首页> 外文会议>2015 6th European Symposium on Ultrasonic Characterization of Bone >Model to estimate the sound velocity in a circular wave guide in a through transmission measurement setup from multiple receivers
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Model to estimate the sound velocity in a circular wave guide in a through transmission measurement setup from multiple receivers

机译:用于估算来自多个接收器的直通传输设置中圆形波导中的声速的模型

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Quantitative ultrasound (QUS) at the femoral neck has to be conducted in a through transmission measurement setup. In this context, the Time Of Flight of the First Arriving Signal (TOF) results from a wave being guided along the cortical shell and is supposed to be influenced by the elastic properties of the femoral neck cortex. In such a contact free measurement setup, the TOF results from a combination of pathways through water and bone of unknown portions. It would be beneficial to estimate the Speed of Sound (SOS) in the wave guide from TOF measurements without knowing the geometry of the wave guide. We developed a simple model based on a circular wave guide with unknown radius, location and SOS, but known positions of emitter and receiver array. An optimization routine was implemented to find the SOS in the circular wave guide from 24 TOF obtained from the receiver array starting from an initial guess. A first test at different working points revealed that the outcome of the optimization routine did not depend on the initial guess at hand. Furthermore, noisy input led to acceptable errors in SOS. For the application on non-circular wave guides it is necessary to improve the model.
机译:股骨颈处的定量超声(QUS)必须通过透射测量设置进行。在这种情况下,第一个到达信号的飞行时间(TOF)是由沿皮层外壳引导的波产生的,并且应该受到股骨颈皮质弹性特性的影响。在这种非接触式测量设置中,TOF由穿过水和未知部位的骨骼的路径组合产生。在不知道波导的几何形状的情况下,从TOF测量值估计波导中的声速(SOS)将是有益的。我们基于圆形波导开发了一个简单的模型,该模型的半径,位置和SOS未知,但发射器和接收器阵列的位置已知。实施了优化例程,从初始猜测开始,从接收器阵列获得的24 TOF中找到圆形波导中的SOS。在不同工作点的首次测试表明,优化例程的结果不取决于手头的最初猜测。此外,嘈杂的输入导致SOS中可接受的错误。对于在非圆形波导上的应用,有必要对模型进行改进。

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