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105.^Lee HJ. Exercise training regulates angiogenic gene expression in white adipose tissue. J Exerc Rehabil. 2018;14:16–23.
106.^Bente Stallknecht 1, Flemming Dela, J?rn Wulff Helge.Are blood flow and lipolysis in subcutaneous adipose tissue influenced by contractions in adjacent muscles in humans?.Am J Physiol Endocrinol Metab. 2007 Feb;292(2):
E394-9.
107.^Ilkka Heinonen 1, Marco Bucci, Jukka Kemppainen, Juhani Knuuti, Pirjo Nuutila, Robert Boushel, Kari K Kalliokoski.Regulation of subcutaneous adipose tissue blood flow during exercise in humans.J Appl Physiol (1985). 2012 Mar;112(6):
1059-63.
108.^Kurpad A, Khan K, Macdonald I, Elia M. Haemodynamic responses in muscle and adipose tissue and whole body metabolic responses during norepinephrine infusions in man. J Auton Nerv Syst 54:163–170, 1995.
109.^Stallknecht B, Lorentsen J, Enevoldsen LH, Bülow J, Biering-S?rensen F, Galbo H, Kj?r M. Role of the sympathoadrenergic system in adipose tissue metabolism during exercise in humans. J Physiol Lond 536:283–294, 2001.
110.^Bartness TJ, Vaughan CH, Song CK. Sympathetic and sensory innervation of brown adipose tissue. Int J Obes (Lond) 2010b;34(Suppl 1):
S36–42.
111.^N J Rothwell, M J Stock.Influence of nor on blood flow to brown adipose tissue in rats exhibiting diet-induced thermogenesis.Pflugers Arch. 1981 Mar;389(3):
237-42.
112.^Pasarica M, Sereda OR, Redman LM, Albarado DC, Hymel DT, Roan LE, et al. Reduced adipose tissue oxygenation in human obesity evidence for rarefaction, macrophage chemotaxis, and inflammation without an angiogenic response. Diabetes. 2009
113.^Stefania Camastracorresponding author1 and Ele Ferrannini2.Role of anatomical location, cellular phenotype and perfusion of adipose tissue in intermediary metabolism: A narrative review.Rev Endocr Metab Disord. 2022; 23(1):
43–50.
114.^Coppack SW, Fisher RM, Gibbons GF, Humphreys SM, McDonough MJ, Potts JL, Frayn KN. Postprandial substrate deposition in human forearm and adipose tissues in vivo. Clin Sci (Lond) 79:339–348, 1990.
115.^Summers LKM, Samra JS, Humphreys SM, Morris RJ, Frayn KN. Subcutaneous abdominal adipose tissue blood now: Variation within and between subjects and relationship to obesity. Clin Sci. 1996
116.^Jansson PA, Larsson A, Smith U, Lonnroth P: Glycerol production in subcutaneous adipose tissue in lean and obese humans. J Clin Invest 89: 1610–1617, 1992
117.^Andersson J, Karpe F, Sj?str?m LG, Riklund K, S?derberg S, Olsson T. Association of adipose tissue blood flow with fat depot sizes and adipokines in women. Int J Obes 36:783–789, 2012.
118.^Jansson PA, Larsson A, L?nnroth PN. Relationship between blood pressure, metabolic variables and blood flow in obese subjects with or without non-insulin-dependent diabetes mellitus. Eur J Clin Invest 28:813–818, 1998.
119.^Gastaldelli A, Cusi K, Pettiti M, Hardies J, Miyazaki Y, Berria R, et al. Relationship Between Hepatic/Visceral Fat and Hepatic Insulin Resistance in Nondiabetic and Type 2 Diabetic Subjects. Gastroenterology. 2007
120.^Begovatz P, Koliaki C, Weber K, Strassburger K, Nowotny B, Nowotny P, et al. Pancreatic adipose tissue infiltration, parenchymal steatosis and beta cell function in humans. Diabetologia. 2015
121.^Voros G., et al. Modulation of angiogenesis during adipose tissue development in murine models of obesity. Endocrinology. 2005;146:4545–4554.
122.^Eriksson A., et al. Placenta growth factor-1 antagonizes VEGF-induced angiogenesis and tumor growth by the formation of functionally inactive PlGF-1/VEGF heterodimers. Cancer Cell. 2002;1:99–108.
123.^Inuzuka H., et al. Differential regulation of immediate early gene expression in preadipocyte cells through multiple signaling pathways. Biochem. Biophys. Res. Commun. 1999;265:664–668.
124.^Seida A., et al. Serum bFGF levels are reduced in Japanese overweight men and restored by a 6-month exercise education. Int. J. Obes. Relat. Metab. Disord. 2003;27:1325–1331.


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