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High intensity focused ultrasound: physical principles and devices.

机译:高强度聚焦超声:物理原理和设备。

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摘要

High intensity focused ultrasound (HIFU) is gaining rapid clinical acceptance as a treatment modality enabling non-invasive tissue heating and ablation for numerous applications. HIFU treatments are usually carried out in a single session, often as a day case procedure, with the patient either fully conscious, lightly sedated or under light general anaesthesia. A major advantage of HIFU over other thermal ablation techniques is that there is no necessity for the transcutaneous insertion of probes into the target tissue. The high powered focused beams employed are generated from sources placed either outside the body (for treatment of tumours of the liver, kidney, breast, uterus, pancreas and bone) or in the rectum (for treatment of the prostate), and are designed to enable rapid heating of a target tissue volume, while leaving tissue in the ultrasound propagation path relatively unaffected. Given the wide-ranging applicability of HIFU, numerous extra-corporeal, transrectal and interstitial devices havebeen designed to optimise application-specific treatment delivery. Their principle of operation is described here, alongside an overview of the physical mechanisms governing HIFU propagation and HIFU-induced heating. Present methods of characterising HIFU fields and of quantifying HIFU exposure and its associated effects are also addressed.
机译:高强度聚焦超声(HIFU)作为一种治疗方式已获得快速的临床认可,该治疗方式可实现无创组织加热和消融,适用于多种应用。 HIFU治疗通常在一天之中的一个疗程中进行,患者应完全清醒,轻度镇静或在轻度全身麻醉下进行治疗。 HIFU相对于其他热消融技术的主要优势在于,无需将探针经皮插入目标组织。所采用的高功率聚焦光束由放置在体外(用于治疗肝,肾,乳腺,子宫,胰腺和骨骼的肿瘤)或直肠(用于治疗前列腺)的放射源产生,旨在能够快速加热目标组织体积,同时使超声传播路径中的组织相对不受影响。考虑到HIFU的广泛适用性,已经设计了许多体外,经直肠和组织间隙设备来优化针对特定应用的治疗。这里描述了它们的工作原理,并概述了控制HIFU传播和HIFU引起的加热的物理机制。还介绍了表征HIFU场和量化HIFU暴露及其相关影响的现有方法。

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