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使用无回波位移补偿的超声 CBE 成像进行温度估计。

Using ultrasound CBE imaging without echo shift compensation for temperature estimation.

机构信息

Department of Medical Imaging and Radiological Sciences, College of Medicine, Chang Gung University, Taoyuan, Taiwan, ROC.

出版信息

Ultrasonics. 2012 Sep;52(7):925-35. doi: 10.1016/j.ultras.2012.03.001. Epub 2012 Mar 15.

Abstract

Clinical trials have demonstrated that hyperthermia improves cancer treatments. Previous studies developed ultrasound temperature imaging methods, based on the changes in backscattered energy (CBE), to monitor temperature variations during hyperthermia. Echo shift, induced by increasing temperature, contaminates the CBE image, and its tracking and compensation should normally ensure that estimations of CBE at each pixel are correct. To obtain a simplified algorithm that would allow real-time computation of CBE images, this study evaluated the usefulness of CBE imaging without echo shift compensation in detecting distributions in temperature. Experiments on phantoms, using different scatterer concentrations, and porcine livers were conducted to acquire raw backscattered data at temperatures ranging from 37°C to 45°C. Tissue samples of pork tenderloin were ablated in vitro by microwave irradiation to evaluate the feasibility of using the CBE image without compensation to monitor tissue ablation. CBE image construction was based on a ratio map obtained from the envelope image divided by the reference envelope image at 37°C. The experimental results demonstrated that the CBE image obtained without echo shift compensation has the ability to estimate temperature variations induced during uniform heating or tissue ablation. The magnitude of the CBE as a function of temperature obtained without compensation is stronger than that with compensation, implying that the CBE image without compensation has a better sensitivity to detect temperature. These findings suggest that echo shift tracking and compensation may be unnecessary in practice, thus simplifying the algorithm required to implement real-time CBE imaging.

摘要

临床研究表明,热疗可以提高癌症治疗效果。先前的研究开发了基于背散射能量(CBE)变化的超声温度成像方法,以监测热疗过程中的温度变化。温度升高引起的回波移动会污染 CBE 图像,通常需要进行跟踪和补偿,以确保每个像素的 CBE 估计值都是正确的。为了获得一种能够实时计算 CBE 图像的简化算法,本研究评估了在不进行回波移动补偿的情况下,CBE 成像在检测温度分布方面的有效性。在不同散射体浓度的体模和猪肝脏上进行了实验,以在 37°C 至 45°C 的温度范围内获取原始背散射数据。通过微波辐射对猪里脊肉组织样本进行体外消融,以评估不进行补偿来监测组织消融的可行性。CBE 图像的构建基于从 37°C 时的参考包络图像中减去包络图像获得的比率图。实验结果表明,在进行均匀加热或组织消融时,不进行回波移动补偿的 CBE 图像具有估计温度变化的能力。不进行补偿时获得的 CBE 与温度的关系曲线的幅度比进行补偿时更强,这意味着不进行补偿的 CBE 图像对检测温度的灵敏度更高。这些发现表明,在实际应用中,回波移动跟踪和补偿可能是不必要的,从而简化了实现实时 CBE 成像所需的算法。

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