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热疗法,第1部分:热疗法简介。

Thermal therapy, part 1: an introduction to thermal therapy.

作者信息

Habash Riadh W Y, Bansal Rajeev, Krewski Daniel, Alhafid Hafid T

机构信息

McLaughlin Centre for Population Health Risk Assessment, Institute of Population Health/School of Information Technology and Engineering, University of Ottawa, Ottawa, Ontario, Canada.

出版信息

Crit Rev Biomed Eng. 2006;34(6):459-89. doi: 10.1615/critrevbiomedeng.v34.i6.20.

Abstract

Thermal therapy is widely known and electromagnetic (EM) energy, ultrasonic waves, and other thermal-conduction-based devices have been used as heating sources. In particular, advances in EM technology have paved the way for promising trends in thermotherapeutical applications such as oncology, physiotherapy, urology, cardiology, ophthalmology, and in other areas of medicine as well. This series of articles is generally written for oncologists, cancer researchers, medical students, biomedical researchers, clinicians, and others who have an interest in this topic. This article reviews key processes and developments in thermal therapy with emphasis on two techniques, namely, hyperthermia [including long-term low-temperature hyperthermia (40-41 degrees C for 6-72 hr), moderate-temperature hyperthermia (42-45 degrees C for 15-60 min), and thermal ablation, or high-temperature hyperthermia (> 50 degrees C for > 4-6 min)]. The article will also provide an overview of a wide range of possible mechanisms and biological effects of heat. This information will be discussed in light of what is known about the degree of temperature rise that is expected from various sources of energy. The review concludes with an evaluation of human exposure risk to EM energy or the corresponding heat, trends in equipment development, and future research directions.

摘要

热疗法广为人知,电磁(EM)能、超声波及其他基于热传导的设备已被用作热源。特别是,EM技术的进步为热疗应用的一些有前景的趋势铺平了道路,这些应用领域包括肿瘤学、物理治疗、泌尿学、心脏病学、眼科以及其他医学领域。本系列文章主要面向肿瘤学家、癌症研究人员、医学生、生物医学研究人员、临床医生以及其他对该主题感兴趣的人士。本文回顾了热疗法的关键过程和进展,重点介绍了两种技术,即热疗[包括长期低温热疗(40 - 41摄氏度,持续6 - 72小时)、中度温度热疗(42 - 45摄氏度,持续15 - 60分钟)以及热消融,或高温热疗(>50摄氏度,持续>4 - 6分钟)]。本文还将概述热的各种可能机制和生物学效应。将根据已知的各种能源预期升温程度来讨论这些信息。综述最后评估了人体暴露于EM能或相应热量的风险、设备发展趋势以及未来的研究方向。

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