Vertebrae but not femur marrow fat transiently decreases in response to body weight loss in an 18-month randomized control trial.
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M. Stumvoll | A. Reiner-Benaim | M. Blüher | I. Shelef | A. Rudich | U. Ceglarek | G. Tsaban | Yoash Chassidim | Y. Gepner | R. Gazit | I. Shai | A. Meir | Yariv Greenshpan | Noa Ofir | Hila Zellicha | Yuval Mizrakli | Omri Sharabi
[1] M. Lorentzon,et al. Development of a novel method to measure bone marrow fat fraction in older women using high-resolution peripheral quantitative computed tomography , 2022, Osteoporosis International.
[2] T. Rantalainen,et al. Exercise may impact on lumbar vertebrae marrow adipose tissue: Randomised controlled trial. , 2022, Bone.
[3] M. Bredella,et al. Bone marrow adipose tissue composition following high-caloric feeding and fasting. , 2021, Bone.
[4] Tara M. Holmes,et al. The dynamics of human bone marrow adipose tissue in response to feeding and fasting , 2021, JCI insight.
[5] Zhenghan Yang,et al. Bone Marrow Fat Measured by a Chemical Shift‐Encoded Sequence (IDEAL‐IQ) in Patients With and Without Metabolic Syndrome , 2021, Journal of magnetic resonance imaging : JMRI.
[6] D. Lucas. Structural organization of the bone marrow and its role in hematopoiesis , 2020, Current opinion in hematology.
[7] C. Ulrich,et al. Changes in Bone Marrow Fat upon Dietary-Induced Weight Loss , 2020, Nutrients.
[8] G. Spinetti,et al. Bone marrow fat: friend or foe in people with diabetes mellitus? , 2020, Clinical science.
[9] P. Valet,et al. Human Bone Marrow Is Comprised of Adipocytes with Specific Lipid Metabolism. , 2020, Cell reports.
[10] Michal Rein,et al. The beneficial effects of Mediterranean diet over low-fat diet may be mediated by decreasing hepatic fat content. , 2019, Journal of hepatology.
[11] T. Mala,et al. Changes in Bone Marrow Adipose Tissue One Year After Roux‐en‐Y Gastric Bypass: A Prospective Cohort Study , 2019, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[12] C. Hawkes,et al. Fat-bone interaction within the bone marrow milieu: Impact on hematopoiesis and systemic energy metabolism. , 2019, Bone.
[13] Y. Gong,et al. Bone Marrow Fat and Hematopoiesis , 2018, Front. Endocrinol..
[14] O. MacDougald,et al. Development, regulation, metabolism and function of bone marrow adipose tissues. , 2018, Bone.
[15] T. Rantalainen,et al. Specific Modulation of Vertebral Marrow Adipose Tissue by Physical Activity , 2018, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[16] Michal Rein,et al. The effect of long-term weight-loss intervention strategies on the dynamics of pancreatic-fat and morphology: An MRI RCT study. , 2018, Clinical nutrition ESPEN.
[17] C. Rosen,et al. Clinical implications of bone marrow adiposity , 2018, Journal of internal medicine.
[18] G. Leo,et al. Bone marrow fat contributes to insulin sensitivity and adiponectin secretion in premenopausal women , 2018, Endocrine.
[19] O. MacDougald,et al. Bone marrow adipocytes resist lipolysis and remodeling in response to β-adrenergic stimulation. , 2018, Bone.
[20] Jeffrey R Stout,et al. Intramyocellular triacylglycerol accumulation across weight loss strategies; Sub-study of the CENTRAL trial , 2017, PloS one.
[21] Michal Rein,et al. Effect of Distinct Lifestyle Interventions on Mobilization of Fat Storage Pools: CENTRAL Magnetic Resonance Imaging Randomized Controlled Trial , 2017, Circulation.
[22] T. Schulz,et al. The emerging role of bone marrow adipose tissue in bone health and dysfunction , 2017, Journal of Molecular Medicine.
[23] Michal Rein,et al. Dynamics of intrapericardial and extrapericardial fat tissues during long-term, dietary-induced, moderate weight loss. , 2017, The American journal of clinical nutrition.
[24] Xiaojuan Li,et al. Bone Marrow Fat Changes After Gastric Bypass Surgery Are Associated With Loss of Bone Mass , 2017, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[25] Michal Rein,et al. Abdominal fat sub-depots and energy expenditure: Magnetic resonance imaging study. , 2017, Clinical nutrition.
[26] Michal Rein,et al. Changes of renal sinus fat and renal parenchymal fat during an 18-month randomized weight loss trial. , 2017, Clinical nutrition.
[27] M. Bredella,et al. Marrow adipose tissue composition in adults with morbid obesity. , 2017, Bone.
[28] Xiaojuan Li,et al. Vertebral bone marrow fat, bone mineral density and diabetes: The Osteoporotic Fractures in Men (MrOS) study. , 2017, Bone.
[29] R. Parkkola,et al. Changes in bone metabolism after bariatric surgery by gastric bypass or sleeve gastrectomy. , 2017, Bone.
[30] M. Bredella,et al. Effects of Roux-en-Y gastric bypass and sleeve gastrectomy on bone mineral density and marrow adipose tissue. , 2017, Bone.
[31] A. Schafer,et al. Diabetes and Bone Marrow Adiposity , 2016, Current Osteoporosis Reports.
[32] M. Kassem,et al. The Bone Marrow-Derived Stromal Cells: Commitment and Regulation of Adipogenesis , 2016, Front. Endocrinol..
[33] Michal Rein,et al. Intermuscular adipose tissue and thigh muscle area dynamics during an 18-month randomized weight loss trial. , 2016, Journal of applied physiology.
[34] O. MacDougald,et al. Inside out: Bone marrow adipose tissue as a source of circulating adiponectin , 2016, Adipocyte.
[35] E. Rummeny,et al. MR‐detected changes in liver fat, abdominal fat, and vertebral bone marrow fat after a four‐week calorie restriction in obese women , 2015, Journal of magnetic resonance imaging : JMRI.
[36] J. Carter,et al. Changes in vertebral bone marrow fat and bone mass after gastric bypass surgery: A pilot study. , 2015, Bone.
[37] C. Rubin,et al. Obesity-driven disruption of haematopoiesis and the bone marrow niche , 2014, Nature Reviews Endocrinology.
[38] M. Bredella,et al. Marrow fat composition in anorexia nervosa. , 2014, Bone.
[39] O. MacDougald,et al. Bone marrow adipose tissue is an endocrine organ that contributes to increased circulating adiponectin during caloric restriction. , 2014, Cell metabolism.
[40] Pierre Hardouin,et al. 3 Tesla 1H MR spectroscopy of hip bone marrow in a healthy population, assessment of normal fat content values and influence of age and sex , 2014, Journal of magnetic resonance imaging : JMRI.
[41] M. Bredella,et al. Ectopic and serum lipid levels are positively associated with bone marrow fat in obesity. , 2013, Radiology.
[42] M. Stampfer,et al. Two Patterns of Adipokine and Other Biomarker Dynamics in a Long-Term Weight Loss Intervention , 2012, Diabetes Care.
[43] L. Nardo,et al. Does vertebral bone marrow fat content correlate with abdominal adipose tissue, lumbar spine bone mineral density, and blood biomarkers in women with type 2 diabetes mellitus? , 2012, Journal of magnetic resonance imaging : JMRI.
[44] J. Jackson,et al. Changes in human bone marrow fat content associated with changes in hematopoietic stem cell numbers and cytokine levels with aging , 2011, Journal of anatomy.
[45] C. Glüer,et al. Impact of Intra‐ and Extra‐Osseous Soft Tissue Composition on Changes in Bone Mineral Density With Weight Loss and Regain , 2011, Obesity.
[46] M. Bredella,et al. Vertebral Bone Marrow Fat Is Positively Associated With Visceral Fat and Inversely Associated With IGF‐1 in Obese Women , 2011, Obesity.
[47] M. Bredella,et al. Increased bone marrow fat in anorexia nervosa. , 2009, The Journal of clinical endocrinology and metabolism.
[48] G. Daley,et al. Bone marrow adipocytes as negative regulators of the hematopoietic microenvironment , 2009, Nature.
[49] M. Stampfer,et al. Weight loss with a low-carbohydrate, Mediterranean, or low-fat diet. , 2008, The New England journal of medicine.
[50] Lindsay W. Turnbull,et al. Age, gender, and skeletal variation in bone marrow composition: A preliminary study at 3.0Tesla , 2007 .
[51] J. Wylie-Rosett,et al. Diet and Lifestyle Recommendations Revision 2006: A Scientific Statement From the American Heart Association Nutrition Committee , 2006, Circulation.
[52] Ping Chung Leung,et al. Vertebral bone mineral density, marrow perfusion, and fat content in healthy men and men with osteoporosis: dynamic contrast-enhanced MR imaging and MR spectroscopy. , 2005, Radiology.
[53] D. Shahar,et al. Selection of food items for inclusion in a newly developed food-frequency questionnaire , 2004, Public Health Nutrition.
[54] R. Ross,et al. Skeletal muscle lipid concentration quantified by magnetic resonance imaging. , 2004, The American journal of clinical nutrition.
[55] E. Rimm,et al. Reproducibility and Validity of a Self‐Administered Physical Activity Questionnaire for Male Health Professionals , 1996, Epidemiology.
[56] C D Claussen,et al. Normal bone marrow in the sacrum of young adults: differences between the sexes seen on chemical-shift MR imaging. , 1995, AJR. American journal of roentgenology.
[57] B. Cortet,et al. Marrow adiposity and bone: Review of clinical implications. , 2019, Bone.
[58] M. Nogueira-Barbosa,et al. Marrow adipose tissue spectrum in obesity and type 2 diabetes mellitus. , 2017, European journal of endocrinology.
[59] W. Kerner,et al. Definition, classification and diagnosis of diabetes mellitus. , 2014, Experimental and clinical endocrinology & diabetes : official journal, German Society of Endocrinology [and] German Diabetes Association.
[60] K. Casazza,et al. Short-term physical activity intervention decreases femoral bone marrow adipose tissue in young children: a pilot study. , 2012, Bone.
[61] S. Slavin,et al. Conversion of red bone marrow into yellow - Cause and mechanisms. , 2007, Medical hypotheses.