Literature DB >> 31852199

Brown fat activity determined by infrared thermography and thermogenesis measurement using whole body calorimetry (BRIGHT Study).

S H Tay1, H J Goh, P Govindharajulu, J Cheng, S G Camps, S Haldar, S S Velan, L Sun, Y Li, C J Henry, M K-S Leow.   

Abstract

To assess BAT activity in humans at a population level, infrared thermography (IRT) represents a safe, readily repeatable and affordable alternative to 18F-FDG-PET. Building upon a previously proposed method by our laboratory, we further refined the image computational algorithm to quantify BAT activation in the cervical-supraclavicular (C-SCV) region of healthy young men under thermo-neutral and cold exposure conditions. Additionally, we validated the whole-body calorimeter (WBC) in reliably measuring cold-induced thermogenesis. The temperature gradient between C-SCV-deltoid regions, and the corresponding difference in heat power output, increased upon cold air exposure relative to thermo-neutral conditions (by 74.88 %, p<0.0001; and by 71.34 %, p<0.0001 respectively). Resting and cumulative energy expenditure (EE) rose significantly (by 13.14 % and 9.12 % respectively, p=0.0001) while positive correlations between IRT measures and EE were found with cold air exposure (percentage change in heat power gradient between ROI and deltoid, cold air: r(2)=0.29, p=0.026, Pearson's correlation). IRT and WBC can be used to study BAT activation. The refined algorithm allows for more automation and objectivity in IRT data analysis, especially under cold air exposures.

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Year:  2019        PMID: 31852199      PMCID: PMC8565961          DOI: 10.33549/physiolres.934190

Source DB:  PubMed          Journal:  Physiol Res        ISSN: 0862-8408            Impact factor:   1.881


  44 in total

1.  Hot fat in a cool man: infrared thermography and brown adipose tissue.

Authors:  P Lee; K K Y Ho; P Lee; J R Greenfield; K K Y Ho; J R Greenfield
Journal:  Diabetes Obes Metab       Date:  2011-01       Impact factor: 6.577

Review 2.  Fasting and nonfasting triglycerides in cardiovascular and other diseases.

Authors:  J Piťha; J Kovář; T Blahová
Journal:  Physiol Res       Date:  2015       Impact factor: 1.881

3.  Brown adipose tissue blood flow and mass in obesity: a contrast ultrasound study in mice.

Authors:  Maëva Clerte; David M Baron; Peter Brouckaert; Laura Ernande; Michael J Raher; Aidan W Flynn; Michael H Picard; Kenneth D Bloch; Emmanuel S Buys; Marielle Scherrer-Crosbie
Journal:  J Am Soc Echocardiogr       Date:  2013-08-28       Impact factor: 5.251

4.  Brown fat in humans: consensus points and experimental guidelines.

Authors:  Aaron M Cypess; Carol R Haft; Maren R Laughlin; Houchun H Hu
Journal:  Cell Metab       Date:  2014-09-02       Impact factor: 27.287

5.  Association of heat production with 18F-FDG accumulation in murine brown adipose tissue after stress.

Authors:  Edward A Carter; Ali A Bonab; Kasie Paul; John Yerxa; Ronald G Tompkins; Alan J Fischman
Journal:  J Nucl Med       Date:  2011-09-13       Impact factor: 10.057

Review 6.  Obesity and infection: reciprocal causality.

Authors:  V Hainer; H Zamrazilová; M Kunešová; B Bendlová; I Aldhoon-Hainerová
Journal:  Physiol Res       Date:  2015       Impact factor: 1.881

7.  Supraclavicular skin temperature as a measure of 18F-FDG uptake by BAT in human subjects.

Authors:  Mariëtte R Boon; Leontine E H Bakker; Rianne A D van der Linden; Lenka Pereira Arias-Bouda; Frits Smit; Hein J Verberne; Wouter D van Marken Lichtenbelt; Ingrid M Jazet; Patrick C N Rensen
Journal:  PLoS One       Date:  2014-06-12       Impact factor: 3.240

8.  Glucagon increases energy expenditure independently of brown adipose tissue activation in humans.

Authors:  V Salem; C Izzi-Engbeaya; C Coello; D B Thomas; E S Chambers; A N Comninos; A Buckley; Z Win; A Al-Nahhas; E A Rabiner; R N Gunn; H Budge; M E Symonds; S R Bloom; T M Tan; W S Dhillo
Journal:  Diabetes Obes Metab       Date:  2015-11-20       Impact factor: 6.577

Review 9.  Anatomical locations of human brown adipose tissue: functional relevance and implications in obesity and type 2 diabetes.

Authors:  Harold Sacks; Michael E Symonds
Journal:  Diabetes       Date:  2013-06       Impact factor: 9.461

10.  A standardized infrared imaging technique that specifically detects UCP1-mediated thermogenesis in vivo.

Authors:  Justin D Crane; Emilio P Mottillo; Troy H Farncombe; Katherine M Morrison; Gregory R Steinberg
Journal:  Mol Metab       Date:  2014-04-21       Impact factor: 7.422

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  1 in total

1.  Activated brown adipose tissue releases exosomes containing mitochondrial methylene tetrahydrofolate dehydrogenase (NADP dependent) 1-like protein (MTHFD1L).

Authors:  Melvin Khee-Shing Leow; Anantharaj Rengaraj; Kothandaraman Narasimhan; Sanjay K Verma; Jadegoud Yaligar; Giang Le Thi Thu; Lijuan Sun; Hui Jen Goh; Priya Govindharajulu; Suresh Anand Sadananthan; Navin Michael; Wei Meng; Xavier Gallart-Palau; Lei Sun; Neerja Karnani; Newman Siu Kwan Sze; S Sendhil Velan
Journal:  Biosci Rep       Date:  2022-05-27       Impact factor: 3.976

  1 in total

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