基于成像的体内温度测量:该期刊。
Imaging-based internal body temperature measurements: The journal .
作者信息
Raiko Juho, Koskensalo Kalle, Sainio Teija
机构信息
Turku PET Centre, University of Turku, Turku, Finland.
Department of Nutrition and Movement Sciences, Maastricht University, Maastricht, The Netherlands.
出版信息
Temperature (Austin). 2020 May 29;7(4):363-388. doi: 10.1080/23328940.2020.1769006. eCollection 2020.
Noninvasive imaging methods of internal body temperature are in high demand in both clinical medicine and physiological research. Thermography and thermometry can be used to assess tissue temperature during thermal therapies: ablative and hyperthermia treatments to ensure adequate temperature rise in target tissues but also to avoid collateral damage by heating healthy tissues. In research use, measurement of internal body temperature enables us the production of thermal maps on muscles, internal organs, and other tissues of interest. The most used methods for noninvasive imaging of internal body temperature are based on different parameters acquired with magnetic resonance imaging, ultrasound, computed tomography, microwave radiometry, photoacoustic imaging, and near-infrared spectroscopy. In the current review, we examine the aforementioned imaging methods, their use in estimating internal body temperature in vivo with their advantages and disadvantages, and the physical phenomena the thermography or thermometry modalities are based on.
临床医学和生理学研究都对体内温度的无创成像方法有很高的需求。热成像和温度测量可用于评估热疗过程中的组织温度:消融和热疗治疗,以确保目标组织有足够的温度升高,同时避免因加热健康组织而造成的附带损伤。在研究应用中,体内温度的测量使我们能够生成肌肉、内部器官和其他感兴趣组织的热图。用于体内温度无创成像的最常用方法基于通过磁共振成像、超声、计算机断层扫描、微波辐射测量、光声成像和近红外光谱获得的不同参数。在当前的综述中,我们研究了上述成像方法、它们在体内估计体温方面的应用及其优缺点,以及热成像或温度测量方式所基于的物理现象。
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