Cite

Trujillo ME, Scherer PE: Adipose tissue-derived factors: impact on health and disease. Endocr Rev 2006; 27: 762–778. Trujillo ME Scherer PE : Adipose tissue-derived factors: impact on health and disease . Endocr Rev 2006 ; 27 : 762 778 . 10.1210/er.2006-003317056740 Search in Google Scholar

Galic S, Oakhill JS, Steinberg GR: Adipose tissue as an endocrine organ. Mol Cell Endocrinol 2010; 316: 129–139. Galic S Oakhill JS Steinberg GR : Adipose tissue as an endocrine organ . Mol Cell Endocrinol 2010 ; 316 : 129 139 . 10.1016/j.mce.2009.08.01819723556 Search in Google Scholar

Wake DJ, Strand M, Rask E, Westerbacka J, Livingstone DE, Soderberg S et al.: Intra-adipose sex steroid metabolism and body fat distribution in idiopathic human obesity. Clin Endocrinol (Oxf) 2007; 66: 440–446. Wake DJ Strand M Rask E Westerbacka J Livingstone DE Soderberg S : Intra-adipose sex steroid metabolism and body fat distribution in idiopathic human obesity . Clin Endocrinol (Oxf) 2007 ; 66 : 440 446 . 10.1111/j.1365-2265.2007.02755.x17302881 Search in Google Scholar

Wajchenberg BL: Subcutaneous and visceral adipose tissue: their relation to the metabolic syndrome. Endocr Rev 2000; 21: 697–738. Wajchenberg BL : Subcutaneous and visceral adipose tissue: their relation to the metabolic syndrome . Endocr Rev 2000 ; 21 : 697 738 . 10.1210/edrv.21.6.041511133069 Search in Google Scholar

Moore KL, Dalley AF, Agur AM: Clinically Oriented Anatomy. Lippincott Williams & Wilkins, Baltimore 2013. Moore KL Dalley AF Agur AM : Clinically Oriented Anatomy . Lippincott Williams & Wilkins , Baltimore 2013 . Search in Google Scholar

Schaverien MV, Pessa JE, Rohrich RJ: Vascularized membranes determine the anatomical boundaries of the subcutaneous fat compartments. Plast Reconstr Surg 2009; 123: 695–700. Schaverien MV Pessa JE Rohrich RJ : Vascularized membranes determine the anatomical boundaries of the subcutaneous fat compartments . Plast Reconstr Surg 2009 ; 123 : 695 700 . 10.1097/PRS.0b013e31817d53fc19182631 Search in Google Scholar

Hong JP, Chung IW: The superficial fascia as a new plane of elevation for anterolateral thigh flaps. Ann Plast Surg 2013; 70: 192–195. Hong JP Chung IW : The superficial fascia as a new plane of elevation for anterolateral thigh flaps . Ann Plast Surg 2013 ; 70 : 192 195 . 10.1097/SAP.0b013e3182367c2f23038140 Search in Google Scholar

Alexander HG, Dugdale AE: Fascial planes within subcutaneous fat in humans. Eur J Clin Nutr 1992; 46: 903–906. Alexander HG Dugdale AE : Fascial planes within subcutaneous fat in humans . Eur J Clin Nutr 1992 ; 46 : 903 906 . Search in Google Scholar

Aasen G, Fagertun H, Halse J: Regional fat mass by DXA: high leg fat mass attenuates the relative risk of insulin resistance and dyslipidaemia in obese but not in overweight postmenopausal women. Scand J Clin Lab Invest 2008; 68: 204–211. Aasen G Fagertun H Halse J : Regional fat mass by DXA: high leg fat mass attenuates the relative risk of insulin resistance and dyslipidaemia in obese but not in overweight postmenopausal women . Scand J Clin Lab Invest 2008 ; 68 : 204 211 . 10.1080/0036551070164952418446527 Search in Google Scholar

Querleux B, Cornillon C, Jolivet O, Bittoun J: Anatomy and physiology of subcutaneous adipose tissue by in vivo magnetic resonance imaging and spectroscopy: relationships with sex and presence of cellulite. Skin Res Technol 2002; 8: 118–124. Querleux B Cornillon C Jolivet O Bittoun J : Anatomy and physiology of subcutaneous adipose tissue by in vivo magnetic resonance imaging and spectroscopy: relationships with sex and presence of cellulite . Skin Res Technol 2002 ; 8 : 118 124 . 10.1034/j.1600-0846.2002.00331.x12060477 Search in Google Scholar

Mirrashed F, Sharp JC, Krause V, Morgan J, Tomanek B: Pilot study of dermal and subcutaneous fat structures by MRI in individuals who differ in gender, BMI, and cellulite grading. Skin Res Technol 2004; 10: 161–168. Mirrashed F Sharp JC Krause V Morgan J Tomanek B : Pilot study of dermal and subcutaneous fat structures by MRI in individuals who differ in gender, BMI, and cellulite grading . Skin Res Technol 2004 ; 10 : 161 168 . 10.1111/j.1600-0846.2004.00072.x15225265 Search in Google Scholar

Neeland IJ, Ayers CR, Rohatgi AK, Turer AT, Berry JD, Das SR et al.: Associations of visceral and abdominal subcutaneous adipose tissue with markers of cardiac and metabolic risk in obese adults. Obesity (Silver Spring) 2013; 21: E439–E447. Neeland IJ Ayers CR Rohatgi AK Turer AT Berry JD Das SR : Associations of visceral and abdominal subcutaneous adipose tissue with markers of cardiac and metabolic risk in obese adults . Obesity (Silver Spring) 2013 ; 21 : E439 E447 . 10.1002/oby.20135375197723687099 Search in Google Scholar

Piché ME, Poirier P, Lemieux I, Després JP: Overview of epidemiology and contribution of obesity and body fat distribution to cardiovascular disease: an update. Prog Cardiovasc Dis 2018; 61: 103–113. Piché ME Poirier P Lemieux I Després JP : Overview of epidemiology and contribution of obesity and body fat distribution to cardiovascular disease: an update . Prog Cardiovasc Dis 2018 ; 61 : 103 113 . 10.1016/j.pcad.2018.06.00429964067 Search in Google Scholar

Smith SR, Lovejoy JC, Greenway F, Ryan D, deJonge L, de la Bretonne J et al.: Contributions of total body fat, abdominal subcutaneous adipose tissue compartments, and visceral adipose tissue to the metabolic complications of obesity. Metabolism 2001; 50: 425–435. Smith SR Lovejoy JC Greenway F Ryan D deJonge L de la Bretonne J : Contributions of total body fat, abdominal subcutaneous adipose tissue compartments, and visceral adipose tissue to the metabolic complications of obesity . Metabolism 2001 ; 50 : 425 435 . 10.1053/meta.2001.2169311288037 Search in Google Scholar

Vasan SK, Osmond C, Canoy D, Christodoulides C, Neville MJ, Di Gravio C et al.: Comparison of regional fat measurements by dual-energy X-ray absorptiometry and conventional anthropometry and their association with markers of diabetes and cardiovascular disease risk. Int J Obes (Lond) 2018; 42: 850–857. Vasan SK Osmond C Canoy D Christodoulides C Neville MJ Di Gravio C : Comparison of regional fat measurements by dual-energy X-ray absorptiometry and conventional anthropometry and their association with markers of diabetes and cardiovascular disease risk . Int J Obes (Lond) 2018 ; 42 : 850 857 . 10.1038/ijo.2017.289596566529151596 Search in Google Scholar

Manolopoulos KN, Karpe F, Frayn KN: Gluteofemoral body fat as a determinant of metabolic health. Int J Obes (Lond) 2010; 34: 949–959. Manolopoulos KN Karpe F Frayn KN : Gluteofemoral body fat as a determinant of metabolic health . Int J Obes (Lond) 2010 ; 34 : 949 959 . 10.1038/ijo.2009.28620065965 Search in Google Scholar

Williams MJ, Hunter GR, Kekes-Szabo T, Snyder S, Treuth MS: Regional fat distribution in women and risk of cardiovascular disease. Am J Clin Nutr 1997; 65: 855–860. Williams MJ Hunter GR Kekes-Szabo T Snyder S Treuth MS : Regional fat distribution in women and risk of cardiovascular disease . Am J Clin Nutr 1997 ; 65 : 855 860 . 10.1093/ajcn/65.3.8559062540 Search in Google Scholar

Van Pelt R, Jankowski C, Gozansky WS, Schwartz RS, Kohrt WM: Lower-body adiposity and metabolic protection in postmenopausal women. J Clin Endocrinol Metab 2005; 90: 4573–4578. Van Pelt R Jankowski C Gozansky WS Schwartz RS Kohrt WM : Lower-body adiposity and metabolic protection in postmenopausal women . J Clin Endocrinol Metab 2005 ; 90 : 4573 4578 . 10.1210/jc.2004-1764281970015886255 Search in Google Scholar

Bos G, Snijder MB, Nijpels G, Dekker JM, Stehouwer CD, Bouter LM et al.: Opposite contributions of trunk and leg fat mass with plasma lipase activities: the Hoorn study. Obes Res 2005; 13: 1817–1823. Bos G Snijder MB Nijpels G Dekker JM Stehouwer CD Bouter LM : Opposite contributions of trunk and leg fat mass with plasma lipase activities: the Hoorn study . Obes Res 2005 ; 13 : 1817 1823 . 10.1038/oby.2005.22116286530 Search in Google Scholar

Cancello R, Zulian A, Gentilini D, Maestrini S, Della Barba A, Invitti C et al.: Molecular and morphologic characterization of superficial- and deep-subcutaneous adipose tissue subdivisions in human obesity. Obesity (Silver Spring) 2013; 21: 2562–2570. Cancello R Zulian A Gentilini D Maestrini S Della Barba A Invitti C : Molecular and morphologic characterization of superficial- and deep-subcutaneous adipose tissue subdivisions in human obesity . Obesity (Silver Spring) 2013 ; 21 : 2562 2570 . 10.1002/oby.2041723512827 Search in Google Scholar

Walker GE, Marzullo P, Prodam F, Bona G, Di Blasio AM: Obesity modifies expression profiles of metabolic markers in superficial and deep subcutaneous abdominal adipose tissue depots. Endocrine 2014; 46: 99–106. Walker GE Marzullo P Prodam F Bona G Di Blasio AM : Obesity modifies expression profiles of metabolic markers in superficial and deep subcutaneous abdominal adipose tissue depots . Endocrine 2014 ; 46 : 99 106 . 10.1007/s12020-013-0040-x24030694 Search in Google Scholar

Störchle P, Müller W, Sengeis M, Ahammer H, Fürhapter-Rieger A, Bachl N et al.: Standardized ultrasound measurement of subcutaneous fat patterning: high reliability and accuracy in groups ranging from lean to obese. Ultrasound Med Biol 2017; 43: 427–438. Störchle P Müller W Sengeis M Ahammer H Fürhapter-Rieger A Bachl N : Standardized ultrasound measurement of subcutaneous fat patterning: high reliability and accuracy in groups ranging from lean to obese . Ultrasound Med Biol 2017 ; 43 : 427 438 . 10.1016/j.ultrasmedbio.2016.09.01427866704 Search in Google Scholar

Ibrahim MM: Subcutaneous and visceral adipose tissue: structural and functional differences. Obes Rev 2010; 11: 11–18. Ibrahim MM : Subcutaneous and visceral adipose tissue: structural and functional differences . Obes Rev 2010 ; 11 : 11 18 . 10.1111/j.1467-789X.2009.00623.x Search in Google Scholar

Walker GE, Verti B, Marzullo P, Savia G, Mencarelli M, Zurleni F et al.: Deep subcutaneous adipose tissue: a distinct abdominal adipose depot. Obesity 2007; 15: 1933–1943. Walker GE Verti B Marzullo P Savia G Mencarelli M Zurleni F : Deep subcutaneous adipose tissue: a distinct abdominal adipose depot . Obesity 2007 ; 15 : 1933 1943 . 10.1038/oby.2007.231 Search in Google Scholar

Björntorp P: Adipose tissue distribution and function. Int J Obes 1991; 15 (Suppl. 2): 67–81. Björntorp P : Adipose tissue distribution and function . Int J Obes 1991 ; 15 (Suppl. 2 ): 67 81 . Search in Google Scholar

Larsson B, Svärdsudd K, Welin L, Wilhelmsen L, Björntorp P, Tibblin G: Abdominal adipose tissue distribution, obesity, and risk of cardiovascular disease and death: 13 year follow up of participants in the study of men born in 1913. Br Med J (Clin Res Ed) 1984; 288: 1401–1404. Larsson B Svärdsudd K Welin L Wilhelmsen L Björntorp P Tibblin G : Abdominal adipose tissue distribution, obesity, and risk of cardiovascular disease and death: 13 year follow up of participants in the study of men born in 1913 . Br Med J (Clin Res Ed) 1984 ; 288 : 1401 1404 . 10.1136/bmj.288.6428.1401 Search in Google Scholar

Markman B: Anatomy and physiology of adipose tissue. Clin Plast Surg 1989; 16: 235–244. Markman B : Anatomy and physiology of adipose tissue . Clin Plast Surg 1989 ; 16 : 235 244 . 10.1016/S0094-1298(20)31337-7 Search in Google Scholar

Abu-Hijleh MF, Roshier AL, Al-Shboul Q, Dharap AS, Harris PF: The membranous layer of superficial fascia: evidence for its widespread distribution in the body. Surg Radiol Anat 2006; 28: 606–619. Abu-Hijleh MF Roshier AL Al-Shboul Q Dharap AS Harris PF : The membranous layer of superficial fascia: evidence for its widespread distribution in the body . Surg Radiol Anat 2006 ; 28 : 606 619 . 10.1007/s00276-006-0142-817061033 Search in Google Scholar

Garnov N, Linder N, Schaudinn A, Blüher M, Karlas T, Schütz T et al.: Comparison of T1 relaxation times in adipose tissue of severely obese patients and healthy lean subjects measured by 1.5 T MRI. NMR Biomed 2014; 27: 1123–1128. Garnov N Linder N Schaudinn A Blüher M Karlas T Schütz T : Comparison of T1 relaxation times in adipose tissue of severely obese patients and healthy lean subjects measured by 1.5 T MRI . NMR Biomed 2014 ; 27 : 1123 1128 . 10.1002/nbm.316625066754 Search in Google Scholar

Schlecht I, Wiggermann P, Behrens G, Fischer B, Koch M, Freese J et al.: Reproducibility and validity of ultrasound for the measurement of visceral and subcutaneous adipose tissues. Metabolism 2014; 63: 1512–1519. Schlecht I Wiggermann P Behrens G Fischer B Koch M Freese J : Reproducibility and validity of ultrasound for the measurement of visceral and subcutaneous adipose tissues . Metabolism 2014 ; 63 : 1512 1519 . 10.1016/j.metabol.2014.07.01225242434 Search in Google Scholar

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