Aubry Jean-François, Tanter Mickael
Institut Langevin, ESPCI ParisTech, CNRS UMR 7587, INSERM U979, Paris, France.
Department of Radiation Oncology, University of Virginia, Charlottesville, VA, USA.
Adv Exp Med Biol. 2016;880:97-111. doi: 10.1007/978-3-319-22536-4_6.
Previous chapters introduced the ability of using focused ultrasound to ablate tissues. It has led to various clinical applications in the treatment of uterine fibroid, prostate or liver cancers. Nevertheless, treating the brain non-invasively with focused ultrasound has been considered beyond reach for almost a century: The skull bone protects the brain from mechanical injuries, but it also reflects and refracts ultrasound, making it difficult to target the brain with focused ultrasound. Fortunately, aberration correction techniques have been developed recently and thermal lesioning in the thalamus has been achieved clinically. This chapter introduces the aberration effect of the skull bone and how it can be corrected non-invasively. It also presents the latest clinical results obtained with thermal ablation and introduces novel non-thermal approaches that could revolutionize brain therapy in the future.
前几章介绍了使用聚焦超声消融组织的能力。它已在子宫肌瘤、前列腺癌或肝癌的治疗中得到了各种临床应用。然而,近一个世纪以来,用聚焦超声对大脑进行无创治疗一直被认为是无法实现的:颅骨保护大脑免受机械损伤,但它也会反射和折射超声,使得用聚焦超声靶向大脑变得困难。幸运的是,最近已经开发出了像差校正技术,并且在临床上已经实现了丘脑的热损伤。本章介绍了颅骨的像差效应以及如何对其进行无创校正。它还展示了热消融获得的最新临床结果,并介绍了可能在未来彻底改变脑部治疗的新型非热方法。