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MRI-Guided HIFU Methods for the Ablation of Liver and Renal Cancers

机译:MRI引导的HIFU方法,用于消融肝肾癌症

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MRI-guided High Intensity Focused Ultrasound (MRI-HIFU) is a promising method for the non-invasive ablation of pathological tissue in many organs, including mobile organs such as liver and kidney. The possibility to locally deposit thermal energy in a non-invasive way opens a path towards new therapeutic strategies with improved reliability and reduced associated trauma, leading to improved efficacy, reduced hospitalization and costs. Liver and kidney tumors represent a major health problem because not all patients are suitable for curative treatment with surgery. Currently, radio-frequency is the most used method for percutaneous ablation. The development of a completely non-invasive method based on MR guided high intensity focused ultrasound (HIFU) treatments is of particular interest due to the associated reduced burden for the patient, treatment related patient morbidity and complication rate. The objective of MR-guidance is hereby to control heat deposition with HIFU within the targeted pathological area, despite the physiological motion of these organs, in order to provide an effective treatment with a reduced duration and an increased level of patient safety. Regarding this, several technological challenges have to be addressed: Firstly, the anatomical location of both organs within the thoracic cage requires inter-costal ablation strategies, which preserve the therapeutic efficiency, but prevent undesired tissue damage to the ribs and the intercostal muscle. Secondly, both therapy guidance and energy deposition have to be rendered compatible with the continuous physiological motion of the abdomen.
机译:MRI引导的高强度聚焦超声(MRI-HIFU)是许多器官在许多器官中的病理组织的非侵入性消融的有希望的方法,包括肝脏和肾脏等移动器官。以非侵入性方式局部沉积热能的可能性开辟了一种朝向新的治疗策略的路径,具有改善的可靠性和减少的相关创伤,导致有效性,降低住院和成本。肝肾肿瘤代表了一个主要的健康问题,因为并非所有患者都适合用手术治疗。目前,射频是经皮烧蚀的最常用方法。由于患者治疗相关患者发病率和并发症率的相关负担,基于MR引导的高强度聚焦超声(HIFU)治疗的完全非侵入性方法的开发特别感兴趣。尽管这些器官的生理运动,MR-Guidance的目的在特此以控制靶向病理区域内的HIFU的热沉积,以便提供减少持续时间和增加的患者安全水平的有效治疗。关于这一点,必须解决若干技术挑战:首先,胸笼内的两个器官的解剖位置需要肋骨间消融策略,这些策略保持治疗效率,但防止对肋骨和肋间肌的不期望的组织损伤。其次,治疗引导和能量沉积都必须与腹部的连续生理运动相容。

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