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一种用于移动腹部器官中聚焦超声治疗(FUS)的基于模型的集成软件。

An integrated model-based software for FUS in moving abdominal organs.

作者信息

Schwenke Michael, Strehlow Jan, Haase Sabrina, Jenne Juergen, Tanner Christine, Langø Thomas, Loeve Arjo J, Karakitsios Ioannis, Xiao Xu, Levy Yoav, Sat Giora, Bezzi Mario, Braunewell Stefan, Guenther Matthias, Melzer Andreas, Preusser Tobias

机构信息

Fraunhofer Institute for Medical Image Computing MEVIS , Bremen , Germany .

出版信息

Int J Hyperthermia. 2015 May;31(3):240-50. doi: 10.3109/02656736.2014.1002817. Epub 2015 Mar 19.

Abstract

Focused ultrasound surgery (FUS) is a non-invasive method for tissue ablation that has the potential for complete and controlled local tumour destruction with minimal side effects. The treatment of abdominal organs such as the liver, however, requires particular technological support in order to enable a safe, efficient and effective treatment. As FUS is applied from outside the patient's body, suitable imaging methods, such as magnetic resonance imaging or diagnostic ultrasound, are needed to guide and track the procedure. To facilitate an efficient FUS procedure in the liver, the organ motion during breathing and the partial occlusion by the rib cage need to be taken into account in real time, demanding a continuous patient-specific adaptation of the treatment configuration. Modelling the patient's respiratory motion and combining this with tracking data improves the accuracy of motion predictions. Modelling and simulation of the FUS effects within the body allows the use of treatment planning and has the potential to be used within therapy to increase knowledge about the patient status. This article describes integrated model-based software for patient-specific modelling and prediction for FUS treatments of moving abdominal organs.

摘要

聚焦超声手术(FUS)是一种用于组织消融的非侵入性方法,具有以最小的副作用实现完全且可控的局部肿瘤破坏的潜力。然而,对肝脏等腹部器官进行治疗需要特定的技术支持,以便实现安全、高效且有效的治疗。由于FUS是从患者体外施加的,因此需要合适的成像方法,如磁共振成像或诊断超声,来引导和跟踪该过程。为了在肝脏中实现高效的FUS手术,需要实时考虑呼吸过程中的器官运动以及肋骨笼的部分遮挡,这就要求根据患者的具体情况持续调整治疗配置。对患者的呼吸运动进行建模并将其与跟踪数据相结合,可以提高运动预测的准确性。对体内FUS效应进行建模和模拟有助于进行治疗规划,并且有可能在治疗过程中用于增加对患者状态的了解。本文介绍了基于模型的集成软件,用于对移动腹部器官的FUS治疗进行患者特异性建模和预测。

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