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Beam localization in HIFU temperature measurements using thermocouples, with application to cooling by large blood vessels

机译:使用热电偶在HIFU温度测量中进行光束定位,并应用于大血管冷却

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摘要

Experimental studies of thermal effects in high-intensity focused ultrasound (HIFU) procedures are often performed with the aid of fine wire thermocouples positioned within tissue phantoms. Thermocouple measurements are subject to several types of error which must be accounted for before reliable inferences can be made on the basis of the measurements. Thermocouple artifact due to viscous heating is one source of error. A second is the uncertainty regarding the position of the beam relative to the target location or the thermocouple junction, due to the error in positioning the beam at the junction. This paper presents a method for determining the location of the beam relative to a fixed pair of thermocouples. The localization technique reduces the uncertainty introduced by positioning errors associated with very narrow HIFU beams. The technique is presented in the context of an investigation into the effect of blood flow through large vessels on the efficacy of HIFU procedures targeted near the vessel. Application of the beam localization method allowed conclusions regarding the effects of blood flow to be drawn from previously inconclusive (because of localization uncertainties) data. Comparison of the position-adjusted transient temperature profiles for flow rates of 0 and 400 ml/min showed that blood flow can reduce temperature elevations by more than 10%, when the HIFU focus is within a 2 mm distance from the vessel wall. At acoustic power levels of 17.3 and 24.8 W there is a 20- to 70-fold decrease in thermal dose due to the convective cooling effect of blood flow, implying a shrinkage in lesion size. The beam-localization technique also revealed the level of thermocouple artifact as a function of sonication time, providing investigators with an indication of the quality of thermocouple data for a given exposure time. The maximum artifact was found to be double the measured temperature rise, during initial few seconds of sonication.
机译:高强度聚焦超声(HIFU)程序中的热效应的实验研究通常是借助位于组织体模内的细线热电偶进行的。热电偶的测量存在几种类型的误差,必须根据这些误差加以考虑,然后才能根据测量结果做出可靠的推断。粘性加热导致的热电偶伪影是误差的来源之一。第二个原因是由于梁在接合处的定位错误,导致梁相对于目标位置或热电偶接合处的位置不确定。本文提出了一种确定束相对于固定的热电偶对的位置的方法。定位技术减少了与非常窄的HIFU光束相关的定位误差所带来的不确定性。在研究流经大血管的血流对靶向血管附近的HIFU程序的效果的影响时,提出了该技术。束定位方法的应用使得可以从先前不确定的(由于定位不确定性)数据得出有关血流影响的结论。比较流速为0和400 ml / min时位置调整的瞬态温度曲线,当HIFU焦点位于距血管壁2 mm的距离内时,血流可以将温度升高降低10%以上。在17.3和24.8 W的声功率水平下,由于血流的对流冷却效应,热剂量减少了20到70倍,这意味着病变尺寸缩小。光束定位技术还揭示了热电偶伪影的水平与超声时间的关系,从而为研究人员提供了在给定曝光时间内热电偶数据质量的指示。在超声的最初几秒钟内,发现最大的伪像是测得的温度上升的两倍。

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