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红外热成像技术在棕色脂肪组织激活的测量与表征中的应用。

The use of infrared thermography in the measurement and characterization of brown adipose tissue activation.

作者信息

Law James, Chalmers Jane, Morris David E, Robinson Lindsay, Budge Helen, Symonds Michael E

机构信息

Early Life Research Unit, Division of Child Health, Obstetrics & Gynaecology, School of Medicine, University of Nottingham, Nottingham, United Kingdom.

Nottingham Digestive Diseases Centre, University of Nottingham and National Institute for Health Research (NIHR) Nottingham Biomedical Research Centre, Nottingham University Hospitals NHS Trust and University of Nottingham.

出版信息

Temperature (Austin). 2018 Jan 29;5(2):147-161. doi: 10.1080/23328940.2017.1397085. eCollection 2018.

Abstract

Interest in brown adipose tissue has increased in recent years as a potential target for novel obesity, diabetes and metabolic disease treatments. One of the significant limitations to rapid progress has been the difficulty in measuring brown adipose tissue activity, especially in humans. Infrared thermography (IRT) is being increasingly recognized as a valid and complementary method to standard imaging modalities, such as positron emission tomography-computed tomography (PET/CT). In contrast to PET/CT, it is non-invasive, cheap and quick, allowing, for the first time, the possibility of large studies of brown adipose tissue (BAT) on healthy populations and children. Variations in study protocols and analysis methods currently limit direct comparison between studies but IRT following appropriate BAT stimulation consistently shows a change in supraclavicular skin temperature and a close association with results from BAT measurements from other methods.

摘要

近年来,作为新型肥胖症、糖尿病和代谢疾病治疗的潜在靶点,人们对棕色脂肪组织的兴趣日益增加。快速取得进展的一个重大限制是难以测量棕色脂肪组织的活性,尤其是在人体中。红外热成像(IRT)越来越被认为是一种有效的、可补充标准成像方式的方法,如正电子发射断层扫描-计算机断层扫描(PET/CT)。与PET/CT相比,它是非侵入性的、成本低且速度快,首次使得对健康人群和儿童进行棕色脂肪组织(BAT)大规模研究成为可能。目前,研究方案和分析方法的差异限制了不同研究之间的直接比较,但在适当刺激BAT后进行的IRT始终显示锁骨上皮肤温度发生变化,且与其他方法测量的BAT结果密切相关。

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4
Mapping of human brown adipose tissue in lean and obese young men.
Proc Natl Acad Sci U S A. 2017 Aug 8;114(32):8649-8654. doi: 10.1073/pnas.1705287114. Epub 2017 Jul 24.
5
Identification and characterization of a supraclavicular brown adipose tissue in mice.
JCI Insight. 2017 Jun 2;2(11). doi: 10.1172/jci.insight.93166.
6
The effect of body fat percentage and body fat distribution on skin surface temperature with infrared thermography.
J Therm Biol. 2017 May;66:1-9. doi: 10.1016/j.jtherbio.2017.03.006. Epub 2017 Mar 18.
7
Glucocorticoids modulate human brown adipose tissue thermogenesis in vivo.
Metabolism. 2017 May;70:125-132. doi: 10.1016/j.metabol.2017.01.024. Epub 2017 Jan 19.
8
Vagal afferent activation decreases brown adipose tissue (BAT) sympathetic nerve activity and BAT thermogenesis.
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