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Use of a Computed Tomography Based Approach to Validate Noninvasive Devices to Measure Rotational Knee Laxity

机译:使用基于计算机断层扫描的方法来验证非侵入性设备以测量旋转膝关节松弛度

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摘要

The purpose of this study is to validate a noninvasive rotational knee laxity measuring device called “Rotameter P2” with an approach based on Computed Tomography (CT). This CT-approach using X-rays is hence invasive and can be regarded as a precise reference method that may also be applied to similar devices. An error due to imperfect femur fixation was observed but can be neglected for small torques. The most significant estimation error is due to the unavoidable soft tissues rotation and hence flexibility in the measurement chain. The error increases with the applied torque. The assessment showed that the rotational knee angle measured with the Rotameter is still overestimated because of thigh and femur displacement, soft tissues deformation, and measurement artefacts adding up to a maximum of 285% error at +15 Nm for the Internal Rotation of female volunteers. This may be questioned if such noninvasive devices for measuring the Tibia-Femoral Rotation (TFR) can help diagnosing knee pathologies and investigate ligament reconstructive surgery.
机译:这项研究的目的是使用一种基于计算机断层扫描(CT)的方法来验证一种称为“ Rotameter P2”的无创性膝关节松弛度测量设备。因此,这种使用X射线的CT方法具有侵入性,可以被视为精确的参考方法,也可以应用于类似的设备。观察到由于股骨固定不完全而导致的错误,但是对于小扭矩可以忽略不计。最明显的估计误差是由于不可避免的软组织旋转以及测量链的灵活性所致。误差随着施加的扭矩而增加。评估显示,由于女性志愿者的大腿和股骨移位,软组织变形以及测量伪像,在+15 Nm时,旋转流量计所测得的旋转膝盖角度仍被高估了,最大误差为285%。如果这种用于测量胫骨-股骨旋转(TFR)的非侵入性设备能否帮助诊断膝部病变并研究韧带重建手术,可能会引起质疑。

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