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A new QUS sensor measuring guided waves SOS and anisotropy using bidirectional transmission

机译:一种新的QUS传感器测量引导波SOS和使用双向传输的各向异性

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Anisotropy of cortical bone is known to be associated with material properties and might thus be relevant for fracture risk assessment. We developed a sensor which is able to measure the velocity of guided waves in different directions simultaneously using bidirectional transmission along the long axis of the sensor and ± 37.5° angled to it. The method was tested on two anisotropic plates by scanning them during a full circle rotation in steps of 15° and compared with results from the commercial device Omnisense 7000 (Beam Med, Petah Tikva, Israel, developed by Sunlight Medical Ltd.). The profiles of the angle dependent SOS measured with both devices were equal in shape and differed less than 90 m/s. The devices' SOS repositioning precision was between 6.0 and 8.8 m/s. The accuracy error of a calculated anisotropy ratio was below 2%, its precision 1%. The results indicate that it is feasible to measure anisotropy using our sensor in one single position.
机译:已知皮质骨的各向异性与材料特性相关,因此可能与骨折风险评估相关。我们开发了一种传感器,该传感器能够使用沿着传感器的长轴同时测量不同方向的导向波的速度,沿着传感器的长轴,±37.5°与其成角度。通过在15°的步长,通过扫描它们在两个各向异性板上测试该方法,并与商业设备Omnisense 7000的结果相比(由Sunlight Medical Ltd.开发)的商业设备全态7000(梁相识,Petah Tikva,以色列)。用两种装置测量的角度相关SOS的轮廓等于形状等于,不同小于90m / s。设备的SOS重新定位精度为6.0和8.8 m / s。计算各向异性比率的精度误差低于2%,其精度为1%。结果表明,使用我们的传感器在一个单个位置测量各向异性是可行的。

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