High intensity focused ultrasound: Physical principles and devices

Высокоинтенсивный сфокусированный ультразвук: физические принципы и устройства
Gail ter Haar, Constantin Coussios
2007-01-01

HIFU devicesHIFU exposure characterizationhigh-intensity focused ultrasoundnon-invasive tissue heatingthermal ablation
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 have been 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.
1
Application-specific extracorporeal, transrectal, and interstitial devices have been developed for treating tumors and other targets in organs including the liver, kidney, breast, uterus, pancreas, bone, and prostate.
2
Focused high-power beams rapidly heat targeted tissue volumes while largely sparing tissue along the ultrasound propagation path.
3
HIFU commonly provides treatment in a single session, frequently as a day-case procedure with conscious, sedated, or lightly anesthetized patients.
4
High-intensity focused ultrasound enables non-invasive tissue heating and ablation and is gaining clinical acceptance across numerous medical applications.
5
The paper reviews HIFU propagation and heating mechanisms, device operating principles, and methods for characterizing fields and quantifying exposure and biological effects.
6
Unlike thermal ablation methods requiring percutaneous access, HIFU focuses externally or transrectally delivered ultrasound without inserting probes through the skin into target tissue.

High intensity focused ultrasound (HIFU) treatment systems and their interaction with biological tissue

Physical principles, device operation, ultrasound propagation, tissue heating and ablation, and methods for characterizing HIFU exposure and effects

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2007-01-01
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Gail ter Haar
Constantin Coussios
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