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A novel mobile application controlled adaptive brace for treatment of ankle joint instability

机译:一种新型移动应用控制自适应支架,用于治疗踝关节不稳定

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Ankle sprains are among the most common musculoskeletal ailments treated. In the general population, almost 2.15 per 1000 persons will experience some form of ankle joint sprain or injury annually. Although the patients go on to heal without long term consequences in many cases, some may develop chronic ankle instability which is a debilitating condition incorporating recurrent sprains, persistent pain and repeated instances of giving way. Wearable ankle braces or assistive devices are designed to support the injured joint and help the user get back to the normal life style while the joint is healing and recovering its normal function. Although such devices have been shown to be useful, they will bring a lot of other limitations to user's lifestyle by preventing them to pursue occupational or normal day activities due to joint impairment. Lengthy recovery time due to lack of joint's natural activity is an example of such limitations. In this paper, we not only discuss the current status of our new dynamic wearable smart brace, but we also present the features implemented in the mobile application, including 3D modeling for brace-human interaction and machine learning algorithms for stability control. The design of the wearable smart brace uses Micro-Electro-Mechanical Systems (MEMS) to interact with the mobile application and the MEMS is a printed circuit board (PCB) with sensors.
机译:踝关节扭伤是治疗的最常见的肌肉骨骼疾病之一。在一般人群中,每1000人近2.15人将在每年遇到某种形式的踝关节扭伤或伤害。虽然患者在许多情况下没有长期后果进行愈合,但有些可能会产生慢性踝关节不稳定,这是一种脱臼条件,其包含复发膜,持续疼痛和再现方式的反复情况。可穿戴脚踝括号或辅助设备旨在支持受伤的关节,并帮助用户恢复正常的生活方式,而关节正在愈合并恢复其正常功能。虽然这种设备已被证明是有用的,但它们将通过防止他们由于联合损害而追求职业或正常日活动来为用户的生活方式带来大量的其他限制。由于缺乏联合的自然活动,冗长的恢复时间是这种限制的一个例子。在本文中,我们不仅讨论了我们新的动态可穿戴智能支架的当前状态,但我们还介绍了移动应用中实现的功能,包括用于支架 - 人类交互和机器学习算法的3D建模,用于稳定控制。可穿戴智能支架的设计使用微机电系统(MEMS)与移动应用交互,并且MEMS是具有传感器的印刷电路板(PCB)。

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