High intensity focused ultrasound in clinical tumor ablation

Высокоинтенсивный сфокусированный ультразвук в клинической аблации опухолей
Yufeng Zhou
2010-11-13

cavitation damagecoagulative thermal necrosishigh intensity focused ultrasound (HIFU)histotripsytumor ablation
Recent advances in high intensity focused ultrasound (HIFU), which was developed in the 1940s as a viable thermal tissue ablation approach, have increased its popularity. In clinics, HIFU has been applied to treat a variety of solid malignant tumors in a well-defined volume, including the pancreas, liver, prostate, breast, uterine fibroids, and soft-tissue sarcomas. In comparison to conventional tumor/cancer treatment modalities, such as open surgery, radio- and chemo-therapy, HIFU has the advantages of non-invasion, non-ionization, and fewer complications after treatment. Over 100 000 cases have been treated throughout the world with great success. The fundamental principles of HIFU ablation are coagulative thermal necrosis due to the absorption of ultrasound energy during transmission in tissue and the induced cavitation damage. This paper reviews the clinical outcomes of HIFU ablation for applicable cancers, and then summarizes the recommendations for a satisfactory HIFU treatment according to clinical experience. In addition, the current challenges in HIFU for engineers and physicians are also included. More recent horizons have broadened the application of HIFU in tumor treatment, such as HIFU-mediated drug delivery, vessel occlusion, and soft tissue erosion ("histotripsy"). In summary, HIFU is likely to play a significant role in the future oncology practice.
1
Clinical applications include pancreatic, liver, prostate, breast, uterine fibroid, and soft-tissue sarcoma tumors.
2
Emerging applications include HIFU-mediated drug delivery, vessel occlusion, and histotripsy-based soft-tissue erosion, although engineering and clinical challenges remain.
3
HIFU ablation produces coagulative thermal necrosis through ultrasound absorption and additional tissue damage through induced cavitation.
4
HIFU provides noninvasive, non-ionizing thermal ablation for solid tumors within well-defined treatment volumes.
5
More than 100,000 cases have reportedly been treated worldwide with substantial clinical success and fewer post-treatment complications than conventional modalities.

clinical HIFU ablation of solid malignant tumors

clinical outcomes, treatment recommendations, mechanisms, and emerging applications of HIFU tumor ablation

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2010-11-13
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Yufeng Zhou
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