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A mobile device to quantify the forces and angles required to overcome knee arthrofibrosis in the clinic

机译:一种移动设备,用于量化克服诊所膝关节纤维化所需的力和角度

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Knee arthrofibrosis, a condition where scar tissue limits motion of the knee, is encountered after 4-35% of ligament surgeries. It is treated either by manually manipulating the knee to break scar tissue or with further surgery. The work herein sought to design, build and evaluate a means of quantifying the forces and angles required to overcome arthrofibrosis during knee manipulation. Physicians are thought to rely upon several cues including the a) initial resting angle of the upper and lower leg, b) torques and angles at the break point of scar tissue, and c) maximum angle and torque following manipulation. To quantify these cues, the device was built to be mobile and attach to a common knee brace. Fixtures were designed to afford normal physician postures and manual control of torque. The device utilizes load cells, rotary potentiometers, 3D printed parts and integrated circuits. Graphical user interfaces on a mobile phone allow in-the-loop evaluation and a database is used for subsequent, offline analysis. A preliminary clinical study with four participants shows the device can measure maximum torque of 31 Nm, rotational angles of 130 degrees, and combine both measures to differentiate knee stiffness over a range of motion.
机译:韧带手术的4-35%会导致膝关节纤维化,疤痕组织会限制膝关节的运动。可以通过手动操作膝盖以破坏疤痕组织或进一步手术来治疗。本文的工作试图设计,建立和评估一种量化在克服膝盖操作过程中克服关节纤维化所需的力和角度的方法。医师被认为依赖于多种线索,包括a)大腿和小腿的初始静止角度,b)疤痕组织断裂点的扭矩和角度,以及c)操作后的最大角度和扭矩。为了量化这些提示,将设备构建为可移动的,并连接到普通的膝盖支架上。夹具的设计可提供正常的医生姿势和手动扭矩控制。该设备利用了称重传感器,旋转电位器,3D打印部件和集成电路。手机上的图形用户界面允许进行环路评估,并且数据库用于后续的脱机分析。一项由四名参与者组成的初步临床研究表明,该设备可以测量31 Nm的最大扭矩,130度的旋转角度,并且可以结合使用这两种措施来区分运动范围内的膝盖刚度。

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