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Biomechanical Device for Measurement of Adductors Strength and Aid in Self-Catheterisation of Spastic Patients

机译:用于测量痉挛患者内收肌强度和辅助自导尿的生物力学装置

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摘要

Intermittent vesical self-catheterisation is a legitimate and safe technique that has been reported since the 1970s as a solution for the treatment and prevention of vesical urinary complications resulting from spinal cord injury. This practice, using clean technology, has been asserting itself as one of the best alternatives for people with neurogenic bladder. However, adherence is not complete due to some barriers imposed to this procedure by the injured, with emphasis on positioning, agility, and visual impairment. The solutions presented today to support self-catheterisation are expensive equipment that does not allow patients with advanced levels of spasticity to have their autonomy. A biomechanical support device was developed to aid self-catheterisation, mainly aimed at women with spasticity, filling the gap in the existing products. Despite the main objective of self-catheterisation, the system’s design made it possible to quantify the strength of the adductors for the sitting position during the execution of the adduction movement, particularly relevant for spastic patients. The device’s production was entirely carried out using the FDM methodology, with 3D printers, and its design and operation were thought to overcome the physical and psychological barriers imposed by the users. The system was first tested with a group of healthy volunteers to obtain a pattern of the adductors force in a sitting position and after with a group of spastic volunteers. The obtained data allows to compare the adductor force data and optimize the system, with particular functionalities for spastic patients, with the implementation of a motorised version and a visualization camera. The system, its developments, and results obtained are present and discussed.
机译:间歇性膀胱自导尿术是一种合法且安全的技术,自 1970 年代以来一直被报道为治疗和预防脊髓损伤引起的膀胱泌尿并发症的解决方案。这种做法使用清洁技术,一直宣称自己是神经源性膀胱患者的最佳选择之一。然而,由于伤者对该手术施加了一些障碍,重点是定位、敏捷性和视力障碍,因此依从性并不完全。今天提出的支持自我导尿的解决方案是昂贵的设备,不允许高度痉挛的患者拥有自主权。开发了一种生物力学支持装置来帮助自我导尿,主要针对痉挛的女性,填补了现有产品的空白。尽管以自我导尿为主要目标,但该系统的设计使得在执行内收运动期间可以量化坐姿内收肌的力量,这与痉挛患者尤其相关。该设备的生产完全使用FDM方法进行,使用3D打印机,其设计和操作被认为克服了用户施加的身体和心理障碍。该系统首先在一组健康志愿者中进行了测试,以获得坐姿下内收肌力的模式,然后与一组痉挛志愿者一起测试。获得的数据允许比较内收肌力数据并优化系统,为痉挛患者提供特定功能,并实施电动版本和可视化摄像头。对该系统、其发展和获得的结果进行了介绍和讨论。

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