Focused Ultrasound: Noninvasive Image-Guided Therapy.

IF 7 1区 医学 Q1 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Investigative Radiology Pub Date : 2024-08-21 DOI:10.1097/RLI.0000000000001116
Chrit T W Moonen, Joseph P Kilroy, Alexander L Klibanov
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引用次数: 0

Abstract

Abstract: Invasive open surgery used to be compulsory to access tumor mass to perform excision or resection. Development of minimally invasive laparoscopic procedures followed, as well as catheter-based approaches, such as stenting, endovascular surgery, chemoembolization, brachytherapy, which minimize side effects and reduce the risks to patients. Completely noninvasive procedures bring further benefits in terms of reducing risk, procedure time, recovery time, potential of infection, or other side effects. Focusing ultrasound waves from the outside of the body specifically at the disease site has proven to be a safe noninvasive approach to localized ablative hyperthermia, mechanical ablation, and targeted drug delivery. Focused ultrasound as a medical intervention was proposed decades ago, but it only became feasible to plan, guide, monitor, and control the treatment procedures with advanced radiological imaging capabilities. The purpose of this review is to describe the imaging capabilities and approaches to perform these tasks, with the emphasis on magnetic resonance imaging and ultrasound. Some procedures already are in clinical practice, with more at the clinical trial stage. Imaging is fully integrated in the workflow and includes the following: (1) planning, with definition of the target regions and adjacent organs at risk; (2) real-time treatment monitoring via thermometry imaging, cavitation feedback, and motion control, to assure targeting and safety to adjacent normal tissues; and (3) evaluation of treatment efficacy, via assessment of ablation and physiological parameters, such as blood supply. This review also focuses on sonosensitive microparticles and nanoparticles, such as microbubbles injected in the bloodstream. They enable ultrasound energy deposition down to the microvascular level, induce vascular inflammation and shutdown, accelerate clot dissolution, and perform targeted drug delivery interventions, including focal gene delivery. Especially exciting is the ability to perform noninvasive drug delivery via opening of the blood-brain barrier at the desired areas within the brain. Overall, focused ultrasound under image guidance is rapidly developing, to become a choice noninvasive interventional radiology tool to treat disease and cure patients.

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聚焦超声:无创图像引导疗法。
摘要:过去,必须进行开腹侵入性手术,才能进入肿瘤组织进行切除。微创腹腔镜手术以及支架植入、血管内手术、化疗栓塞、近距离放射治疗等基于导管的方法随之发展起来,这些方法最大限度地减少了副作用,降低了患者的风险。完全无创手术在减少风险、手术时间、恢复时间、潜在感染或其他副作用方面具有更多优势。事实证明,从体外将超声波聚焦到疾病部位是一种安全的无创方法,可用于局部消融热疗、机械消融和靶向给药。聚焦超声作为一种医疗干预手段早在几十年前就已提出,但直到有了先进的放射成像能力,才有可能对治疗程序进行规划、引导、监测和控制。本综述旨在介绍执行这些任务的成像能力和方法,重点是磁共振成像和超声波。有些程序已在临床实践中应用,更多程序还处于临床试验阶段。成像已完全融入工作流程,包括以下内容:(1)规划,确定目标区域和有风险的邻近器官;(2)通过测温成像、空化反馈和运动控制进行实时治疗监控,以确保靶向性和对邻近正常组织的安全性;(3)通过评估消融和生理参数(如供血)评估治疗效果。本综述还重点介绍了声敏微粒子和纳米粒子,如注入血液的微气泡。它们能使超声能量沉积到微血管水平,诱发血管炎症和关闭,加速血凝块溶解,并进行靶向药物输送干预,包括病灶基因输送。尤其令人兴奋的是,通过打开脑内所需区域的血脑屏障,能够进行无创药物输送。总之,图像引导下的聚焦超声正在迅速发展,成为治疗疾病和治愈病人的首选无创介入放射学工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Investigative Radiology
Investigative Radiology 医学-核医学
CiteScore
15.10
自引率
16.40%
发文量
188
审稿时长
4-8 weeks
期刊介绍: Investigative Radiology publishes original, peer-reviewed reports on clinical and laboratory investigations in diagnostic imaging, the diagnostic use of radioactive isotopes, computed tomography, positron emission tomography, magnetic resonance imaging, ultrasound, digital subtraction angiography, and related modalities. Emphasis is on early and timely publication. Primarily research-oriented, the journal also includes a wide variety of features of interest to clinical radiologists.
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