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用于声学肋骨检测和衰减映射的空化增强反向投影

Cavitation-enhanced back projection for acoustic rib detection and attenuation mapping.

作者信息

Ramaekers Pascal, de Greef Martijn, Moonen Chrit T W, Ries Mario G

机构信息

Imaging Division, UMC Utrecht, Heidelberglaan 100, 3584 CX, Utrecht, The Netherlands.

Imaging Division, UMC Utrecht, Heidelberglaan 100, 3584 CX, Utrecht, The Netherlands.

出版信息

Ultrasound Med Biol. 2015 Jun;41(6):1726-36. doi: 10.1016/j.ultrasmedbio.2015.01.024. Epub 2015 Apr 2.

Abstract

High-intensity focused ultrasound allows for minimally invasive, highly localized cancer therapies that can complement surgical procedures or chemotherapy. For high-intensity focused ultrasound interventions in the upper abdomen, the thoracic cage obstructs and aberrates the ultrasonic beam, causing undesired heating of healthy tissue. When a phased array therapeutic transducer is used, such complications can be minimized by applying an apodization law based on analysis of beam path obstructions. In this work, a rib detection method based on cavitation-enhanced ultrasonic reflections is introduced and validated on a porcine tissue sample containing ribs. Apodization laws obtained for different transducer positions were approximately 90% similar to those obtained using image analysis. Additionally, the proposed method provides information on attenuation between transducer elements and the focus. This principle was confirmed experimentally on a polymer phantom. The proposed methods could, in principle, be implemented in real time for determination of the optimal shot position in intercostal high-intensity focused ultrasound therapy.

摘要

高强度聚焦超声能够实现微创、高度局部化的癌症治疗,可作为外科手术或化疗的补充手段。对于上腹部的高强度聚焦超声干预,胸廓会阻碍并使超声束发生畸变,导致健康组织出现不必要的发热。当使用相控阵治疗换能器时,通过基于对波束路径阻碍的分析应用变迹法则,可将此类并发症降至最低。在这项工作中,引入了一种基于空化增强超声反射的肋骨检测方法,并在含有肋骨的猪组织样本上进行了验证。针对不同换能器位置获得的变迹法则与使用图像分析获得的变迹法则相似度约为90%。此外,所提出的方法还提供了换能器元件与焦点之间的衰减信息。这一原理在聚合物模型上得到了实验证实。所提出的方法原则上可实时实施,以确定肋间高强度聚焦超声治疗中的最佳发射位置。

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