this novel handle-based device will remain within their ergonomic range and that the effectiveness of the propulsion forces will be higher, leading to lower average propulsion forces compared to push-rim propulsion and reducing the risk of injury. Eight paraplegic subjects propelled the new device at two different loads on a custom-made wheelchair-based test rig. Video motion capture and force sensors were used to monitor shoulder and wrist joint kinematics and kinetics. Shoulder and wrist loads were calculated using a modified upper-extremity Wheelchair Propulsion Model available in OpenSim. The results show that with this novel propulsion device joint excursions are within their recommended ergonomic ranges, resulting in a reduced range of motion of up to 30% at the shoulder and up to 80% at the wrist, while average resultant peak forces were reduced by up to 20% compared to push-rim propulsion. Furthermore, the lower net torques at both the shoulder and wrist demonstrate the potential of this novel propulsion system to reduce the risk of upper-extremity injuries.
推轮式轮椅推进常常导致依赖轮椅活动的人上肢严重受伤。为了解决这个问题,我们开发了一种新的基于手柄的轮椅推进方法,该方法遵循符合人体工程学关节运动范围的周期性运动。本研究的目的是测量这种新型推进装置的手推进力、关节运动范围和净关节扭矩,并将其性能与传统的推轮式轮椅推进进行比较。我们假设在相似的条件下,这种新型基于手柄的装置的关节运动范围将保持在其人体工程学范围内,并且推进力的有效性将更高,从而导致与推轮推进相比,平均推进力更低,降低受伤风险。8 名截瘫受试者在定制的基于轮椅的测试台上以两种不同的负载推动新装置。视频运动捕捉和力传感器用于监测肩部和腕部关节运动学和动力学。使用 OpenSim 中提供的修改后的上肢轮椅推进模型计算肩部和腕部的负载。结果表明,使用这种新型推进装置,关节运动范围在其推荐的人体工程学范围内,从而使肩部的运动范围减少高达 30%,腕部减少高达 80%,而与推轮推进相比,平均最终峰值力减少了高达 20%。此外,肩部和腕部的净扭矩降低表明这种新型推进系统有可能降低上肢受伤的风险。