Thermal Therapy, Part III: Ablation Techniques
Тепловая терапия. Часть III: методы аблации
2007-01-01
SCID: 54.1/sex363qf
Discuss with AI
cryoablationlaser ablationmicrowave ablationradiofrequency ablation (RF)thermal ablation
Figures from the paper
Abstract (AI)
Ablative treatments are gaining increasing attention as an alternative to standard surgical therapies, especially for patients with contraindication or those who refuse open surgery. Thermal ablation is used in clinical applications mainly for treating heart arrhythmias, benign prostate hyperplasia, and nonoperable liver tumors; there is also increasing application to other organ sites, including the kidney, lung, and brain. Potential benefits of thermal ablation include reduced morbidity and mortality in comparison with standard surgical resection and the ability to treat nonsurgical patients. The purpose of this review is to outline and discuss the engineering principles and biological responses by which thermal ablation techniques can provide elevation of temperature in organs within the human body. Because of the individual problems associated with each type of treatment, a wide range of ablation techniques have evolved including cryoablation as well as ultrasound, radiofrequency (RF), microwave, and laser ablation. Aspects of each ablation technique, including mechanisms of action, equipment required, selection of eligible patients, treatment techniques, and patient outcomes are presented, along with a discussion of limitations of the techniques and future research directions.
Key Findings
1
Clinical applications of thermal ablation mainly include treatment of heart arrhythmias, benign prostate hyperplasia, and nonoperable liver tumors, with growing use in kidney, lung, and brain.
2
Multiple ablation modalities have evolved—cryoablation, ultrasound, radiofrequency, microwave, and laser—each with distinct engineering principles, mechanisms of action, equipment needs, and limitations.
3
The review outlines treatment selection criteria, procedural techniques, patient outcomes, limitations of each modality, and identifies directions for future research.
4
Thermal ablation is an increasingly used alternative to open surgical therapies for patients with contraindications or who refuse surgery.
5
Thermal ablation offers potential benefits of reduced morbidity and mortality compared with standard surgical resection and enables treatment of nonsurgical patients.
Research Object
Thermal ablation techniques used for organ treatments (cryoablation, ultrasound, radiofrequency, microwave, and laser ablation)
Research Subject
Engineering principles and biological responses that enable elevation of tissue temperature and produce therapeutic effects, including mechanisms of action, equipment, patient selection, treatment techniques, outcomes, limitations, and future research directions
Publication Details
Publication Date
2007-01-01
Journal
Publisher
ISSN
Access Type
Author Information
Download PDF
Subscribe to digest