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A New Method for Temperature-Field Reconstruction during Ultrasound-Monitored Cryosurgery using Potential-Field Analogy

机译:基于势场模拟的超声监测冷冻术中温度场重建的新方法

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摘要

The current study aims at developing computational tools in order to gain information about the thermal history in areas invisible to ultrasound imaging during cryosurgery. This invisibility results from the high absorption rate of the ultrasound energy by the frozen region, which leads to an apparent opacity in the cryotreated area and a shadow behind it. A proof-of-concept for freezing-front estimation is demonstrated in the current study, using the new potential-field analogy method (PFAM). This method is further integrated with a recently developed temperature-field reconstruction method (TFRM) to estimate the temperature distribution within the frozen region. This study uses prostate cryosurgery as a developmental model and trans-rectal ultrasound imaging as a choice of practice. Results of this study indicate that the proposed PFAM is a viable and computationally inexpensive solution to estimate the extent of freezing in the acoustic shadow region. Comparison of PFAM estimations and experimental data shows an average mismatch of less than 2 mm in freezing-front location, which is comparable to the uncertainty in ultrasound imaging. Comparison of the integrated PFAM+TFRM scheme with a full-scale finite-elements analysis (FEA) indicates an average mismatch of 0.9 mm for the freezing front location and 0.1 mm for the lethal temperature isotherm of −45°C. Comparison of the integrated PFAM+TFRM scheme with experimental temperature measurements show a difference in the range of 2°C and 6°C for selected points of measurement. Results of this study demonstrate the integrated PFAM+TFRM scheme as a viable and computationally inexpensive means to gain information about the thermal history in the frozen region during ultrasound-monitored cryosurgery.
机译:当前的研究旨在开发计算工具,以便获得有关冷冻手术中超声成像不可见区域的热历史的信息。这种不可见性是由冷冻区域对超声能量的高吸收率导致的,这导致在冷冻处理区域中出现明显的不透明性并在其后面形成阴影。当前研究使用新的势场类比方法(PFAM)证明了冻结前估计的概念证明。该方法还与最近开发的温度场重构方法(TFRM)集成在一起,以估计冻结区域内的温度分布。这项研究使用前列腺冷冻术作为发展模型,并采用直肠超声成像作为一种选择。这项研究的结果表明,所提出的PFAM是一种可行的且计算成本低廉的解决方案,可用来估计声影区域中的冻结程度。 PFAM估计值和实验数据的比较显示,在冰冻前位置的平均失配小于2 mm,这与超声成像的不确定性相当。集成的PFAM + TFRM方案与全面有限元分析(FEA)的比较表明,冻结前沿位置的平均失配为0.9 mm,致命温度等温线为-45°C的平均失配为0.1 mm。将集成的PFAM + TFRM方案与实验温度测量值进行比较,结果表明所选测量点的温度范围在2°C和6°C之间。这项研究的结果表明,集成的PFAM + TFRM方案是一种可行的且计算成本低廉的方法,可在超声监测的冷冻手术过程中获取有关冰冻区域热史的信息。

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