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Time domain attenuation estimation method from ultrasonic backscattered signals

机译:超声反向散射信号的时域衰减估计方法

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摘要

Ultrasonic attenuation is important not only as a parameter for characterizing tissue but also for compensating other parameters that are used to classify tissues. Several techniques have been explored for estimating ultrasonic attenuation from backscattered signals. In the present study, a technique is developed to estimate the local ultrasonic attenuation coefficient by analyzing the time domain backscattered signal. The proposed method incorporates an objective function that combines the diffraction pattern of the source/receiver with the attenuation slope in an integral equation. The technique was assessed through simulations and validated through experiments with a tissue mimicking phantom and fresh rabbit liver samples. The attenuation values estimated using the proposed technique were compared with the attenuation estimated using insertion loss measurements. For a data block size of 15 pulse lengths axially and 15 beamwidths laterally, the mean attenuation estimates from the tissue mimicking phantoms were within 10% of the estimates using insertion loss measurements. With a data block size of 20 pulse lengths axially and 20 beamwidths laterally, the error in the attenuation values estimated from the liver samples were within 10% of the attenuation values estimated from the insertion loss measurements.
机译:超声波衰减不仅作为表征组织的参数,而且对于补偿用于分类组织的其他参数也很重要。已经探索了几种技术来估计来自反向散射信号的超声衰减。在本研究中,开发了一种通过分析时域反向散射信号来估计局部超声衰减系数的技术。所提出的方法结合了一个目标函数,该函数将源/接收器的衍射图样与衰减斜率组合成一个积分方程。通过模拟评估了该技术,并通过模拟假体的组织和新鲜兔肝样品的实验进行了验证。使用提议的技术估计的衰减值与使用插入损耗测量值估计的衰减进行比较。对于轴向具有15个脉冲长度而横向具有15个波束宽度的数据块大小,来自组织模拟体模的平均衰减估计值在使用插入损耗测量的估计值的10%以内。如果数据块的大小轴向为20个脉冲长度,横向为20个波束宽度,则从肝脏样本估计的衰减值中的误差应在根据插入损耗测量估计的衰减值的10%以内。

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