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Ultrasonic temperature imaging for the guidance of thermal ablation therapies: in vitro results

机译:超声温度成像指导热消融治疗:体外结果

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Ultrasonic estimation of heat-induced echo strain has been suggested as a technique for the guidance of thermal ablation tumour therapies by predicting the location of the thermal lesion before it is formed. Preliminary investigations of this method were carried out using in vitro bovine liver starting at a baseline temperature of 24/spl deg/C. Three non-ablative temperature rises (/spl sim/10, 20 and 30/spl deg/C respectively) were induced using a focused ultrasound surgery system. In each case, a strain (temperature) image was generated by processing ultrasound images acquired before and after tissue heating. The final step was to induce an ablative temperature rise (/spl sim/40/spl deg/C) so as to produce a thermal lesion. The temperature images for all three non-ablative temperature rises possessed excellent spatial and contrast resolution. The technique demonstrated good repeatability within and between tissue samples. The position of the hot spot in the temperature images correlated well with the region of echo enhancement seen in B-mode images after ablation. We conclude that the proposed technique is feasible in the liver, although additional sources of error that will arise in vivo may require correction.
机译:已经建议通过超声估计热诱发的回声应变,作为通过预测热损伤形成之前的位置来指导热消融肿瘤治疗的技术。使用体外牛肝对这种方法进行了初步研究,起始温度为24 / spl deg / C。使用聚焦超声手术系统引起三个非烧蚀温度升高(分别为/ spl sim / 10、20和30 / spl deg / C)。在每种情况下,通过处理在组织加热之前和之后获取的超声图像来生成应变(温度)图像。最后一步是引起烧蚀温度升高(/ spl sim / 40 / spl deg / C),以产生热损伤。所有三个非烧蚀温度上升的温度图像均具有出色的空间分辨率和对比度分辨率。该技术显示出组织样品内部和之间的良好重复性。温度图像中热点的位置与消融后在B模式图像中看到的回声增强区域有很好的相关性。我们得出结论,尽管可能在体内出现其他错误来源,但建议的技术在肝脏中是可行的。

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