Biomedical Engineering Reference
In-Depth Information
34. Iatridis, J.C., Wu, J., Yandow, J.A., Langevin, H.M.: Subcutaneous tissue mechanical
behavior is linear and viscoelastic under uniaxial tension. Connect. Tissue Res. 44, 208-217
(2003)
35. Jeong, S., Yoon, M.: 17b-Estradiol inhibition of PPARc-induced adipogenesis and adipocyte-
specific gene expression. Acta Pharmacol. Sin. 32, 230-238 (2011)
36. Jo, J., Gavrilova, O., Pack, S., Jou, W., Mullen, S., Sumner, A.E., Cushman, S.W., Periwal,
V.: Hypertrophy and/or Hyperplasia: dynamics of adipose tissue growth. PLoS Comput. Biol.
5, e1000324 (2009)
37. Kato, H., Suga, H., Eto, H., Araki, J., Aoi, N., Doi, K., Iida, T., Tabata, Y., Yoshimura, K.:
Reversible adipose tissue enlargement induced by external tissue suspension: possible
contribution of basic fibroblast growth factor in the preservation of enlarged tissue. Tissue
Eng. Part A 16, 2029-2040 (2010)
38. Kershaw, E.E., Flier, J.S.: Adipose tissue as an endocrine organ. J. Clin. Endocrinol. Metab.
89, 2548-2556 (2004)
39. Krouskop, T.A., Wheeler, T.M., Kallel, F., Garra, B.S., Hall, T.: Elastic moduli of breast and
prostate tissues under compression. Ultrason. Imaging 20, 260-274 (1998)
40. Langin, D.: Recruitment of brown fat and conversion of white into brown adipocytes:
strategies to fight the metabolic complications of obesity? Biochim. Biophys. Acta 1801,
372-376 (2010)
41. Lea-Currie, Y.R., Monroe, D., Mcintosh, M.K.: Dehydroepiandrosterone and related steroids
alter 3T3-L1 preadipocyte proliferation and differentiation. Comp. Biochem. Physiol. C:
Pharmacol. Toxicol. Endocrinol. 123, 17-25 (1999)
42. Lee, M.J., Wu, Y., Fried, S.K.: Adipose tissue remodeling in pathophysiology of obesity.
Curr. Opin. Clin. Nutr. Metab. Care 13, 371-376 (2010)
43. Levy, A., Enzer, S., Shoham, N., Zaretsky, U., Gefen, A.: Large, but not small sustained
tensile strains stimulate adipogenesis in culture. Ann. Biomed. Eng. 40, 1052-1060 (2012)
44. Linder-Ganz, E., Shabshin, N., Itzchak, Y., Gefen, A.: Assessment of mechanical conditions
in sub-dermal tissues during sitting: a combined experimental-MRI and finite element
approach. J. Biomech. 40, 1443-1454 (2007)
45. Luu, Y.K., Capilla, E., Rosen, C.J., Gilsanz, V., Pessin, J.E., Judex, S., Rubin, C.T.:
Mechanical stimulation of mesenchymal stem cell proliferation and differentiation promotes
osteogenesis while preventing dietary-induced obesity. J. Bone Miner. Res. 24, 50-61 (2009)
46. Maddalozzo, G.F., Iwaniec, U.T., Turner, R.T., Rosen, C.J., Widrick, J.J.: Whole-body
vibration slows the acquisition of fat in mature female rats. Int. J. Obes. (Lond) 32,
1348-1354 (2008)
47. Maruyama, K., Oshima, T., Ohyama, K.: Exposure to exogenous estrogen through intake of
commercial milk produced from pregnant cows. Pediatr. Int. 52, 33-38 (2010)
48. Maury,
E., Brichard,
S.M.:
Adipokine
dysregulation,
adipose
tissue
inflammation
and
metabolic syndrome. Mol. Cell. Endocrinol. 314, 1-16 (2010)
49. Murano, I., Barbatelli, G., Parisani, V., Latini, C., Muzzonigro, G., Castellucci, M., Cinti, S.:
Dead adipocytes, detected as crown-like structures, are prevalent in visceral fat depots of
genetically obese mice. J. Lipid Res. 49, 1562-1568 (2008)
50. Nelson, L.R., Bulun, S.E.: Estrogen production and action. J. Am. Acad. Dermatol. 45, S116-
S124 (2001)
51. Nishimura, S., Manabe, I., Nagai, R.: Adipose tissue inflammation in obesity and metabolic
syndrome. Discov. Med. 8, 55-60 (2009)
52. Otto, T.C., Lane, M.D.: Adipose development: from stem cell to adipocyte. Crit. Rev.
Biochem. Mol. Biol. 40, 229-242 (2005)
53. Ozcivici, E., Luu, Y.K., Rubin, C.T., Judex, S.: Low-level vibrations retain bone marrow's
osteogenic potential and augment recovery of trabecular bone during reambulation. PLoS
ONE 5, e11178 (2010)
54. Poissonnet, C.M., Burdi, A.R., Garn, S.M.: The chronology of adipose tissue appearance and
distribution in the human fetus. Early Hum. Dev. 10, 1-11 (1984)
Search WWH ::




Custom Search