Arcos Rosero Jhoan Danilo, Bolaños Rosero Daniel Camilo, Alape Realpe Luis Fernando, Solis Pino Andrés Felipe, Roldán González Elizabeth
Facultad de Ingeniería, Corporación Universitaria Comfacauca-Unicomfacauca, Popayán 190001, Cauca, Colombia.
Facultad de Ingeniería Electronica y Telecomunicaciones, Universidad del Cauca, Popayán 190003, Cauca, Colombia.
Bioengineering (Basel). 2022 Jun 29;9(7):287. doi: 10.3390/bioengineering9070287.
Injuries in the elbow area, such as lateral and medial epicondylitis, are the leading causes of consultation with health specialists. Therefore, this research proposes the mechatronic design of an orthosis with a graphic interface that supports professionals in the rehabilitation of the elbow joint through the execution of flexion-extension and pronation-supination movements. For the development of the rehabilitation prototype, mechatronic design, co-design, and IDEF0 methodologies are used, performing activities such as actuator characterization, simulations, and modeling, among others. Through the execution of a case study in a real environment, the device was validated, where the results suggest a functional and workable prototype that supports the treatment of pathologies in the elbow area through the execution of the mentioned movements, supposing that this is a low-cost alternative with elements to improve, such as the industrial design and new functionalities. The developed proposal shows potential as an economical product that health professionals can use. However, some limitations related to the design and functionalities in the application domain were identified.
肘部区域的损伤,如外侧和内侧肱骨髁炎,是患者咨询健康专家的主要原因。因此,本研究提出了一种带有图形界面的矫形器的机电一体化设计,该矫形器通过执行屈伸和旋前-旋后运动,支持专业人员对肘关节进行康复治疗。在康复原型的开发过程中,采用了机电一体化设计、协同设计和IDEF0方法,进行了诸如执行器特性分析、仿真和建模等活动。通过在实际环境中进行案例研究,对该设备进行了验证,结果表明该原型功能齐全且可行,通过执行上述运动支持肘部区域疾病的治疗,假定这是一种低成本的替代方案,还有如工业设计和新功能等有待改进的方面。所提出的方案显示出作为一种健康专业人员可以使用的经济产品的潜力。然而,也发现了一些与应用领域的设计和功能相关的局限性。