Body mass excess: Difference between revisions
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{{MitoPedia | {{MitoPedia | ||
|abbr=BME | |abbr=BME | ||
|description=The '''body-mass excess''' with respect to the healthy reference population, HRP, is defined as BME ≝ ''M''/''M''°, | |description=The '''body-mass excess''', BME, is a lifestyle metric. The BME with respect to the healthy reference population, HRP, is defined as BME <big>≝</big> ''M''/''M''°. Thus the BME expresses your actual body-mass, ''M'', relative to the reference body-mass, ''M''°, for your height in the HRP. A balanced BME is BME°=1.0 with a band width of -0.1 towards underweight and +0.2 towards overweight. Considering a height of 1.78 m, the balanced body-mass is ''M''°=65.9 kg, and overweight is reached at a weight gain of 20 % or BME=1.2 (1.2''M''=79 kg; above body-mass index BMI<sub>1.2</sub>=24.8). At a height of 1.84 m, the balanced body-mass is ''M''°=72.4 kg, and obesity is reached at a weight gain of 40 % or BME=1.4 (1.4''M''=101.4 kg; above BMI<sub>1.4</sub>=29.9). | ||
|info=[[Gnaiger 2019 MiP2019]] | |info=[[Gnaiger 2019 MiP2019]] | ||
}} | }} | ||
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'''<big>»</big>''' [https://bme.oroboros.at/ '''<big>BME calculator</big>'''] | '''<big>»</big>''' [https://bme.oroboros.at/ '''<big>BME calculator</big>'''] | ||
[[Gnaiger E |Erich Gnaiger]] and [[Cocco P |Paolo Cocco]]: '''''work in progress''''' - last update 2019-12- | [[Gnaiger E |Erich Gnaiger]] and [[Cocco P |Paolo Cocco]]: '''''work in progress''''' - last update 2019-12-12 | ||
:::: The BME calculator is based on the WHO database on children up to 10 years of age (WHO Multicentre Growth Reference Study Group, WHO MGRS 2006), and on the Committee on Biological Handbooks data set (CBH; Zimmer 1962) on adoselscents to aduls, according to the tables listed below. The results have to be critically evaluated. The BME calculator applies to healthy controls (except for obesity), without [[sarcopenia]]. | :::: The BME calculator is based on the WHO database on children up to 10 years of age (WHO Multicentre Growth Reference Study Group, WHO MGRS 2006), and on the Committee on Biological Handbooks data set (CBH; Zimmer 1962) on adoselscents to aduls, according to the tables listed below. The results have to be critically evaluated. The BME calculator applies to healthy controls (except for obesity), without [[sarcopenia]]. |
Revision as of 09:43, 14 December 2019
Description
The body-mass excess, BME, is a lifestyle metric. The BME with respect to the healthy reference population, HRP, is defined as BME ≝ M/M°. Thus the BME expresses your actual body-mass, M, relative to the reference body-mass, M°, for your height in the HRP. A balanced BME is BME°=1.0 with a band width of -0.1 towards underweight and +0.2 towards overweight. Considering a height of 1.78 m, the balanced body-mass is M°=65.9 kg, and overweight is reached at a weight gain of 20 % or BME=1.2 (1.2M=79 kg; above body-mass index BMI1.2=24.8). At a height of 1.84 m, the balanced body-mass is M°=72.4 kg, and obesity is reached at a weight gain of 40 % or BME=1.4 (1.4M=101.4 kg; above BMI1.4=29.9).
Abbreviation: BME
Reference: Gnaiger 2019 MiP2019
BME - the body-mass excess calculator
» BME calculator Erich Gnaiger and Paolo Cocco: work in progress - last update 2019-12-12
- The BME calculator is based on the WHO database on children up to 10 years of age (WHO Multicentre Growth Reference Study Group, WHO MGRS 2006), and on the Committee on Biological Handbooks data set (CBH; Zimmer 1962) on adoselscents to aduls, according to the tables listed below. The results have to be critically evaluated. The BME calculator applies to healthy controls (except for obesity), without sarcopenia.
- Open the BME calculator by clicking here (press Ctrl and left mouse click): BME calculator
- Click into the field Height, H [m] and enter your height in meters [m] (not cm), using the dot (not the comma) as a separator for decimal places. Example: 1.70
- Click into the field Body-mass, M [kg] and enter your mass (weight) in kilograms [kg] (not pounds), using the dot (not the comma) as a separator for decimal places. Example: 63.4
- Click into the field Click here for results. This activates the caclulator. Results are displayed in the fields below.
- The Body-mass excess, BME is calculated from your height and body-mass. Example: 1.1 (With a BME of 1.1 you are 10 % above the reference body-mass, which is well within the normal range.) The percentage is calculated as (BME-1)*100.
- For comparison with a commonly used index, the Body-mass index, BMI is calculated from your body-mass divided by your height squared. Example: 21.9 (What does this index tell you?)
- The Reference body-mass, M° is calculated from your height and shows the corresponding body-mass of a person from the healthy reference population. Example: 57.7 (You can compare this reference body-mass of 57.7 kg with your measured body-mass of 63.4 kg.)
- The expected maximum aerobic exercise capacity per body-mass, VO2max/m, at a BME of 1.1 is 55 mL·min-1·kg-1. The calculated VO2max/m applies to healthy adults, and does not apply to BME<1.
- The Overweight body-mass, 1.2M and Obese body-mass, 1.4M are calculated from the reference body-mass. You can compare these cut-off values with your actual body-mass. Example: 69.2 (More than 69.2 kg is rated as overweight for a height of 1.70 m with BME=1.2.); 80.8 (More than 80.8 kg is rated as obese for a height of 1.70 m with BME=1.4.)
- If you want to edit your height or body-mass entered above, click into the corresponding field, delete the previously entered number, enter the new number, and click into the field Click here for results.
Body-mass excess (BME) compared to body-mass index (BMI)
- Balanced standard: BME = 1.0
- Overweight: BME > 1.2
- Obese: BME > 1.4
- For 0.45 to 1.26 m heights (newborns and children), the tables are based on data for WHO Child Growth Standards (WHO Multicentre Growth Reference Study Group, MGRS [8, 9]) compiled from Brazil, Ghana, India, Norway, Oman and the USA, reporting as little as 3 % differences between these groups, and less than 2 % differences between girls and boys.
- For heights of 1.27 m and above, the tables are based on a Committee on Biological Handbooks data set (CBH [2]), compiled from publications between 1931 to 1944 [3-7]. These agree with WHO MGRS data at heights 1.27 to 1.4 m (children and adolescents) [9] within 1 %, and agree on noting no differences between females and males.
BME at height 0.45 - 0.62 m
BME at height 0.63 - 1.02 m
BME at height 1.03 - 1.26 m
BME at height 1.27 - 2.0 m
References and links
- Gnaiger E (2019) OXPHOS capacity in human muscle tissue and body-mass excess – the MitoEAGLE mission towards an integrative database. 14th Conference on Mitochondrial Physiology: Mitochondrial function: changes during life cycle and in noncommunicable diseases - COST MitoEAGLE perspectives and MitoEAGLE WG and MC Meeting. Belgrade RS, 13-16 Oct 2019. - »Bioblast link«
- Zucker TF (1962) Regression of standing and sitting weights on body weight: man. In: Altman PL, Dittmer DS, eds: Growth including reproduction and morphological development. Committee on Biological Handbooks, Fed Amer Soc Exp Biol:336-7. – Anthropometry, h and m°, of the healthy reference population, HRP; based on [3-7].
- Bayley N, Davis FC (1935) Growth changes in bodily size and proportions during the first three years. Biometrika 27:26-87.
- Gray H, Ayres JG (1931) Growth in private school children. Behavior Res Fund Monog, Univ Chicago Press, Chicago:282 pp. – With averages and variabilities based on 3110 measurings on boys and 1473 on girls from the ages of one to nineteen years.
- Meredith HV (1935) Univ Iowa studies in child welfare 11(3).
- Peatman JG, Higgons RA (1938) Growth norms from birth to the age of five years: a study of children reared with optimal pediatric and home care. Am J Diseases Children 55:1233-1247.
- Simmons KW (1944) Monographs Soc Research in Child Develop 9(1).
- WHO Multicentre Growth Reference Study Group (2006) WHO child growth standards based on length/height, weight and age. Acta Pædiatrica Suppl 450:76-85.
- WHO Multicentre Growth Reference Study Group (2006) WHO child growth standards: length/height-for-age, weight-for-age, weight-for-length, weight-for-height and body mass index-for-age: Methods and development. Geneva: World Health Organization:312 pp.
Publications BME
Sort in ascending/descending order by a click on one of the small symbols in squares below. Default sorting: chronological. Empty fields appear first in ascending order.
Year | Reference | Organism | Tissue;cell | Stress | Diseases | |
---|---|---|---|---|---|---|
National Academies of Sciences, Engineering, and Medicine 2024 Body composition and obesity | 2024 | National Academies of Sciences, Engineering, and Medicine (2024) Exploring the science on measures of body composition, body fat distribution, and obesity. National Academies Press, Washington, DC https://doi.org/10.17226/27461. | Human | Fat | Obesity | |
National Academies of Sciences, Engineering, and Medicine 2023 BMI and beyond | 2023 | National Academies of Sciences, Engineering, and Medicine (2023) BMI and beyond: Considering context in measuring obesity and its applications: Proceedings of a workshop—in brief. The National Academies Press, Washington, DC. https://doi.org/10.17226/27185 | Human | Fat | Obesity | |
Chambers 2020 J Appl Physiol (1985) | 2020 | Chambers TL, Burnett TR, Raue U, Lee GA, Finch WH, Graham BM, Trappe TA, Trappe S (2020) Skeletal muscle size, function, and adiposity with lifelong aerobic exercise. J Appl Physiol (1985) 128:368–78. | Human | Skeletal muscle Fat | Aging;senescence | |
Misra 2019 J Postgrad Med | 2019 | Misra P, Singh AK, Archana S, Lohiya A, Kant S (2019) Relationship between body mass index and percentage of body fat, estimated by bio-electrical impedance among adult females in a rural community of North India: A cross-sectional study. J Postgrad Med 65:134-40. | Human | Fat | Obesity | |
Hood 2019 Nutr Diabetes | 2019 | Hood K, Ashcraft J, Watts K, Hong S, Choi W, Heymsfield SB, Gautam RK, Thomas D (2019) Allometric scaling of weight to height and resulting body mass index thresholds in two Asian populations. Nutr Diabetes 9:2. doi: 10.1038/s41387-018-0068-3. | Human | Obesity | ||
Mialich 2018 J Electr Bioimp | 2018 | Mialich MS, Silva BR, Jordao AA (2018) Cutoff points of BMI for classification of nutritional status using bioelectrical impedance analysis. J Electr Bioimp 9:24-30. | Human | Fat | Obesity | |
NCD-RisC 2017 Lancet | 2017 | NCD Risk Factor Collaboration (NCD-RisC) (2017) Worldwide trends in body-mass index, underweight, overweight, and obesity from 1975 to 2016: a pooled analysis of 2416 population-based measurement studies in 128·9 million children, adolescents, and adults. Lancet 390:2627–42. | Human | Obesity | ||
Wollner 2017 J Public Health Res | 2017 | Wollner M, Paulo Roberto BB, Alysson Roncally SC, Jurandir N, Edil LS (2017) Accuracy of the WHO's body mass index cut-off points to measure gender- and age-specific obesity in middle-aged adults living in the city of Rio de Janeiro, Brazil. J Public Health Res 6:904. | Human | Fat | Obesity | |
Distefano 2016 J Gerontol A Biol Sci Med Sci | 2016 | Distefano G, Standley RA, Dubé JJ, Carnero EA, Ritov VB, Stefanovic-Racic M, Toledo FG, Piva SR, Goodpaster BH, Coen PM (2016) Chronological age does not influence ex-vivo mitochondrial respiration and quality control in skeletal muscle. J Gerontol A Biol Sci Med Sci 72:535-42. | Human | Skeletal muscle | Aging;senescence | |
Korre 2016 Am J Cardiol | 2016 | Korre M, Porto LG, Farioli A, Yang J, Christiani DC, Christophi CA, Lombardi DA, Kovacs RJ, Mastouri R, Abbasi S, Steigner M, Moffatt S, Smith D, Kales SN (2016) Effect of body mass index on left ventricular mass in career male firefighters. Am J Cardiol 118:1769-1773. | Human | Heart | Cardiovascular Obesity | |
Indian Academy of Pediatrics Growth Charts Committee 2015 Indian Pediatr | 2015 | Indian Academy of Pediatrics Growth Charts Committee, Khadilkar V, Yadav S, Agrawal KK, Tamboli S, Banerjee M, Cherian A, Goyal JP, Khadilkar A, Kumaravel V, Mohan V, Narayanappa D, Ray I, Yewale V (2015) Revised IAP growth charts for height, weight and body mass index for 5- to 18-year-old Indian children. Indian Pediatr 52:47-55. | Human | Aging;senescence Obesity | ||
Gnaiger 2015 Scand J Med Sci Sports | 2015 | Gnaiger E, Boushel R, Søndergaard H, Munch-Andersen T, Damsgaard R, Hagen C, Díez-Sánchez C, Ara I, Wright-Paradis C, Schrauwen P, Hesselink M, Calbet JAL, Christiansen M, Helge JW, Saltin B (2015) Mitochondrial coupling and capacity of oxidative phosphorylation in skeletal muscle of Inuit and caucasians in the arctic winter. https://doi.org/10.1111/sms.12612 | Human | Skeletal muscle | Temperature | |
Mialich 2014 Nutr Hosp | 2014 | Mialich MS, Martinez EZ, Jordao JJ (2014) Application of body mass index adjusted for fat mass (BMIfat) obtained by bioelectrical impedance in adults. Nutr Hosp 30:417-24. | Human | Fat | Obesity | |
Andersen 2013 Int J Circumpolar Health | 2013 | Andersen S, Fleischer Rex K, Noahsen P, Sørensen HC, Mulvad G, Laurberg P (2013) Raised BMI cut-off for overweight in Greenland Inuit--a review. Int J Circumpolar Health 2013 Aug 5;72. doi: 10.3402/ijch.v72i0.21086. | Obesity | |||
Loe 2013 PLOS ONE | 2013 | Loe H, Rognmo Ø, Saltin B, Wisløff U (2013) Aerobic capacity reference data in 3816 healthy men and women 20-90 years. PLOS ONE 8:e64319. | Human | |||
Pesta 2011 Am J Physiol Regul Integr Comp Physiol | 2011 | Pesta D, Hoppel F, Macek C, Messner H, Faulhaber M, Kobel C, Parson W, Burtscher M, Schocke M, Gnaiger E (2011) Similar qualitative and quantitative changes of mitochondrial respiration following strength and endurance training in normoxia and hypoxia in sedentary humans. Am J Physiol Regul Integr Comp Physiol 301:R1078–87. | Human | Skeletal muscle | Hypoxia | Obesity |
Pribis 2010 Nutrients | 2010 | Pribis P, Burtnack CA, McKenzie SO, Thayer J (2010) Trends in body fat, body mass index and physical fitness among male and female college students. Nutrients 2:1075-85. | Human | Obesity | ||
Meeuwsen 2010 Clin Nutr | 2010 | Meeuwsen S, Horgan GW, Elia M (2010) The relationship between BMI and percent body fat, measured by bioelectrical impedance, in a large adult sample is curvilinear and influenced by age and sex. Clin Nutr 29:560-6. | Human | Fat | Aging;senescence Obesity | |
Gnaiger 2009 Int J Biochem Cell Biol | 2009 | Gnaiger E (2009) Capacity of oxidative phosphorylation in human skeletal muscle. New perspectives of mitochondrial physiology. Int J Biochem Cell Biol 41:1837-45. https://doi.org/10.1016/j.biocel.2009.03.013 | Human Mouse | Skeletal muscle | Aging;senescence Obesity | |
Bosy-Westphal 2009 Br J Nutr | 2009 | Bosy-Westphal A, Plachta-Danielzik S, Dörhöfer RP, Müller MJ (2009) Short stature and obesity: positive association in adults but inverse association in children and adolescents. Br J Nutr 102:453-61. | Fat | Obesity | ||
Raboel 2009 Diabetes Obes Metab | 2009 | Raboel R, Hojberg PM, Almdal T, Boushel RC, Haugaard SB, Madsbad S, Dela F (2009) Improved glycaemic control decreases inner mitochondrial membrane leak in type 2 diabetes. Diabetes Obes Metab 11:355-60. | Human | Skeletal muscle | Mitochondrial disease | Diabetes |
Romero-Corral 2008 Int J Obes (Lond) | 2008 | Romero-Corral A, Somers VK, Sierra-Johnson J, Thomas RJ, Collazo-Clavell ML, Korinek J, Allison TG, Batsis JA, Sert-Kuniyoshi FH, Lopez-Jimenez F (2008) Accuracy of body mass index in diagnosing obesity in the adult general population. Int J Obes (Lond) 32:959-66. | Human | Fat | Obesity | |
Daussin 2008 Am J Physiol Regul Integr Comp Physiol | 2008 | Daussin FN, Zoll J, Dufour SP, Ponsot E, Lonsdorfer-Wolf E, Doutreleau S, Mettauer B, Piquard F, Geny B, Richard R (2008) Effect of interval versus continuous training on cardiorespiratory and mitochondrial functions: relationship to aerobic performance improvements in sedentary subjects. Am J Physiol Regul Integr Comp Physiol 295:R264-72. | Human | Skeletal muscle | ||
Boushel 2007 Diabetologia | 2007 | Boushel RC, Gnaiger E, Schjerling P, Skovbro M, Kraunsoee R, Dela F (2007) Patients with Type 2 diabetes have normal mitochondrial function in skeletal muscle. Diabetologia 50:790-6. | Human | Skeletal muscle | Diabetes Obesity | |
De Onis 2007 Bull World Health Organization | 2007 | de Onis M, Onyango AW, Borghi E, Siyam A, Nishida C, Siekmann J (2007) Development of a WHO growth reference for school-aged children and adolescents. Bull World Health Organization 85:660-7. | Human | Obesity | ||
Bakkman 2007 ActaPhysiol | 2007 | Bakkman L, Sahlin K, Holmberg HC, Tonkonogi M (2007) Quantitative and qualitative adaptation of human skeletal muscle mitochondria to hypoxic compared with normoxic training at the same relative work rate. Acta Physiol (Oxford) 190:243–51. | Human | Skeletal muscle | Oxidative stress;RONS | |
Mogensen 2006 J Physiol | 2006 | Mogensen M, Bagger M, Pedersen PK, Fernström M, Sahlin K (2006) Cycling efficiency in humans is related to low UCP3 content and to type I fibres but not to mitochondrial efficiency. J Physiol 571:669-81. | Human | Skeletal muscle | ||
Ponsot 2006 J Appl Physiol (1985) | 2006 | Ponsot E, Dufour SP, Zoll J, Doutrelau S, N'Guessan B, Geny B, Hoppeler H, Lampert E, Mettauer B, Ventura-Clapier R, Richard R (2006) Exercise training in normobaric hypoxia in endurance runners. II. Improvement of mitochondrial properties in skeletal muscle. J Appl Physiol (1985) 100:1249-57. | Human | Skeletal muscle | Hypoxia | |
Garnier 2005 FASEB J | 2005 | Garnier A, Fortin D, Zoll J, N'Guessan B, Mettauer B, Lampert E, Veksler V, Ventura-Clapier R (2005) Coordinated changes in mitochondrial function and biogenesis in healthy and diseased human skeletal muscle. FASEB J 19:43-52. | Human | Skeletal muscle | ||
N'Guessan 2004 Mol Cell Biochem | 2004 | N'Guessan B, Zoll J, Ribera F, Ponsot E, Lampert E, Ventura-Clapier R, Veksler V, Mettauer B (2004) Evaluation of quantitative and qualitative aspects of mitochondrial function in human skeletal and cardiac muscles. Mol Cell Biochem 256-257:267-80. | Human | Skeletal muscle | ||
Rasmussen 2003 Eur J Physiol | 2003 | Rasmussen UF, Krustrup P, Kjaer M, Rasmussen HN (2003) Human skeletal muscle mitochondrial metabolism in youth and senescence: no signs of functional changes in ATP formation and mitochondrial oxidative capacity. Pflugers Arch – Eur J Physiol 446:270-78. | Human | Skeletal muscle | Aging;senescence | |
Zoll 2002 J Physiol | 2002 | Zoll J, Sanchez H, N'Guessan B, Ribera F, Lampert E, Bigard X, Surrurier B, Fortin D, Geny B, Veksler V, Ventura-Clapier R, Mettauer B (2002) Physical activity changes the regulation of mitochondrial respiration in human skeletal muscle. J Physiol 543:191-200. | Human | Skeletal muscle | ||
Mettauer 2001 J Am Coll Cardiol | 2001 | Mettauer B, Zoll J, Sanchez H, Lampert E, Ribera F, Veksler V, Bigard X, Mateo P, Epailly E, Lonsdorfer J, Ventura-Clapier R (2001) Oxidative capacity of skeletal muscle in heart failure patients versus sedentary or active control subjects. J Am Coll Cardiol 38:947-54. | Human | Skeletal muscle | Cardiovascular | |
Deurenberg 2001 Eur J Clin Nutr | 2001 | Deurenberg P, Andreoli A, Borg P, Kukkonen-Harjula K, de Lorenzo A, van Marken Lichtenbelt WD, Testolin G, Vigano R, Vollaard N (2001) The validity of predicted body fat percentage from body mass index and from impedance in samples of five European populations. Eur J Clin Nutr 55:973-9. | Human | Fat | Obesity | |
Rasmussen 2001 Am J Physiol Endocrinol Metab | 2001 | Rasmussen UF, Rasmussen HN, Krustrup P, Quistorff B, Saltin B, Bangsbo J (2001) Aerobic metabolism of human quadriceps muscle: in vivo data parallel measurements on isolated mitochondria. Am J Physiol Endocrinol Metab 280:E301-7. | Human | Skeletal muscle | ||
Gallagher 2000 Am J Clin Nutr | 2000 | Gallagher D, Heymsfield SB, Heo M, Jebb SA, Murgatroyd PR, Sakamoto Y (2000) Healthy percentage body fat ranges: an approach for developing guidelines based on body mass index. Am J Clin Nutr 72:694-701. | Human | Fat | Obesity | |
Cole 2000 BMJ | 2000 | Cole TJ, Bellizzi MC, Flegal KM, Dietz WH (2000) Establishing a standard definition for child overweight and obesity worldwide: international survey. BMJ 320:1240-3. | Human | Obesity | ||
Zucker 1962 Committee on Biological Handbooks, Fed Amer Soc Exp Biol | 1962 | Zucker TF (1962) Regression of standing and sitting weights on body weight: man. In: Growth including reproduction and morphological development. Altman PL, Dittmer DS, eds: Committee on Biological Handbooks, Fed Amer Soc Exp Biol:336-7. | Human |
- Abstracts BME
Sort in ascending/descending order by a click on one of the small symbols in squares below. Default sorting: chronological. Empty fields appear first in ascending order.
Year | Reference | Organism | Tissue;cell | Stress | Diseases | |
---|---|---|---|---|---|---|
Gnaiger 2019 MiP2019 | 2019 | OXPHOS capacity in human muscle tissue and body mass excess – the MitoEAGLE mission towards an integrative database (Version 6; 2020-01-12). | Human | Skeletal muscle | Obesity |
Publications MitoEAGLE VO2max/BME data base
Sort in ascending/descending order by a click on one of the small symbols in squares below. Default sorting: chronological. Empty fields appear first in ascending order.
Year | Reference | Organism | Tissue;cell | Stress | Diseases | |
---|---|---|---|---|---|---|
Gnaiger 2015 Scand J Med Sci Sports | 2015 | Gnaiger E, Boushel R, Søndergaard H, Munch-Andersen T, Damsgaard R, Hagen C, Díez-Sánchez C, Ara I, Wright-Paradis C, Schrauwen P, Hesselink M, Calbet JAL, Christiansen M, Helge JW, Saltin B (2015) Mitochondrial coupling and capacity of oxidative phosphorylation in skeletal muscle of Inuit and caucasians in the arctic winter. https://doi.org/10.1111/sms.12612 | Human | Skeletal muscle | Temperature | |
Pesta 2011 Am J Physiol Regul Integr Comp Physiol | 2011 | Pesta D, Hoppel F, Macek C, Messner H, Faulhaber M, Kobel C, Parson W, Burtscher M, Schocke M, Gnaiger E (2011) Similar qualitative and quantitative changes of mitochondrial respiration following strength and endurance training in normoxia and hypoxia in sedentary humans. Am J Physiol Regul Integr Comp Physiol 301:R1078–87. | Human | Skeletal muscle | Hypoxia | Obesity |
Raboel 2009 Diabetes Obes Metab | 2009 | Raboel R, Hojberg PM, Almdal T, Boushel RC, Haugaard SB, Madsbad S, Dela F (2009) Improved glycaemic control decreases inner mitochondrial membrane leak in type 2 diabetes. Diabetes Obes Metab 11:355-60. | Human | Skeletal muscle | Mitochondrial disease | Diabetes |
Daussin 2008 Am J Physiol Regul Integr Comp Physiol | 2008 | Daussin FN, Zoll J, Dufour SP, Ponsot E, Lonsdorfer-Wolf E, Doutreleau S, Mettauer B, Piquard F, Geny B, Richard R (2008) Effect of interval versus continuous training on cardiorespiratory and mitochondrial functions: relationship to aerobic performance improvements in sedentary subjects. Am J Physiol Regul Integr Comp Physiol 295:R264-72. | Human | Skeletal muscle | ||
Boushel 2007 Diabetologia | 2007 | Boushel RC, Gnaiger E, Schjerling P, Skovbro M, Kraunsoee R, Dela F (2007) Patients with Type 2 diabetes have normal mitochondrial function in skeletal muscle. Diabetologia 50:790-6. | Human | Skeletal muscle | Diabetes Obesity | |
Bakkman 2007 ActaPhysiol | 2007 | Bakkman L, Sahlin K, Holmberg HC, Tonkonogi M (2007) Quantitative and qualitative adaptation of human skeletal muscle mitochondria to hypoxic compared with normoxic training at the same relative work rate. Acta Physiol (Oxford) 190:243–51. | Human | Skeletal muscle | Oxidative stress;RONS | |
Ponsot 2006 J Appl Physiol (1985) | 2006 | Ponsot E, Dufour SP, Zoll J, Doutrelau S, N'Guessan B, Geny B, Hoppeler H, Lampert E, Mettauer B, Ventura-Clapier R, Richard R (2006) Exercise training in normobaric hypoxia in endurance runners. II. Improvement of mitochondrial properties in skeletal muscle. J Appl Physiol (1985) 100:1249-57. | Human | Skeletal muscle | Hypoxia | |
Mogensen 2006 J Physiol | 2006 | Mogensen M, Bagger M, Pedersen PK, Fernström M, Sahlin K (2006) Cycling efficiency in humans is related to low UCP3 content and to type I fibres but not to mitochondrial efficiency. J Physiol 571:669-81. | Human | Skeletal muscle | ||
Garnier 2005 FASEB J | 2005 | Garnier A, Fortin D, Zoll J, N'Guessan B, Mettauer B, Lampert E, Veksler V, Ventura-Clapier R (2005) Coordinated changes in mitochondrial function and biogenesis in healthy and diseased human skeletal muscle. FASEB J 19:43-52. | Human | Skeletal muscle | ||
N'Guessan 2004 Mol Cell Biochem | 2004 | N'Guessan B, Zoll J, Ribera F, Ponsot E, Lampert E, Ventura-Clapier R, Veksler V, Mettauer B (2004) Evaluation of quantitative and qualitative aspects of mitochondrial function in human skeletal and cardiac muscles. Mol Cell Biochem 256-257:267-80. | Human | Skeletal muscle | ||
Rasmussen 2004 Comp Biochem Physiol | 2004 | Rasmussen UF, Vielwerth SE, Rasmussen HN (2004) Skeletal muscle bioenergetics: a comparative study of mitochondria isolated from pigeon pectoralis, rat soleus, rat biceps brachii, pig biceps femoris and human quadriceps. Comp Biochem Physiol A Molec Integr Physiol 137:435-46. | Human Pig Rat Birds | Skeletal muscle | ||
Rasmussen 2003 Eur J Physiol | 2003 | Rasmussen UF, Krustrup P, Kjaer M, Rasmussen HN (2003) Human skeletal muscle mitochondrial metabolism in youth and senescence: no signs of functional changes in ATP formation and mitochondrial oxidative capacity. Pflugers Arch – Eur J Physiol 446:270-78. | Human | Skeletal muscle | Aging;senescence | |
Echaniz-Laguna 2002 Ann Neurol | 2002 | Echaniz-Laguna A, Zoll J, Ribera F, Tranchant C, Warter JM, Lonsdorfer J, Lampert E (2002) Mitochondrial respiratory chain function in skeletal muscle of ALS patients. Ann Neurol 52:623-7. | Human | Skeletal muscle | Neurodegenerative | |
Zoll 2002 J Physiol | 2002 | Zoll J, Sanchez H, N'Guessan B, Ribera F, Lampert E, Bigard X, Surrurier B, Fortin D, Geny B, Veksler V, Ventura-Clapier R, Mettauer B (2002) Physical activity changes the regulation of mitochondrial respiration in human skeletal muscle. J Physiol 543:191-200. | Human | Skeletal muscle | ||
Mettauer 2001 J Am Coll Cardiol | 2001 | Mettauer B, Zoll J, Sanchez H, Lampert E, Ribera F, Veksler V, Bigard X, Mateo P, Epailly E, Lonsdorfer J, Ventura-Clapier R (2001) Oxidative capacity of skeletal muscle in heart failure patients versus sedentary or active control subjects. J Am Coll Cardiol 38:947-54. | Human | Skeletal muscle | Cardiovascular | |
Rasmussen 2001 Am J Physiol Endocrinol Metab | 2001 | Rasmussen UF, Rasmussen HN, Krustrup P, Quistorff B, Saltin B, Bangsbo J (2001) Aerobic metabolism of human quadriceps muscle: in vivo data parallel measurements on isolated mitochondria. Am J Physiol Endocrinol Metab 280:E301-7. | Human | Skeletal muscle | ||
Rasmussen 2001 Pflugers Arch | 2001 | Rasmussen UF, Krustrup P, Bangsbo J, Rasmussen HN (2001) The effect of high-intensity exhaustive exercise studied in isolated mitochondria from human skeletal muscle. Pflugers Arch 443:180-7. | Human | Skeletal muscle | ||
Rasmussen 2000 Mol Cell Biochem | 2000 | Rasmussen UF, Rasmussen HN (2000) Human quadriceps muscle mitochondria: a functional characterization. Mol Cell Biochem 208:37-44. | Human | Skeletal muscle |
Publications BMI
Sort in ascending/descending order by a click on one of the small symbols in squares below. Default sorting: chronological. Empty fields appear first in ascending order.
Year | Reference | Organism | Tissue;cell | Stress | Diseases | |
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Xia 2024 Nat Metab | 2024 | Xia W, Veeragandham P, Cao Y, Yayun Xu Y, Rhyne TE, Qian J, Hung C-W, Zhao P, Jones Y, Gao H, Liddle C, Yu RT, Downes M, Evans RM, Rydén M, Wabitsch M, Wang Z, Hakozaki H, Schöneberg J, Reilly SM, Huang J, Saltiel AR (2024) Obesity causes mitochondrial fragmentation and dysfunction in white adipocytes due to RalA activation. Nat Metab 6:273–89. https://doi.org/10.1038/s42255-024-00978-0 | Human Mouse | Fat | Mitochondrial disease | Obesity |
National Academies of Sciences, Engineering, and Medicine 2024 Body composition and obesity | 2024 | National Academies of Sciences, Engineering, and Medicine (2024) Exploring the science on measures of body composition, body fat distribution, and obesity. National Academies Press, Washington, DC https://doi.org/10.17226/27461. | Human | Fat | Obesity | |
National Academies of Sciences, Engineering, and Medicine 2023 BMI and beyond | 2023 | National Academies of Sciences, Engineering, and Medicine (2023) BMI and beyond: Considering context in measuring obesity and its applications: Proceedings of a workshop—in brief. The National Academies Press, Washington, DC. https://doi.org/10.17226/27185 | Human | Fat | Obesity | |
Mendham 2021 Diabetologia | 2021 | Mendham AE, Goedecke JH, Zeng Y, Larsen S, George C, Hauksson J, Fortuin-de Smidt MC, Chibalin AV, Olsson T, Chorell E (2021) Exercise training improves mitochondrial respiration and is associated with an altered intramuscular phospholipid signature in women with obesity. Diabetologia 64:1642-59. | Human | Skeletal muscle | Obesity | |
Wiebe 2021 JAMA Netw Open | 2021 | Wiebe N, Ye F, Crumley ET, Bello A, Stenvinkel P, Tonelli M (2021) Temporal associations among body mass index, fasting insulin, and systemic inflammation. A systematic review and meta-analysis. JAMA Netw Open 4:e211263. doi:10.1001/jamanetworkopen.2021.1263. | Diabetes Obesity | |||
Bahrami 2020 JAMA Psychiatry | 2020 | Bahrami S, Steen NE, Shadrin A, O'Connell K, Frei O, Bettella F, Wirgenes KV, Krull F, Fan CC, Dale AM, Smeland OB, Djurovic S, Andreassen OA (2020) Shared genetic loci between body mass index and major psychiatric disorders: a genome-wide association study. JAMA Psychiatry 2020 Jan 8. doi: 10.1001/jamapsychiatry.2019.4188. | Human | Cardiovascular Neurodegenerative Obesity | ||
Chambers 2020 J Appl Physiol (1985) | 2020 | Chambers TL, Burnett TR, Raue U, Lee GA, Finch WH, Graham BM, Trappe TA, Trappe S (2020) Skeletal muscle size, function, and adiposity with lifelong aerobic exercise. J Appl Physiol (1985) 128:368–78. | Human | Skeletal muscle Fat | Aging;senescence | |
Meng 2020 JAMA Netw Open | 2020 | Meng R, Yu C, Liu N, He M, Lv J, Guo Y, Bian Z, Yang L, Chen Y, Zhang X, Chen Z, Wu T, Pan A, Li L, China Kadoorie Biobank Collaborative Group (2020) Association of depression with all-cause and cardiovascular disease mortality among adults in China. JAMA Netw Open 3:e1921043. | Human | Cardiovascular Neurodegenerative | ||
Floud 2019 Neurology | 2020 | Floud S, Simpson RF, Balkwill A, Brown A, Goodill A, Gallacher J, Sudlow C, Harris P, Hofman A, Parish S, Reeves GK, Green J, Peto R, Beral V (2019) Body mass index, diet, physical inactivity, and the incidence of dementia in 1 million UK women. Neurology 94:e1-e10. doi:10.1212. | Human | Aging;senescence Alzheimer's Neurodegenerative Obesity | ||
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Khan 2020 Cureus | 2020 | Khan QU, Zaffar S, Rehan AM, Rashid RR, Ashraf H, Hafeez F (2020) Relationship of major depression with body mass index and salivary cortisol. Cureus 12:e6577. | Human | Neurodegenerative Obesity | ||
Mendham 2020 Sci Rep | 2020 | Mendham Amy E, Larsen Steen, George Cindy, Adams Kevin, Hauksson Jon, Olsson Tommy, Fortuin-de Smidt Melony C, Nono Nankam Pamela A, Hakim Olah, Goff Louise M, Pheiffer Carmen, Goedecke Julia H (2020) Exercise training results in depot-specific adaptations to adipose tissue mitochondrial function. Sci Rep 10:3785. | Fat | Diabetes Obesity | ||
Kong 2020 JAMA Netw Open | 2020 | Kong L, Nilsson IAK, Brismar K, Gissler M, Lavebratt C (2020) Associations of different types of maternal diabetes and body mass index with offspring psychiatric disorders. JAMA Netw Open 2020 Feb 5;3(2):e1920787. | Human | Autism Diabetes Neurodegenerative Obesity | ||
Murthy 2020 JAMA Cardiol | 2020 | Murthy VL, Xia R, Baldridge AS, Carnethon MR, Sidney S, Bouchard C, Sarzynski MA, Lima JAC, Lewis GD, Shah SJ, Fornage M, Shah RV (2020) Polygenic risk, fitness, and obesity in the Coronary Artery Risk Development In Young Adults (CARDIA) study. JAMA Cardiol 5:40-8. doi: 10.1001/jamacardio.2019.5220 | Human | Cardiovascular Obesity | ||
Corlin 2020 JAMA Cardiol | 2020 | Corlin Laura, Short Meghan I, Vasan Ramachandran S, Xanthakis Vanessa (2020) Association of the duration of ideal cardiovascular health through adulthood with cardiometabolic outcomes and mortality in the Framingham offspring study. JAMA Cardiol Published online March 11, 2020. | Human | Aging;senescence Cardiovascular Diabetes Other | ||
Stefan 2020 Nat Rev Endocrinol | 2020 | Stefan N, Birkenfeld AL, Schulze MB, Ludwig DS (2020) Obesity and impaired metabolic health in patients with COVID-19. Nat Rev Endocrinol 2020:1‐2 [published online ahead of print, 2020 Apr 23]. | Human | Cardiovascular Diabetes Infectious Obesity | ||
Wells 2020 Lancet | 2020 | Wells JC, Sawaya AL, Wibaek R, Mwangome M, Poullas MS, Yajnik CS, Demaio A (2020) The double burden of malnutrition: aetiological pathways and consequences for health. Lancet 395:75-88. | Human | Fat | ||
Qingxian 2020 Lancet | 2020 | Qingxian Cai, Chen Fengjuan, Fang Luo, Xiaohui Liu, Tao Wang, Qikai Wu, Qing He, Zhaoqin Wang, Yingxia Liu, Jun Chen, Lei Liu, Lin Xu (2020) Obesity and COVID-19 severity in a designated hospital in Shenzhen, China. Lancet Preprint at SSRN https://doi.org/10.2139/ssrn.3556658. | Human | Infectious Obesity | ||
Popkin 2020 Lancet | 2020 | Popkin BM, Corvalan C, Grummer-Strawn LM (2020) Dynamics of the double burden of malnutrition and the changing nutrition reality. Lancet 395:65-74. | Human | Obesity | ||
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Petrilli 2020 medRxiv | 2020 | Petrilli Christopher M, Jones Simon A, Yang Jie, Rajagopalan Harish, O'Donnell Luke F, Chernyak Yelena, Tobin Katie, Cerfolio Robert J, Francois Fritz, Horwitz Leora I (2020) Factors associated with hospitalization and critical illness among 4,103 patients with COVID-19 disease in New York City. medRxiv doi: https://doi.org/10.1101/2020.04.08.20057794 . | Human | Aging;senescence Infectious Obesity | ||
Cox 2020 JAMA Netw Open | 2020 | Cox Bianca, Luyten Leen J, Dockx Yinthe, Provost Eline, Madhloum Narjes, De Boever Patrick, Neven Kristof Y, Sassi Franco, Sleurs Hanne, Vrijens Karen, Vineis Paolo, Plusquin Michelle, Nawrot Tim S (2020) Association between maternal prepregnancy body mass index and anthropometric parameters, blood pressure, and retinal microvasculature in children age 4 to 6 years. JAMA Netw Open 3:e204662 | Human | Cardiovascular Obesity Other | ||
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Ejarque 2019 Int J Obes (Lond) | 2019 | Ejarque M, Ceperuelo-Mallafré V, Serena C, Maymo-Masip E, Duran X, Díaz-Ramos A, Millan-Scheiding M, Núñez-Álvarez Y, Núñez-Roa C, Gama P, Garcia-Roves PM, Peinado MA, Gimble JM, Zorzano A, Vendrell J, Fernández-Veledo S (2019) Adipose tissue mitochondrial dysfunction in human obesity is linked to a specific DNA methylation signature in adipose-derived stem cells. Int J Obes (Lond) 43:1256-68. | Human | Fat | Obesity | |
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Cruz-Jentoft 2019 Age Ageing | 2019 | Cruz-Jentoft AJ, Bahat G, Bauer J, Boirie Y, OBruyère O, Cederholm T, Cooper C, Landi F, Rolland Y, Sayer AA, Schneider SM, Sieber CC, Topinkova E, Vandewoude M, Visser M, Zamboni M (2019) Sarcopenia: revised European consensus on definition and diagnosis. Age Ageing 48:16–31. | Human | Skeletal muscle | Aging;senescence Myopathy | |
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Hood 2019 Nutr Diabetes | 2019 | Hood K, Ashcraft J, Watts K, Hong S, Choi W, Heymsfield SB, Gautam RK, Thomas D (2019) Allometric scaling of weight to height and resulting body mass index thresholds in two Asian populations. Nutr Diabetes 9:2. doi: 10.1038/s41387-018-0068-3. | Human | Obesity | ||
Weir 2019 StatPearls | 2019 | Weir CB, Jan A (2019) BMI classification percentile and cut off points. StatPearls 2019 Dec 7. | Human | Obesity | ||
Yang 2019 JAMA Netw Open | 2019 | Yang J, Christophi CA, Farioli A, Baur DM, Moffatt S, Zollinger TW, Kales SN (2019) Association between push-up exercise capacity and future cardiovascular events among active adult men. JAMA Netw Open 2019;2:e188341. | Human | Cardiovascular Obesity | ||
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NCD-RisC 2019 Nature | 2019 | NCD Risk Factor Collaboration (NCD-RisC)(2019) Rising rural body-mass index is the main driver of the global obesity epidemic in adults. Nature 569:260-4. | Human | Obesity | ||
Misra 2019 J Postgrad Med | 2019 | Misra P, Singh AK, Archana S, Lohiya A, Kant S (2019) Relationship between body mass index and percentage of body fat, estimated by bio-electrical impedance among adult females in a rural community of North India: A cross-sectional study. J Postgrad Med 65:134-40. | Human | Fat | Obesity | |
Kenny 2019 Circ Res | 2019 | Kenny HC, Abel ED (2019) Heart failure in Type 2 Diabetes Mellitus. Circ Res 124:121–41. | Human | Heart | Cell death Oxidative stress;RONS | Cardiovascular Diabetes Obesity |
Winnica 2019 Antioxid Redox Signal | 2019 | Winnica D, Corey C, Mullett S, Reynolds M, Hill G, Wendell S, Que L, Holguin F, Shiva S (2019) Bioenergetic differences in the airway epithelium of lean versus obese asthmatics are driven by nitric oxide and reflected in circulating platelets. Antioxid Redox Signal 31:673–86. | Human | Lung;gill Endothelial;epithelial;mesothelial cell Blood cells Platelet | Obesity Other | |
Mahapatra 2018 Clin Sci (Lond) | 2018 | Mahapatra G, Smith SC, Hughes TM, Wagner B, Maldjian JA, Freedman BI, Molina AJA (2018) Blood-based bioenergetic profiling is related to differences in brain morphology in African Americans with Type 2 diabetes. Clin Sci (Lond) 132:2509-18. https://doi.org/10.1042/CS20180690 | Human | Nervous system Blood cells | Aging;senescence Diabetes | |
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Madeo 2018 Science | 2018 | Madeo F, Eisenberg T, Pietrocola F, Kroemer G (2018) Spermidine in health and disease. Science 359:eaan2788. | Human | Aging;senescence Cancer Cardiovascular Obesity | ||
Pearson-Stuttard 2018 Lancet Diabetes Endocrinol | 2018 | Pearson-Stuttard J, Zhou B, Kontis V, Bentham J, Gunter MJ, Ezzati M (2018) Worldwide burden of cancer attributable to diabetes and high body-mass index: a comparative risk assessment. Lancet Diabetes Endocrinol 6:e6-e15. | Human | Aging;senescence Cancer Diabetes Obesity | ||
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Gonzalez-Freire 2018 Aging Cell | 2018 | Gonzalez-Freire M, Scalzo P, D'Agostino J, Moore ZA, Diaz-Ruiz A, Fabbri E, Zane A, Chen B, Becker KG, Lehrmann E, Zukley L, Chia CW, Tanaka T, Coen PM, Bernier M, de Cabo R, Ferrucci L (2018) Skeletal muscle ex vivo mitochondrial respiration parallels decline in vivo oxidative capacity, cardiorespiratory fitness, and muscle strength: the Baltimore longitudinal study of aging. Aging Cell 17. | Human | Skeletal muscle | Aging;senescence | |
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Tompuri 2015 Clin Physiol Funct Imaging | 2015 | Tompuri T, Lintu N, Savonen K, Laitinen T, Laaksonen D, Jääskeläinen J, Lakka TA (2015) Measures of cardiorespiratory fitness in relation to measures of body size and composition among children. Clin Physiol Funct Imaging 35:469-77. | Human | Obesity | ||
Van de Weijer 2015 Diabetes | 2015 | van de Weijer T, Phielix E, Bilet L, Williams EG, Ropelle ER, Bierwagen A, Livingstone R, Nowotny P, Sparks LM, Paglialunga S, Szendroedi J, Havekes B, Moullan N, Pirinen E, Hwang JH, Schrauwen-Hinderling VB, Hesselink MK, Auwerx J, Roden M, Schrauwen P (2015) Evidence for a direct effect of the NAD+ precursor acipimox on muscle mitochondrial function in humans. Diabetes 64:1193-201. | Human | Skeletal muscle | Diabetes | |
Irving 2015 J Clin Endocrinol Metab | 2015 | Irving BA, Lanza IR, Henderson GC, Rao RR, Spiegelman BM, Nair KS (2015) Combined training enhances skeletal muscle mitochondrial oxidative capacity independent of age. J Clin Endocrinol Metab 100:1654-63. | Human | Skeletal muscle | ||
Indian Academy of Pediatrics Growth Charts Committee 2015 Indian Pediatr | 2015 | Indian Academy of Pediatrics Growth Charts Committee, Khadilkar V, Yadav S, Agrawal KK, Tamboli S, Banerjee M, Cherian A, Goyal JP, Khadilkar A, Kumaravel V, Mohan V, Narayanappa D, Ray I, Yewale V (2015) Revised IAP growth charts for height, weight and body mass index for 5- to 18-year-old Indian children. Indian Pediatr 52:47-55. | Human | Aging;senescence Obesity | ||
Al-Gindan 2015 Br J Nutr | 2015 | Al-Gindan YY, Hankey CR, Govan L, Gallagher D, Heymsfield SB, Lean ME (2015) Derivation and validation of simple anthropometric equations to predict adipose tissue mass and total fat mass with MRI as the reference method. Br J Nutr 114:1852-67. | Human | Fat | Obesity | |
Ludzki 2015 Diabetes | 2015 | Ludzki A, Paglialunga S, Smith BK, Herbst EA, Allison MK, Heigenhauser GJ, Neufer PD, Holloway GP (2015) Rapid repression of ADP transport by palmitoyl-CoA is attenuated by exercise training in humans; a potential mechanism to decrease oxidative stress and improve skeletal muscle insulin signaling. Diabetes 64:2769-79. | Human Mouse | Skeletal muscle | Diabetes | |
Gnaiger 2015 Scand J Med Sci Sports | 2015 | Gnaiger E, Boushel R, Søndergaard H, Munch-Andersen T, Damsgaard R, Hagen C, Díez-Sánchez C, Ara I, Wright-Paradis C, Schrauwen P, Hesselink M, Calbet JAL, Christiansen M, Helge JW, Saltin B (2015) Mitochondrial coupling and capacity of oxidative phosphorylation in skeletal muscle of Inuit and caucasians in the arctic winter. https://doi.org/10.1111/sms.12612 | Human | Skeletal muscle | Temperature | |
Heymsfield 2014 Am J Clin Nutr | 2014 | Heymsfield SB, Peterson CM, Thomas DM, Heo M, Schuna JM Jr, Hong S, Choi W (2014) Scaling of adult body weight to height across sex and race/ethnic groups: relevance to BMI. Am J Clin Nutr 100:1455-61. | Human | |||
Kuper 2014 BMC Public Health | 2014 | Kuper H, Taylor A, Krishna KV, Ben-Shlomo Y, Gupta R, Kulkarni B, Prabhakaran D, Davey Smith G, Wells J, Ebrahim S, Kinra S (2014) Is vulnerability to cardiometabolic disease in Indians mediated by abdominal adiposity or higher body adiposity. BMC Public Health 14:1239. | Human | Fat | Cardiovascular Obesity | |
Keys 2014 Int J Epidemiol | 2014 | Keys A, Fidanza F, Karvonen MJ, Kimura N, Taylor HL (2014) Indices of relative weight and obesity. Int J Epidemiol 43:655-65. | Human | Fat | Obesity | |
Karabatsiakis 2014 Transl Psychiatry | 2014 | Karabatsiakis A, Boeck C, Salinas-Manrique J, Kolassa S, Calzia E, Dietrich DE, Kolassa IT (2014) Mitochondrial respiration in peripheral blood mononuclear cells correlates with depressive subsymptoms and severity of major depression. Transl Psychiatry 4:e397. | Human | Blood cells | Cryopreservation | Neurodegenerative |
Zeng 2014 Br J Nutr | 2014 | Zeng Q, He Y, Dong S, Zhao X, Chen Z, Song Z, Chang G, Yang F, Wang Y (2014) Optimal cut-off values of BMI, waist circumference and waist:height ratio for defining obesity in Chinese adults. Br J Nutr 112:1735-44. | Human | Cardiovascular Diabetes Obesity | ||
Mialich 2014 Nutr Hosp | 2014 | Mialich MS, Martinez EZ, Jordao JJ (2014) Application of body mass index adjusted for fat mass (BMIfat) obtained by bioelectrical impedance in adults. Nutr Hosp 30:417-24. | Human | Fat | Obesity | |
Genne-Bacon 2014 Yale J Biol Med | 2014 | Genné-Bacon EA (2014) Thinking evolutionarily about obesity. Yale J Biol Med 87:99-112. | Human | Obesity | ||
Ludzki 2014 Thesis | 2014 | Ludzki AC (2014) Palmitoyl-CoA inhibition of mitochondrial ADP sensitivity is attenuated by exercise training in human skeletal muscle. Master's Thesis 1-86. | Human Mouse | Skeletal muscle | ||
Gram 2014 Exp Gerontol | 2014 | Gram M, Vigelsoe A, Yokota T, Hansen CN, Helge JW, Hey-Mogensen M, Dela F (2014) Two weeks of one-leg immobilization decreases skeletal muscle 2 respiratory capacity equally in young and elderly men. Exp Gerontol 58C:269-78. | Human | Skeletal muscle | Aging;senescence | |
Dube 2014 Am J Physiol Endocrinol Metab | 2014 | Dube JJ, Coen PM, DiStefano G, Chacon AC, Helbling NL, Desimone ME, Stafanovic-Racic M, Hames KC, Despines AA, Toledo FG, Goodpaster BH (2014) Effects of acute lipid overload on skeletal muscle insulin resistance, metabolic flexibility, and mitochondrial performance. Am J Physiol Endocrinol Metab 307:E1117-24. | Human | Skeletal muscle | Diabetes | |
Broskey 2014 J Clin Endocrinol Metab | 2014 | Broskey NT, Greggio C, Boss A, Boutant M, Dwyer A, Schlueter L, Hans D, Gremion G, Kreis R, Boesch C, Canto AC, Amati F (2014) Skeletal muscle mitochondria in the elderly: effects of physical fitness and exercise training. J Clin Endocrinol Metab 99:1852-61. | Human | Skeletal muscle | Cryopreservation | Aging;senescence |
Andersen 2013 Int J Circumpolar Health | 2013 | Andersen S, Fleischer Rex K, Noahsen P, Sørensen HC, Mulvad G, Laurberg P (2013) Raised BMI cut-off for overweight in Greenland Inuit--a review. Int J Circumpolar Health 2013 Aug 5;72. doi: 10.3402/ijch.v72i0.21086. | Obesity | |||
Loe 2013 PLOS ONE | 2013 | Loe H, Rognmo Ø, Saltin B, Wisløff U (2013) Aerobic capacity reference data in 3816 healthy men and women 20-90 years. PLOS ONE 8:e64319. | Human | |||
Bonthuis 2013 PLOS ONE | 2013 | Bonthuis M, Jager KJ, Abu-Hanna A, Verrina E, Schaefer F, van Stralen KJ (2013) Application of body mass index according to height-age in short and tall children. PLOS ONE 8:e72068. | Human | |||
Setty 2013 Int J Med Sci Public Health | 2013 | Setty P, Padmanabha BV, Doddamani BR (2013) Correlation between obesity and cardio respiratory fitness. Int J Med Sci Public Health 2:300-4. | Human | Obesity | ||
Hernandez-Aguilera 2013 Mediators Inflamm | 2013 | Hernández-Aguilera A, Rull A, Rodríguez-Gallego E, Riera-Borrull M, Luciano-Mateo F, Camps J, Menéndez JA, Joven J (2013) Mitochondrial dysfunction: a basic mechanism in inflammation-related non-communicable diseases and therapeutic opportunities. Mediators Inflamm 2013:135698. | Human | Fat | Oxidative stress;RONS | Obesity |
Dagan 2013 Nutr J | 2013 | Dagan SS, Segev S, Novikov I, Dankner R (2013) Waist circumference vs body mass index in association with cardiorespiratory fitness in healthy men and women: a cross sectional analysis of 403 subjects. Nutr J 12:12. | Human | |||
Afolabi 2013 Int J Sci Engin Res | 2013 | Afolabi BO, Akanbi OG (2013) Effects of body mass index on aerobic power (VO2max) and energy expenditure (EE): a case of manual load lifting in agro-processing. Int J Sci Engin Res 4:1718-21. | Human | |||
Johnson 2013 Obesity (Silver Spring) | 2013 | Johnson RJ, Stenvinkel P, Martin SL, Jani A, Sánchez-Lozada LG, Hill JO, Lanaspa MA (2013) Redefining metabolic syndrome as a fat storage condition based on studies of comparative physiology. Obesity (Silver Spring) 21:659-64. | Human | Obesity | ||
Thomas 2012 Nutr Res Rev | 2012 | Thomas EL, Frost G, Taylor-Robinson SD, Bell JD (2012) Excess body fat in obese and normal-weight subjects. Nutr Res Rev 25:150–61. | Human | Fat | Obesity | |
Phielix 2012 Diabetes | 2012 | Phielix E, Meex R, Ouwens DM, Sparks LM, Hoeks J, Schaart G, Moonen-Kornips E, Hesselink MK, Schrauwen P (2012) High oxidative capacity due to chronic exercise training attenuates lipid-induced insulin resistance. Diabetes 61:2472-8. | Human | Skeletal muscle | Mitochondrial disease | Diabetes |
Tipton 2012 Nursing | 2012 | Tipton PH, Aigner MJ, Finto D, Haislet JA, Pehl L, Sanford P, Williams M (2012) Consider the accuracy of height and weight measurements. Nursing 42:50-2. | Human | |||
Misra 2011 Int J Obes (Lond) | 2011 | Misra A, Khurana L (2011) Obesity-related non-communicable diseases: South Asians vs White Caucasians. Int J Obes (Lond) 35:167–87. | Human | Fat | Cardiovascular Diabetes Obesity | |
Chomentowski 2011 J Clin Endocrinol Metab | 2011 | Chomentowski P, Coen PM, Radiková Z, Goodpaster BH, Toledo FG (2011) Skeletal muscle mitochondria in insulin resistance: Differences in intermyofibrillar versus subsarcolemmal subpopulations and relationship to metabolic flexibility. J Clin Endocrinol Metab 96: 494-503. | Human | Skeletal muscle | Diabetes Obesity | |
Timmers 2011 Cell Metab | 2011 | Timmers S, Konings E, Bilet L, Houtkooper RH, van de Weijer T, Goossens GH, Hoeks J, van der Krieken S, Ryu D, Kersten S, Moonen-Kornips E, Hesselink MK, Kunz I, Schrauwen-Hinderling VB, Blaak EE, Auwerx J, Schrauwen P (2011) Calorie restriction-like effects of 30 days of resveratrol supplementation on energy metabolism and metabolic profile in obese humans. Cell Metab 14:612-22. | Human | Skeletal muscle | Obesity | |
Pesta 2011 Am J Physiol Regul Integr Comp Physiol | 2011 | Pesta D, Hoppel F, Macek C, Messner H, Faulhaber M, Kobel C, Parson W, Burtscher M, Schocke M, Gnaiger E (2011) Similar qualitative and quantitative changes of mitochondrial respiration following strength and endurance training in normoxia and hypoxia in sedentary humans. Am J Physiol Regul Integr Comp Physiol 301:R1078–87. | Human | Skeletal muscle | Hypoxia | Obesity |
Bergman 2011 Obesity (Silver Spring) | 2011 | Bergman RN, Stefanovski D, Buchanan TA, Sumner AE, Reynolds JC, Sebring NG, Xiang AH, Watanabe RM (2011) A better index of body adiposity. Obesity (Silver Spring) 19:1083-9. | Human | Fat | Obesity | |
Studenski 2011 JAMA | 2011 | Studenski Stephanie, Perera Subashan, Patel Kushang, Rosano Caterina, Faulkner Kimberly, Inzitari Marco, Brach Jennifer, Chandler Julie, Cawthon Peggy, Connor Elizabeth Barrett, Nevitt Michael, Visser Marjolein, Kritchevsky Stephen, Badinelli Stefania, Harris Tamara, Newman Anne B, Cauley Jane, Ferrucci Luigi, Guralnik Jack (2011) Gait speed and survival in older adults. JAMA 305:50–8. | Human | Aging;senescence | ||
Meeuwsen 2010 Clin Nutr | 2010 | Meeuwsen S, Horgan GW, Elia M (2010) The relationship between BMI and percent body fat, measured by bioelectrical impedance, in a large adult sample is curvilinear and influenced by age and sex. Clin Nutr 29:560-6. | Human | Fat | Aging;senescence Obesity | |
So 2010 J Sports Sci Med | 2010 | So WY, Choi DH (2010) Differences in physical fitness and cardiovascular function depend on BMI in Korean men. J Sports Sci Med 9:239-44. | Human | |||
Wang 2010 Biomed Environ Sci | 2010 | Wang C, Hou XH, Zhang ML, Bao YQ, Zou YH, Zhong WH, Xiang KS, Jia WP (2010) Comparison of body mass index with body fat percentage in the evaluation of obesity in Chinese. Biomed Environ Sci 23:173-9. | Human | Diabetes Obesity | ||
Pribis 2010 Nutrients | 2010 | Pribis P, Burtnack CA, McKenzie SO, Thayer J (2010) Trends in body fat, body mass index and physical fitness among male and female college students. Nutrients 2:1075-85. | Human | Obesity | ||
Misra 2009 J Assoc Physicians India | 2009 | Misra A, Chowbey P, Makkar BM, Vikram NK, Wasir JS, Chadha D, Joshi Shashank R, Sadikot S, Gupta R, Gulati Seema, Munjal YP, Concensus Group (2009) Consensus statement for diagnosis of obesity, abdominal obesity and the metabolic syndrome for Asian Indians and recommendations for physical activity, medical and surgical management. J Assoc Physicians India 57:163–70. | Human | Fat | Cardiovascular Diabetes Obesity | |
Raboel 2009 Diabetes Obes Metab | 2009 | Raboel R, Hojberg PM, Almdal T, Boushel RC, Haugaard SB, Madsbad S, Dela F (2009) Improved glycaemic control decreases inner mitochondrial membrane leak in type 2 diabetes. Diabetes Obes Metab 11:355-60. | Human | Skeletal muscle | Mitochondrial disease | Diabetes |
Walley 2009 Nat Rev Genet | 2009 | Walley AJ, Asher JE, Froguel P (2009) The genetic contribution to non-syndromic human obesity. Nat Rev Genet 10:431–42. | Human | Obesity | ||
Bosy-Westphal 2009 Br J Nutr | 2009 | Bosy-Westphal A, Plachta-Danielzik S, Dörhöfer RP, Müller MJ (2009) Short stature and obesity: positive association in adults but inverse association in children and adolescents. Br J Nutr 102:453-61. | Fat | Obesity | ||
Gnaiger 2009 Int J Biochem Cell Biol | 2009 | Gnaiger E (2009) Capacity of oxidative phosphorylation in human skeletal muscle. New perspectives of mitochondrial physiology. Int J Biochem Cell Biol 41:1837-45. https://doi.org/10.1016/j.biocel.2009.03.013 | Human Mouse | Skeletal muscle | Aging;senescence Obesity | |
Volkow 2009 Obesity (Silver Spring) | 2009 | Volkow ND, Wang GJ, Telang F, Fowler JS, Goldstein RZ, Alia-Klein N, Logan J, Wong C, Thanos PK, Ma Y, Pradhan K (2009) Inverse association between BMI and prefrontal metabolic activity in healthy adults. Obesity (Silver Spring) 17:60-5. | Human | Nervous system | Obesity | |
Cohen 2008 Am J Clin Nutr | 2008 | Cohen DA, Sturm R (2008) Body mass index is increasing faster among taller persons. Am J Clin Nutr 87:445-8. | Human | Obesity | ||
Romero-Corral 2008 Int J Obes (Lond) | 2008 | Romero-Corral A, Somers VK, Sierra-Johnson J, Thomas RJ, Collazo-Clavell ML, Korinek J, Allison TG, Batsis JA, Sert-Kuniyoshi FH, Lopez-Jimenez F (2008) Accuracy of body mass index in diagnosing obesity in the adult general population. Int J Obes (Lond) 32:959-66. | Human | Fat | Obesity | |
Nakhostin-Roohi 2008 J Sports Med Phys Fitness | 2008 | Nakhostin-Roohi B, Niknam Z (2008) BMI, fat percentage and VO2max in college female staff. J Sports Med Phys Fitness 48:211-6. | Human | |||
Daussin 2008 Am J Physiol Regul Integr Comp Physiol | 2008 | Daussin FN, Zoll J, Dufour SP, Ponsot E, Lonsdorfer-Wolf E, Doutreleau S, Mettauer B, Piquard F, Geny B, Richard R (2008) Effect of interval versus continuous training on cardiorespiratory and mitochondrial functions: relationship to aerobic performance improvements in sedentary subjects. Am J Physiol Regul Integr Comp Physiol 295:R264-72. | Human | Skeletal muscle | ||
Barquera 2007 Int J Obes (Lond) | 2007 | Barquera S, Peterson KE, Must A, Rogers BL, Flores M, Houser R, Monterrubio E, Rivera-Dommarco JA (2007) Coexistence of maternal central adiposity and child stunting in Mexico. Int J Obes (Lond) 31:601-7. | Human | Obesity | ||
Boushel 2007 Diabetologia | 2007 | Boushel RC, Gnaiger E, Schjerling P, Skovbro M, Kraunsoee R, Dela F (2007) Patients with Type 2 diabetes have normal mitochondrial function in skeletal muscle. Diabetologia 50:790-6. | Human | Skeletal muscle | Diabetes Obesity | |
Rabinovich 2007 Eur Respir J | 2007 | Rabinovich RA, Bastos R, Ardite E, Llinàs L, Orozco-Levi M, Gea J, Vilaró J, Barberà JA, Rodríguez-Roisin R, Fernández-Checa JC, Roca J (2007) Mitochondrial dysfunction in COPD patients with low body mass index. Eur Respir J 29:643-50. | Human | Skeletal muscle | Oxidative stress;RONS | |
Joshi 2007 JAMA | 2007 | Joshi P, Islam S, Pais P, Reddy S, Dorairaj P, Kazmi K, Pandey MR, Haque S, Mendis S, Rangarajan S, Yusuf S (2007) Risk factors for early myocardial infarction in South Asians compared with individuals in other countries. JAMA 297:286-94. | Human | Cardiovascular Obesity | ||
Brien 2007 Can J Public Health | 2007 | Brien SE, Katzmarzyk PT, Craig CL, Gauvin L (2007) Physical activity, cardiorespiratory fitness and body mass index as predictors of substantial weight gain and obesity: the Canadian physical activity longitudinal study. Can J Public Health 98:121-4.. | Human | Obesity | ||
Wells 2007 Biol Rev Camb Philos Soc | 2007 | Wells JC (2007) The thrifty phenotype as an adaptive maternal effect. Biol Rev Camb Philos Soc 82:143-72. | Human | Obesity | ||
Heymsfield 2007 Am J Clin Nutr | 2007 | Heymsfield SB, Gallagher D, Mayer L, Beetsch J, Pietrobelli A (2007) Scaling of human body composition to stature: new insights into body mass index. Am J Clin Nutr 86:82-91. | Human | Skeletal muscle Nervous system Liver Fat | Obesity | |
Bakkman 2007 ActaPhysiol | 2007 | Bakkman L, Sahlin K, Holmberg HC, Tonkonogi M (2007) Quantitative and qualitative adaptation of human skeletal muscle mitochondria to hypoxic compared with normoxic training at the same relative work rate. Acta Physiol (Oxford) 190:243–51. | Human | Skeletal muscle | Oxidative stress;RONS | |
De Onis 2007 Bull World Health Organization | 2007 | de Onis M, Onyango AW, Borghi E, Siyam A, Nishida C, Siekmann J (2007) Development of a WHO growth reference for school-aged children and adolescents. Bull World Health Organization 85:660-7. | Human | Obesity | ||
Wells 2006 Biol Rev Camb Philos Soc | 2006 | Wells JC (2006) The evolution of human fatness and susceptibility to obesity: an ethological approach. Biol Rev Camb Philos Soc 81:183-205. | Human | Obesity | ||
Mogensen 2006 J Physiol | 2006 | Mogensen M, Bagger M, Pedersen PK, Fernström M, Sahlin K (2006) Cycling efficiency in humans is related to low UCP3 content and to type I fibres but not to mitochondrial efficiency. J Physiol 571:669-81. | Human | Skeletal muscle | ||
Dufour 2006 J Appl Physiol (1985) | 2006 | Dufour SP, Ponsot E, Zoll J, Doutreleau S, Lonsdorfer-Wolf E, Geny B, Lampert E, Flück M, Hoppeler H, Billat V, Mettauer B, Richard R, Lonsdorfer J (2006) Exercise training in normobaric hypoxia in endurance runners. I. Improvement in aerobic performance capacity. J Appl Physiol (1985) 100:1238-48. | Human | Hypoxia | ||
WHO 2006 Geneva: World Health Organization | 2006 | WHO Multicentre Growth Reference Study Group (2006) WHO child growth standards: length/height-for-age, weight-for-age, weight-for-length, weight-for-height and body mass index-for-age: Methods and development. Geneva: World Health Organization 312 pp. | Human | Obesity | ||
Ponsot 2006 J Appl Physiol (1985) | 2006 | Ponsot E, Dufour SP, Zoll J, Doutrelau S, N'Guessan B, Geny B, Hoppeler H, Lampert E, Mettauer B, Ventura-Clapier R, Richard R (2006) Exercise training in normobaric hypoxia in endurance runners. II. Improvement of mitochondrial properties in skeletal muscle. J Appl Physiol (1985) 100:1249-57. | Human | Skeletal muscle | Hypoxia | |
WHO 2006 Acta Paediatr | 2006 | WHO Multicentre Growth Reference Study Group (2006) WHO Child Growth Standards based on length/height, weight and age. Acta Paediatr Suppl 450:76-85. | Human | |||
Diverse Populations Collaborative Group 2005 Am J Phys Anthropol | 2005 | Diverse Populations Collaborative Group (2005) Weight-height relationships and body mass index: some observations from the Diverse Populations Collaboration. Am J Phys Anthropol 128:220-9. | Human | |||
Garnier 2005 FASEB J | 2005 | Garnier A, Fortin D, Zoll J, N'Guessan B, Mettauer B, Lampert E, Veksler V, Ventura-Clapier R (2005) Coordinated changes in mitochondrial function and biogenesis in healthy and diseased human skeletal muscle. FASEB J 19:43-52. | Human | Skeletal muscle | ||
WHO Expert Consultation 2004 Lancet | 2004 | WHO Expert Consultation (2004) Appropriate body-mass index for Asian populations and its implications for policy and intervention strategies. Lancet 363:157-63. | Human | Obesity | ||
N'Guessan 2004 Mol Cell Biochem | 2004 | N'Guessan B, Zoll J, Ribera F, Ponsot E, Lampert E, Ventura-Clapier R, Veksler V, Mettauer B (2004) Evaluation of quantitative and qualitative aspects of mitochondrial function in human skeletal and cardiac muscles. Mol Cell Biochem 256-257:267-80. | Human | Skeletal muscle | ||
Rasmussen 2003 Eur J Physiol | 2003 | Rasmussen UF, Krustrup P, Kjaer M, Rasmussen HN (2003) Human skeletal muscle mitochondrial metabolism in youth and senescence: no signs of functional changes in ATP formation and mitochondrial oxidative capacity. Pflugers Arch – Eur J Physiol 446:270-78. | Human | Skeletal muscle | Aging;senescence | |
Zoll 2002 J Physiol | 2002 | Zoll J, Sanchez H, N'Guessan B, Ribera F, Lampert E, Bigard X, Surrurier B, Fortin D, Geny B, Veksler V, Ventura-Clapier R, Mettauer B (2002) Physical activity changes the regulation of mitochondrial respiration in human skeletal muscle. J Physiol 543:191-200. | Human | Skeletal muscle | ||
Echaniz-Laguna 2002 Ann Neurol | 2002 | Echaniz-Laguna A, Zoll J, Ribera F, Tranchant C, Warter JM, Lonsdorfer J, Lampert E (2002) Mitochondrial respiratory chain function in skeletal muscle of ALS patients. Ann Neurol 52:623-7. | Human | Skeletal muscle | Neurodegenerative | |
Chen 2002 Obes Rev | 2002 | Chen W, Lin CC, Peng CT, Li CI, Wu HC, Chiang J, Wu JY, Huang PC (2002) Approaching healthy body mass index norms for children and adolescents from health-related physical fitness. Obes Rev 3:225-32. | Human | Obesity | ||
Colin 2002 Am J Epidemiol | 2002 | Colin Bell A, Adair LS, Popkin BM (2002) Ethnic differences in the association between body mass index and hypertension. Am J Epidemiol 155:346-53. | Human | Cardiovascular Obesity | ||
Mettauer 2001 J Am Coll Cardiol | 2001 | Mettauer B, Zoll J, Sanchez H, Lampert E, Ribera F, Veksler V, Bigard X, Mateo P, Epailly E, Lonsdorfer J, Ventura-Clapier R (2001) Oxidative capacity of skeletal muscle in heart failure patients versus sedentary or active control subjects. J Am Coll Cardiol 38:947-54. | Human | Skeletal muscle | Cardiovascular | |
Deurenberg 2001 Eur J Clin Nutr | 2001 | Deurenberg P, Andreoli A, Borg P, Kukkonen-Harjula K, de Lorenzo A, van Marken Lichtenbelt WD, Testolin G, Vigano R, Vollaard N (2001) The validity of predicted body fat percentage from body mass index and from impedance in samples of five European populations. Eur J Clin Nutr 55:973-9. | Human | Fat | Obesity | |
Rasmussen 2001 Am J Physiol Endocrinol Metab | 2001 | Rasmussen UF, Rasmussen HN, Krustrup P, Quistorff B, Saltin B, Bangsbo J (2001) Aerobic metabolism of human quadriceps muscle: in vivo data parallel measurements on isolated mitochondria. Am J Physiol Endocrinol Metab 280:E301-7. | Human | Skeletal muscle | ||
Cole 2000 BMJ | 2000 | Cole TJ, Bellizzi MC, Flegal KM, Dietz WH (2000) Establishing a standard definition for child overweight and obesity worldwide: international survey. BMJ 320:1240-3. | Human | Obesity | ||
WHO 2000 Sydney Health Comm AU | 2000 | WHO Regional Office for the Western Pacific (2000) The Asia-Pacific perspective: redefining obesity and its treatment. World Health Organization Western Pacific Region 55 pp. | Human | Obesity | ||
Gallagher 2000 Am J Clin Nutr | 2000 | Gallagher D, Heymsfield SB, Heo M, Jebb SA, Murgatroyd PR, Sakamoto Y (2000) Healthy percentage body fat ranges: an approach for developing guidelines based on body mass index. Am J Clin Nutr 72:694-701. | Human | Fat | Obesity | |
Wei 1999 JAMA | 1999 | Wei M, Kampert JB, Barlow CE, Nichaman MZ, Gibbons LW, Paffenbarger RS Jr, Blair SN (1999) Relationship between low cardiorespiratory fitness and mortality in normal-weight, overweight, and obese men. JAMA 282:1547-53. | Human | Cardiovascular Diabetes Obesity | ||
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Publications VO2max
Sort in ascending/descending order by a click on one of the small symbols in squares below. Default sorting: chronological. Empty fields appear first in ascending order.
Year | Reference | Organism | Tissue;cell | Stress | Diseases | |
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Calabria 2023 Biomedicines | 2023 | Calabria E, Muollo V, Cavedon V, Capovin T, Saccenti L, Passarotti F, Ghiotto L, Milanese C, Gelati M, Rudi D, Salvagno GL, Lippi G, Tam E, Schena F, Pogliaghi S (2023) Type 2 diabetes related mitochondrial defects in peripheral mononucleated blood cells from overweight postmenopausal women. https://doi.org/10.3390/biomedicines11010121 | Human | Blood cells | Diabetes | |
Hadanny 2022 Sports Med Open | 2022 | Hadanny A, Hachmo Y, Rozali D, Catalogna M, Yaakobi E, Sova M, Gattegno H, Abu Hamed R, Lang E, Polak N, Friedman M, Finci S, Zemel Y, Bechor Y, Gal N, Efrati S (2022) Effects of hyperbaric oxygen therapy on mitochondrial respiration and physical performance in middle-aged athletes: a blinded, randomized controlled trial. | Human | Skeletal muscle | ||
Mendham 2021 Diabetologia | 2021 | Mendham AE, Goedecke JH, Zeng Y, Larsen S, George C, Hauksson J, Fortuin-de Smidt MC, Chibalin AV, Olsson T, Chorell E (2021) Exercise training improves mitochondrial respiration and is associated with an altered intramuscular phospholipid signature in women with obesity. Diabetologia 64:1642-59. | Human | Skeletal muscle | Obesity | |
Pühringer 2021 High Alt Med Biol | 2021 | Pühringer R, Gatterer H, Berger M, Said M, Faulhaber M, Burtscher M (2021) Does moderate altitude affect VO2max in acclimatized mountain guides? High Alt Med Biol doi: 10.1089/ham.2021.0081 | Human | Hypoxia | ||
Hoffmann 2020 J Clin Endocrinol Metab | 2020 | Hoffmann C, Schneeweiss P, Randrianarisoa E, Schnauder G, Kappler L, Machann J, Schick F, Fritsche A, Heni M, Birkenfeld A, Niess AM, Häring HU, Weigert C, Moller A (2020) Response of mitochondrial respiration in adipose tissue and muscle to 8 weeks of endurance exercise in obese subjects. J Clin Endocrinol Metab 105:dgaa571. | Human | Skeletal muscle Fat | Obesity | |
Caspi 2020 J Am Heart Assoc | 2020 | Caspi T, Straw S, Cheng C, Garnham JO, Scragg JL, Smith J, Koshy AO, Levelt E, Sukumar P, Gierula J, Beech DJ, Kearney MT, Cubbon RM, Wheatcroft SB, Witte KK, Roberts LD, Bowen TS (2020) Unique transcriptome signature distinguishes patients with heart failure with myopathy. J Am Heart Assoc 9:e017091. https://doi.org/10.1161/JAHA.120.017091 | Human | Heart Skeletal muscle | Cardiovascular Myopathy | |
Chambers 2020 J Appl Physiol (1985) | 2020 | Chambers TL, Burnett TR, Raue U, Lee GA, Finch WH, Graham BM, Trappe TA, Trappe S (2020) Skeletal muscle size, function, and adiposity with lifelong aerobic exercise. J Appl Physiol (1985) 128:368–78. | Human | Skeletal muscle Fat | Aging;senescence | |
Murthy 2020 JAMA Cardiol | 2020 | Murthy VL, Xia R, Baldridge AS, Carnethon MR, Sidney S, Bouchard C, Sarzynski MA, Lima JAC, Lewis GD, Shah SJ, Fornage M, Shah RV (2020) Polygenic risk, fitness, and obesity in the Coronary Artery Risk Development In Young Adults (CARDIA) study. JAMA Cardiol 5:40-8. doi: 10.1001/jamacardio.2019.5220 | Human | Cardiovascular Obesity | ||
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