Diseño de interfaz gráfica para analizar el ciclo de marcha del cuerpo humano en software libre

Didia Carrillo-Hernández, Yered Uriel Terrones-Lara, H. García-Cervantes, Alan David Blanco-Miranda
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Abstract

Currently in the country there are more than 27 thousand cases of annual amputations and more than 80% correspond to lower limbs, therefore, the demand for prosthetic equipment is greater than what the health sector institutions can provide. It should be noted that the equipment developed by these institutions is only passive equipment, so that only 10% of patients who receive a prosthetic equipment successfully complete their rehabilitation. The main problems that the patient faces when adapting to their prosthetic equipment is the response time and alignment vs the healthy limb, since it does not have an intelligent control system that allows them to respond in real time as the losted limb did. This causes gaps when performing your gait cycle, this over time can bring about abnormalities in your posture affecting the alignment of your motor system. This work allows us to analyze the range of motion of the ankles and knees, in addition to determining the angular velocity of both, it is essential information for the development of control systems necessary for active prosthetic equipment. The programming language where it was developed is the Python 3.7 software and additionally reproduce the simulation of the gait cycle.
在自由软件中分析人体行走周期的图形界面设计
目前,该国每年有27 000多例截肢病例,其中80%以上是下肢截肢,因此,对假肢设备的需求大于卫生部门机构所能提供的。需要注意的是,这些机构开发的设备只是被动设备,因此只有10%的患者在接受假肢设备后成功完成康复。患者在适应假肢设备时面临的主要问题是响应时间和与健康肢体的对齐,因为它没有智能控制系统,可以让他们像失去的肢体那样实时响应。这会在你的步态周期中造成间隙,随着时间的推移,这会导致你的姿势异常,影响你的运动系统的对齐。这项工作使我们能够分析脚踝和膝盖的运动范围,除了确定两者的角速度外,它是开发主动假肢设备所需的控制系统的重要信息。开发的编程语言是Python 3.7软件,另外还复制了步态周期的模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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