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3D splint prototype system for applications in muscular rehab by transcutaneous electrical nerve stimulation (TENS)

机译:三维夹板原型系统,用于经皮核心肌瘤肌肉康复(TENS)

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It is quite common that patients with ligamentous ruptures, tendonitis, tenosynovitis or sprains are foreseen the use of ad hoc splints for a swift recovery. In this paper, we propose a rehabilitation split that is focused on upper-limb injuries. By considering that upper-limb patient shows a set of different characteristics, our proposal personalizes and prints the splint custom made though a digital model that is generated by a 3D commercial scanner. To fabricate the 3D scanned model the Stereolithography material (SLA) is considered due to the properties that this material offers. In order to complement the recovery process, an electronic system is implemented within the splint design. This system generates a set of pulses for a fix period of time that focuses mainly on a certain group of muscles to allow a fast recovery process known as Transcutaneous Electrical Nerve Stimulation Principle (TENS).
机译:呈韧性破裂,肌腱炎,腱鞘炎或扭伤的患者有很常见的是,使用Ad Hoc夹板进行Swift恢复。在本文中,我们提出了一种重点放在肢体损伤的康复分裂。通过考虑上肢患者显示一组不同的特征,我们的提案是个性化和打印夹板定制,尽管3D商业扫描仪产生的数字模型。为了制造3D扫描模型,由于这种材料提供的性质,认为立体光刻材料(SLA)被认为。为了补充恢复过程,在夹板设计中实现了一种电子系统。该系统产生一组脉冲,用于固定的时间段,主要针对一组肌肉,以允许称为经皮电子神经刺激原理(Tens)的快速恢复过程。

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