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Influence of temperature variations on the average grayscale of B-mode images of HIFU-induced lesions

机译:温度变化对HIFU诱发病变的B型图像平均灰度的影响

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The aim of this work is to understand how the variations in grayscale values of B-mode ultrasound (US) images can be used as an approach for non-invasive temperature estimation. In order to obtain real-time monitoring of HIFU treatment, an US imaging system and HIFU were synchronized. Images were acquired using an electronic convex imaging probe. An 8% BSA tissue-mimicking polyacrylamide gel was used for the experiments. First, the HIFU power was set to 10 W. The application of HIFU resulted in the appearance of hyperechoic regions that were used to place a thermocouple tip at the focal spot by means of US imaging. Afterwards, the power was gradually increased up to 40 W for 4 min. The temperature sampling rate was set to 5 Hz. For each temperature sample the synchronization system captured one frame. The region of interest (ROI) was manually selected and a set of morphological operations were implemented in order to obtain the shape and size of the thermal lesion. From here, the average grayscale (AGS) and area of the thermal lesion were calculated to assess temperature quantification. The AGS parameter showed a maximum correlation coefficient of 0.6626 as a function of temperature whereas the thermal lesion appeared. In contrast, area values showed a greater correlation coefficient of 0.9122. In conclusion, temperature shows a non-linear behavior with respect to the parameters estimated due to the nature of the thermal lesion formation by HIFU exposure.
机译:这项工作的目的是了解如何将B模式超声(US)图像的灰度值变化用作非侵入式温度估计的方法。为了获得HIFU治疗的实时监测,美国成像系统和HIFU进行了同步。使用电子凸成像探头获取图像。实验中使用了8%BSA组织模拟聚丙烯酰胺凝胶。首先,将HIFU功率设置为10W。HIFU的应用导致出现了高回声区域,该区域用于通过US成像将热电偶尖端放置在焦点上。之后,功率逐渐增加到40 W,持续4分钟。温度采样率设置为5 Hz。对于每个温度样本,同步系统捕获一帧。手动选择感兴趣区域(ROI),并执行一组形态学操作,以便获得热损伤的形状和大小。从此处开始,计算平均灰阶(AGS)和热损伤面积以评估温度量化。 AGS参数显示最大相关系数为0.6626,与温度成函数关系,而出现热损伤。相反,面积值显示出更大的相关系数0.9122。总之,由于HIFU暴露引起的热损伤形成的性质,温度相对于估计的参数表现出非线性行为。

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