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The Application of Adaptive Time Gain Compensation in an Improved Breast Ultrasound Tomography Algorithm

机译:改进乳房超声断层扫描算法中自适应时间增益补偿的应用

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In order to better detect information about a mass in breast tissue, an ultrasound tomography algorithm based on adaptive time gain compensation (TGC) was designed. Field II was utilized to automatically evaluate the phantom attenuation coefficient and compensate for the attenuated image. The image reconstruction algorithm process is presented here. Furthermore, the experimental setup with the cylindrical motion of a piezoelectric micromachined ultrasonic transducer (PMUT) linear array was used to detect the mass in the breast model. The attenuation coefficient was evaluated by using the spectral cross-correlation method. According to the acquired attenuation coefficients, TGC compensates for the pulse-echo signal, and the horizontal slice image was reconstructed using the tomography algorithm. The experimental results show that this algorithm can evaluate the attenuation coefficient of the breast model and improve the ability to detect an internal mass. At the same time, the realization of attenuation compensation with software is beneficial to the development of portable medical equipment.
机译:为了更好地检测乳腺组织中的质量的信息,设计了一种基于自适应时间增益补偿(TGC)的超声波断层扫描算法。使用田间II自动评估幻像衰减系数并补偿减毒图像。此处提出了图像重建算法过程。此外,使用压电微机械超声换能器(Pmut)线性阵列的圆柱形运动的实验装置用于检测乳房模型中的质量。通过使用光谱互相关方法评估衰减系数。根据所获取的衰减系数,TGC补偿脉冲回波信号,并且使用断层扫描算法重建水平切片图像。实验结果表明,该算法可以评估乳房模型的衰减系数,提高检测内部质量的能力。与此同时,通过软件实现衰减补偿是有利于便携式医疗设备的开发。

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