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使用红外成像对超声热成像进行校准和评估

Calibration and Evaluation of Ultrasound Thermography Using Infrared Imaging.

作者信息

Hsiao Yi-Sing, Deng Cheri X

机构信息

Department of Biomedical Engineering, University of Michigan, Ann Arbor, Michigan, USA.

Department of Biomedical Engineering, University of Michigan, Ann Arbor, Michigan, USA.

出版信息

Ultrasound Med Biol. 2016 Feb;42(2):503-17. doi: 10.1016/j.ultrasmedbio.2015.09.021. Epub 2015 Nov 5.

Abstract

Real-time monitoring of the spatiotemporal evolution of tissue temperature is important to ensure safe and effective treatment in thermal therapies including hyperthermia and thermal ablation. Ultrasound thermography has been proposed as a non-invasive technique for temperature measurement, and accurate calibration of the temperature-dependent ultrasound signal changes against temperature is required. Here we report a method that uses infrared thermography for calibration and validation of ultrasound thermography. Using phantoms and cardiac tissue specimens subjected to high-intensity focused ultrasound heating, we simultaneously acquired ultrasound and infrared imaging data from the same surface plane of a sample. The commonly used echo time shift-based method was chosen to compute ultrasound thermometry. We first correlated the ultrasound echo time shifts with infrared-measured temperatures for material-dependent calibration and found that the calibration coefficient was positive for fat-mimicking phantom (1.49 ± 0.27) but negative for tissue-mimicking phantom (-0.59 ± 0.08) and cardiac tissue (-0.69 ± 0.18°C-mm/ns). We then obtained the estimation error of the ultrasound thermometry by comparing against the infrared-measured temperature and revealed that the error increased with decreased size of the heated region. Consistent with previous findings, the echo time shifts were no longer linearly dependent on temperature beyond 45°C-50°C in cardiac tissues. Unlike previous studies in which thermocouples or water bath techniques were used to evaluate the performance of ultrasound thermography, our results indicate that high-resolution infrared thermography is a useful tool that can be applied to evaluate and understand the limitations of ultrasound thermography methods.

摘要

实时监测组织温度的时空演变对于确保包括热疗和热消融在内的热疗法的安全有效治疗至关重要。超声热成像已被提议作为一种用于温度测量的非侵入性技术,并且需要针对温度对与温度相关的超声信号变化进行精确校准。在此,我们报告一种使用红外热成像对超声热成像进行校准和验证的方法。使用经受高强度聚焦超声加热的体模和心脏组织标本,我们从样品的同一表面平面同时获取超声和红外成像数据。选择常用的基于回波时间偏移的方法来计算超声测温。我们首先将超声回波时间偏移与红外测量的温度进行关联以进行与材料相关的校准,发现校准系数对于脂肪模拟体模为正(1.49±0.27),而对于组织模拟体模为负(-0.59±0.08)以及对于心脏组织为负(-0.69±0.18°C-mm/ns)。然后,我们通过与红外测量的温度进行比较获得超声测温的估计误差,并揭示该误差随着加热区域尺寸的减小而增加。与先前的发现一致,在心脏组织中,超过45°C - 50°C时回波时间偏移不再与温度呈线性相关。与先前使用热电偶或水浴技术评估超声热成像性能的研究不同,我们的结果表明高分辨率红外热成像是一种有用的工具,可用于评估和理解超声热成像方法的局限性。

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Calibration and Evaluation of Ultrasound Thermography Using Infrared Imaging.使用红外成像对超声热成像进行校准和评估
Ultrasound Med Biol. 2016 Feb;42(2):503-17. doi: 10.1016/j.ultrasmedbio.2015.09.021. Epub 2015 Nov 5.

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