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Development of a capacitive force sensor for artificial joint

机译:开发人工关节的电容力传感器

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Soft tissue tension is thought to have a great effect on the clinical performance of total joint replacement; such as shoulder, hip, knee, or ankle. However, there have been no reports quantifying these soft tissue tensions intraoperatively. For the shoulder, reverse total shoulder arthroplasty has been used in Japan since 2014. So the purpose of this study is to develop an instrument which tells us soft tissue tension intraoperatively. Surgeons would be able to utilize the measured values when assessing stability of the joint intraoperatively. We are developing the instrument using capacitive one-dimensional force sensors to measure the soft tissue tension for reverse shoulder arthroplasty. A capacitive one-dimensional force sensor can be made less than 1mm in thickness. And an electric circuit which measures its amount of capacitances also could be made pretty small. That's because we use capacitive force sensors for measuring the soft tissue tension. The whole instruments have to be sufficiently small enough such that its outer geometry could be same to an existing prosthesis. While a capacitive force sensor is good in its dimensions, however, it is very sensitive to noise. We try to improve signal noise ratio having whole dimensions small enough. Now, we have designed a 5mm diameter capacitive one-dimensional force sensor to operate in the 0-150N force range. This direction hopefully would be one of the promising ways for good clinical outcomes of joint replacement.
机译:柔软的组织张力被认为对总关节置换的临床表现产生很大影响;如肩膀,臀部,膝盖或脚踝。然而,没有报告术中定量这些软​​组织张力。对于肩膀,自2014年以来已在日本使用逆转总肩部呈术。因此,本研究的目的是开发一种术中展示软组织张力的仪器。当术中评估关节的稳定性时,外科医生能够利用测量值。我们正在使用电容式一维力传感器开发仪器,以测量反向肩关节置换术的软组织张力。电容式一维力传感器可以厚度小于1mm。和一个电路测量其电容量也可以变小。那是因为我们使用电容力传感器来测量软组织张力。整个仪器必须足够小,使其外部几何形状可能与现有假体相同。然而,当电容力传感器良好的尺寸时,它对噪声非常敏感。我们尝试提高具有足够小的整个尺寸的信号噪声比。现在,我们设计了5毫米直径的电容式一维力传感器,可以在0-150N力范围内运行。这个方向希望是联合替代良好临床结果的有希望的途径之一。

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