首页> 外文会议>Conference on ultrasonic imaging, tomography, and therapy >Ji Cao,Kerem Karadayi, Ravi Managuli,Yongmin Kim;
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Ji Cao,Kerem Karadayi, Ravi Managuli,Yongmin Kim;

机译:Ji Sao,Kerem Karadayi,Ravi Manguli,Yongmin Kim;

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Three-dimensional (3D) ultrasound data are acquired mostly using a dedicated mechanical probe that houses a 1D array transducer. This 1D transducer swivels back and forth continuously in the elevation direction (continuous scanning) for fast acquisition. When 3D ultrasound data are acquired via continuous scanning but the continuous motion of a transducer is not taken into account during reconstruction, the reconstructed volume contains error. In this study, we systematically analyzed this error, which is a complex function of many parameters. The error increases when the transducer angular speed (ω) increases. Also, it varies depending on the voxel location inside an acquired volume. The mean error is calculated by averaging the errors at all acquired voxel locations. With a 60-degree volume angle, a 60-degree sector angle, 12-cm scan depth and 48 transmit beams per slice, the mean error is 5.3 mm when ω is 0.6 degrees/ms. When ω is reduced to 0.1 degrees/ms, the mean error decreases to 0.81 mm. We also assessed the impact of this error on the reconstructed images of a 3D phantom using simulation. At high angular speeds, the error in reconstructed images becomes noticeable and results in missing parts, geometric distortion and lowered image quality.
机译:三维(3D)超声数据主要使用容纳1D阵列换能器的专用机械探头获取。该1D换能器在仰角方向上连续地来回旋转(连续扫描)以快速采集。当通过连续扫描获取3D超声数据但在重建过程中未考虑换能器的连续运动时,重建的体积将包含误差。在这项研究中,我们系统地分析了此错误,该错误是许多参数的复杂函数。当换能器角速度(ω)增加时,误差增加。而且,它取决于采集体积内体素的位置而变化。平均误差是通过对所有采集的体素位置的误差求平均来计算的。对于60度的体积角,60度的扇形角,12 cm的扫描深度和每片48个发射光束,当ω为0.6度/ ms时,平均误差为5.3 mm。当ω减小到0.1度/ ms时,平均误差减小到0.81mm。我们还使用仿真评估了此错误对3D体模的重建图像的影响。在高角速度下,重建图像中的错误变得很明显,并导致零件缺失,几何失真和图像质量下降。

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