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首页> 外文期刊>Iranian Journal of Radiology >ULTRASOUND MONITORING OF TEMPERATURE CHANGE DURING INTERSTITIAL LASER THERMOTHERAPY OF LIVER: AN IN VITRO STUDY
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ULTRASOUND MONITORING OF TEMPERATURE CHANGE DURING INTERSTITIAL LASER THERMOTHERAPY OF LIVER: AN IN VITRO STUDY

机译:肝间质性激光治疗过程中温度变化的超声监测:体外研究

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Background/objective: In thermal tissue ablation, it is very important to control the increase in the temperature for having an efficient ablation therapy. We conducted this study to determine the efficacy of measuring pixel shift of ultrasound B-mode images as a function of change in tissue temperature.Materials and Methods: By fixing some microthermocouples in liver tissues, temperature at different points was monitored invasively in vitro during laser-induced thermotherapy. According to our results, optimum power and exposure time were determined for ultrasound temperature monitoring. Simultaneously, noninvasive temperature monitoring was performed with ultrasound B-mode images. These images were saved on computer from 25oC to 95oC with 10 oC steps. The speed of sound changes with each 10oC temperature change that produce virtual shifts in the scatter positions. Using an image processing method, the pixel shift due to 10 oC temperature change was extracted by motion detection.Results: The cubic regression function between the mean pixel shifts on ultrasound B-mode images caused by the change in speed of sound, which in turn was a function of the mean change in temperature, was evaluated. When temperature increased, pixel shift occurs in ultrasound images. The maximum pixel shift was observed between 60 to 70 oC (temperature changes ( D T) of 35–45 oC). After 70oC, the local pixel shift due to change in the speed of sound in liver tissue had an irregular decreasing. Pearson correlation coefficient between invasive and non-invasive measurements for 10oC temperature changes was 0.93 and the non-linear function was suitable for monitoring of temperature.Conclusion: Monitoring of changes in temperature based on pixel shifts observed in ultrasound B-mode images in interstitial laser thermotherapy of liver seems a good modality.
机译:背景/目的:在热组织消融中,控制温度升高对于进行有效的消融治疗非常重要。我们进行了这项研究来确定测量超声B型图像像素偏移随组织温度变化而变化的功效。材料和方法:通过固定肝组织中的一些微热电偶,在激光照射期间体外侵入性地监测了不同点的温度诱导的热疗。根据我们的结果,确定了用于超声温度监测的最佳功率和暴露时间。同时,用B超超声图像进行无创温度监测。这些图像以10 o C的步骤从25 o C到95 o C保存在计算机上。声速随着温度每升高10°C而变化,从而在散射位置产生虚拟位移。使用图像处理方法,通过运动检测提取了由于10 o C温度变化引起的像素偏移。结果:由变化引起的超声B型图像平均像素偏移之间的三次回归函数评估了声速,而声速又是温度平均变化的函数。当温度升高时,超声图像中会发生像素移动。在60至70 o C之间观察到最大像素偏移(温度变化(D T)为35–45 o C)。 70°SUPoC后,肝组织中声速变化引起的局部象素位移呈不规则下降。 10°SUP> o C温度变化的有创和无创测量之间的Pearson相关系数为0.93,并且非线性函数适合于温度监测。结论:基于观察到的像素位移来监测温度变化B超图像在肝间质激光热疗中似乎是一种很好的方式。

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