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An Early Development of Force Distribution Sensor Using Pressure-sensitive Conductive Rubber for Soft Tissue Balance in Total Knee Arthroplasty

机译:使用压敏导电橡胶的力分布传感器的早期发展,用于全膝关节置换术中软组织平衡

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Total knee arthroplasty nowadays becomes a common procedure to restore the knee function for patients who suffered either natural knee diseases or injuries. The procedure effectively reduces pain and improves knee function with high rate of success. However, the risk of failure is still a problem despite this particular issue has been discussed for the past decades by researchers all over the world. The current implementation of the procedures relies heavily on the feel of the surgeons to ensure the right implantation of the prosthesis on the tibiofemoral component. A force distribution measurement system which has a sufficient accuracy for determining the location of tibiofemoral contact forces is being developed to address this concern. The system consisted of two pressure sensitive sensors, embedded in the trial insert for each condyle. The sensors were made up of pressure-conductive rubber with 8 x 16 of electrodes arrays at the front and backside of the rubber. The current study focuses on the reliability and validity of the measurement performed using the developed sensors. The results indicate good response of the rubber against constant applied force within the first two minutes before the measurement error start increasing over time.
机译:现在总膝关节形成术成为恢复患者患者的常见程序,用于患有天然膝关节或伤害的患者。该程序有效减少疼痛,并提高了高成功率的膝关节功能。然而,尽管过去的几十年来,但在世界各地的研究人员讨论了这种特殊问题,失败的风险仍然是一个问题。目前的程序实施严重依赖于外科医生的感觉,以确保对胫铁素组分的假体进行正确植入假体。正在开发具有足够精度的力分布测量系统,用于确定胫铁膜接触力的位置以解决这一问题。该系统由两个压敏传感器组成,嵌入在每个髁的试用版中。传感器由压力导电橡胶组成,在橡胶的前部和背面处具有8×16电极阵列。目前的研究侧重于使用开发的传感器执行的测量的可靠性和有效性。结果表明橡胶对恒定施加力的良好响应在测量误差随时间越来越多的时间内前两分钟。

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