Advances in radiofrequency ablation: mechanism of action and technology.

4区 医学 Q2 Nursing
Annals of palliative medicine Pub Date : 2024-07-01 Epub Date: 2024-07-18 DOI:10.21037/apm-23-457
Natalie H Strand, Jonathan M Hagedorn, Tyler Dunn, Brooks Johnson, Alaa Abd-Elsayed, Stephen Covington, John Freeman, Azizat Dawodu, Jillian Maloney
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Abstract

Radiofrequency ablation (RFA) is a minimally invasive treatment modality that utilizes high-frequency alternating current to destroy targeted tissues through thermal ablation. This manuscript provides an overview of the advancements in RFA, focusing on its mechanism of action and technological innovations. RFA technology was first introduced in the early 1900's, and its use has expanded and evolved, especially in its current utility in the treatment of painful conditions. As the technology has evolved, new techniques, applications and modalities have expanded its use and improved its efficacy. RFA works by applying radiofrequency energy through specialized electrodes, leading to resistive heating and coagulation necrosis. Its advantages include precise tissue targeting, minimal invasiveness, reduced complications, and faster recovery compared to traditional surgical interventions. Technological advancements in RFA have led to improved treatment outcomes. Multi-electrode systems allow for larger ablation zones. Image-guided RFA improves treatment planning and minimizes damage to healthy tissues. Cooled-tip and perfusion electrodes address limitations such as heat sink effects, enhancing RFA's efficacy in challenging anatomical regions. These developments have expanded RFA's applications to liver tumors, lung tumors, renal tumors, cardiac arrhythmias, and chronic pain syndromes. In conclusion, RFA has emerged as a safe and effective thermal ablation technique. Understanding its mechanism of action and integrating advanced technologies have significantly enhanced treatment outcomes. Continued research and innovation in RFA hold immense potential for further improving patient care and outcomes.

射频消融的进展:作用机制和技术。
射频消融(RFA)是一种微创治疗方式,它利用高频交流电通过热消融破坏目标组织。本手稿概述了射频消融的进展,重点介绍其作用机制和技术创新。射频消融技术最早出现于 20 世纪初,其应用范围不断扩大和发展,尤其是目前在治疗疼痛性疾病方面的应用。随着技术的发展,新技术、新应用和新模式扩大了其应用范围,提高了其疗效。射频消融术的工作原理是通过专用电极应用射频能量,导致电阻加热和凝固性坏死。与传统的外科手术相比,它的优点包括精确的组织定位、微创、减少并发症以及恢复更快。射频消融技术的进步提高了治疗效果。多电极系统可实现更大的消融区域。图像引导的射频消融术改进了治疗规划,最大限度地减少了对健康组织的损伤。冷却尖端和灌注电极解决了散热效应等限制,提高了 RFA 在具有挑战性的解剖区域的疗效。这些发展将射频消融技术的应用范围扩大到肝肿瘤、肺肿瘤、肾肿瘤、心律失常和慢性疼痛综合征。总之,RFA 已成为一种安全有效的热消融技术。对其作用机制的了解和先进技术的整合大大提高了治疗效果。RFA 的持续研究和创新为进一步改善患者护理和治疗效果带来了巨大潜力。
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
Annals of palliative medicine
Annals of palliative medicine Medicine-Anesthesiology and Pain Medicine
自引率
0.00%
发文量
231
期刊介绍: Annals of Palliative Medicine (Ann Palliat Med; Print ISSN 2224-5820; Online ISSN 2224-5839) is an open access, international, peer-reviewed journal published quarterly with both online and printed copies since 2012. The aim of the journal is to provide up-to-date and cutting-edge information and professional support for health care providers in palliative medicine disciplines to improve the quality of life for patients and their families and caregivers.
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