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Investigation of bone resonance during femoral reaming in hip replacement surgery

机译:髋关节置换手术中股骨铰孔期间骨共振调查

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This paper documents current investigations which are attempting to find a suitable audio pattern to identify the moment when a prosthetic hip-joint replacement has been correctly inserted into the thigh bone. Research Questions: We have two objectives: first is there any distinctive pattern of sound frequency or resonation associated with proper femoral rasping? Second: can we predict the point where fracture of the femur during the rasping process occurs using the analysis of the sound frequency changes? Initial research into this project has noted that by placing a bone conduction microphone close to the knee of the patient, the resonances of the thigh bone can be detected as the joint is reamed into place. A distinct increase in the pitch of the resonance can be noted as the joint reaches its correct position. It is proposed that by collecting and analysing a suitably large database of audio recordings of the rasping process, that a prediction model for when the joint is optimally reamed into position can be created. It must be noted that, as each femur will be of different size/density, each rasping process will yield different results. Therefore analysis will have to be undertaken to create a model which will prove reliable for all cases.
机译:本文介绍了当前调查,该调查试图找到合适的音频模式,以确定假肢髋关节置换正确插入大腿骨中的时刻。研究问题:我们有两个目标:首先是有任何独特的声频模式或与适当的股本rasping相关的响应模式?第二:我们可以预测使用声音频率的分析发生在潮流过程中股骨在股骨期间发生骨折的点吗?初步研究该项目已经注意到,通过将骨传导麦克风放置在患者的膝盖上,可以检测大腿骨的共振,因为关节进入到位。可以注意到谐振间距的明显增加,因为关节达到其正确位置。建议通过收集和分析振动过程的适当的音频记录数据库,即可以创建用于当接头最佳地进入位置时的预测模型。必须注意的是,随着每个股骨的大小/密度都是不同的,每个RASPing过程将产生不同的结果。因此,必须进行分析以创建一个模型,这将证明所有案例可靠。

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