Association between Birth Weight and Subcutaneous Fat Thickness at Adulthood in Dogs
暂无分享,去创建一个
[1] J. Suchodolski,et al. Environmental risk factors in puppies and kittens for developing chronic disorders in adulthood: A call for research on developmental programming , 2022, Frontiers in Veterinary Science.
[2] E. Poon,et al. Utility of high‐resolution ultrasound in measuring subcutaneous fat thickness , 2022, Lasers in surgery and medicine.
[3] H. Toplak,et al. Measuring subcutaneous fat thickness using skinfold calipers vs. high-resolution B-scan ultrasonography in healthy volunteers: A pilot study , 2021, Clinical Nutrition Open Science.
[4] Indrajeet Patil,et al. performance: An R Package for Assessment, Comparison and Testing of Statistical Models , 2021, J. Open Source Softw..
[5] Jérémy Laxalde,et al. Association between birth weight and risk of overweight at adulthood in Labrador dogs , 2020, PloS one.
[6] J. N. Figueiroa,et al. Fat Distribution among Children Born Extremely Low Birth Weight and Very Low Birth Weight: A Cohort Study. , 2020, Childhood obesity.
[7] R. Dias,et al. Prevalence of canine obesity in the city of São Paulo, Brazil , 2020, Scientific Reports.
[8] A. Chait,et al. Adipose Tissue Distribution, Inflammation and Its Metabolic Consequences, Including Diabetes and Cardiovascular Disease , 2020, Frontiers in Cardiovascular Medicine.
[9] Y. Nakano. Adult-Onset Diseases in Low Birth Weight Infants: Association with Adipose Tissue Maldevelopment , 2019, Journal of atherosclerosis and thrombosis.
[10] J. Jeong,et al. A simple method to evaluate body condition score to maintain the optimal body weight in dogs , 2019, Journal of animal science and technology.
[11] A. Astrup,et al. Abdominal fat distribution measured by ultrasound and aerobic fitness in young Danish men born with low and normal birth weight. , 2019, Obesity research & clinical practice.
[12] M. Gates,et al. Assessing obesity in adult dogs and cats presenting for routine vaccination appointments in the North Island of New Zealand using electronic medical records data , 2019, New Zealand veterinary journal.
[13] A. Verbrugghe,et al. Assessment of canine and feline body composition by veterinary health care teams in Ontario, Canada. , 2018, The Canadian veterinary journal = La revue veterinaire canadienne.
[14] P. Zeng,et al. Causal Association Between Birth Weight and Adult Diseases: Evidence From a Mendelian Randomization Analysis , 2018, bioRxiv.
[15] A. Hayes,et al. Impact of overweight, obesity and severe obesity on life expectancy of Australian adults , 2018, International Journal of Obesity.
[16] S. Holden,et al. Dangerous trends in pet obesity , 2018, Veterinary Record.
[17] Laurence E. Court,et al. Development and validation of a rapid and robust method to determine visceral adipose tissue volume using computed tomography images , 2017, PloS one.
[18] H. Weng,et al. Cardiac and Metabolic Variables in Obese Dogs , 2017, Journal of veterinary internal medicine.
[19] M. Świtoński,et al. Confirmation that a deletion in the POMC gene is associated with body weight of Labrador Retriever dogs. , 2017, Research in veterinary science.
[20] P. Yam,et al. Inaccurate Assessment of Canine Body Condition Score, Bodyweight, and Pet Food Labels: A Potential Cause of Inaccurate Feeding , 2017, Veterinary sciences.
[21] H. Ariyarathna,et al. Body condition score in large pure bred dogs: a preliminary study on agreement between owner's perception and scientific evaluation , 2017 .
[22] Severiano R. Silva,et al. In vivo assessment of subcutaneous fat in dogs by real-time ultrasonography and image analysis , 2016, Acta Veterinaria Scandinavica.
[23] A. Macko,et al. Intrauterine growth-restricted sheep fetuses exhibit smaller hindlimb muscle fibers and lower proportions of insulin-sensitive Type I fibers near term. , 2016, American journal of physiology. Regulatory, integrative and comparative physiology.
[24] K. Lindblad-Toh,et al. A Deletion in the Canine POMC Gene Is Associated with Weight and Appetite in Obesity-Prone Labrador Retriever Dogs , 2016, Cell metabolism.
[25] P. Yam,et al. Impact of canine overweight and obesity on health-related quality of life. , 2016, Preventive veterinary medicine.
[26] I. Blas,et al. Ultrasonographic Assessment of Regional Fat Distribution and Its Relationship With Body Condition in an Easy Keeper Horse Breed , 2016 .
[27] Randhir Singh,et al. Body condition score and its correlation with ultrasonographic back fat thickness in transition crossbred cows , 2015, Veterinary world.
[28] M. Patti,et al. Low birth weight is associated with adiposity, impaired skeletal muscle energetics, and weight loss resistance in mice , 2014, International Journal of Obesity.
[29] S. Holden,et al. Owner misperception of canine body condition persists despite use of a body condition score chart* , 2014, Journal of nutritional science.
[30] D. Bates,et al. Fitting Linear Mixed-Effects Models Using lme4 , 2014, 1406.5823.
[31] Lin Zhao,et al. Low Birth Weight Male Guinea Pig Offspring Display Increased Visceral Adiposity in Early Adulthood , 2014, PloS one.
[32] L. Weber,et al. Short-term obesity results in detrimental metabolic and cardiovascular changes that may not be reversed with weight loss in an obese dog model , 2014, British Journal of Nutrition.
[33] R. Bergman,et al. Is visceral fat a better predictor of the incidence of impaired glucose tolerance or type 2 diabetes mellitus than subcutaneous abdominal fat: a systematic review and meta-analysis of cohort studies. , 2014 .
[34] R Core Team,et al. R: A language and environment for statistical computing. , 2014 .
[35] A. Greenberg,et al. Sex differences in human adipose tissues – the biology of pear shape , 2012, Biology of Sex Differences.
[36] D. Laflamme. Companion Animals Symposium: Obesity in dogs and cats: What is wrong with being fat? , 2012, Journal of animal science.
[37] M. Izquierdo,et al. Ultrasonographic in vivo estimation of back fat depth and Longissimus dorsi area in Iberian pigs , 2012 .
[38] C. Fall. Evidence for the intra-uterine programming of adiposity in later life , 2011, Annals of human biology.
[39] Cedric E. Ginestet. ggplot2: Elegant Graphics for Data Analysis , 2011 .
[40] D J Mellor,et al. An epidemiological study of environmental factors associated with canine obesity. , 2010, The Journal of small animal practice.
[41] L. Hoffman,et al. The effect of age and gender on the fat distribution in Merino lambs , 2010 .
[42] Robert Ross,et al. Age-related changes in total and regional fat distribution , 2009, Ageing Research Reviews.
[43] A. Teixeira,et al. In vivo estimation of goat carcass composition and body fat partition by real-time ultrasonography. , 2008, Journal of animal science.
[44] J. Wren,et al. Canine obesity: an overview. , 2007, Journal of veterinary pharmacology and therapeutics.
[45] D. J. Barker. The origins of the developmental origins theory , 2007, Journal of internal medicine.
[46] J. Eriksson,et al. Birth size, adult body composition and muscle strength in later life , 2007, International Journal of Obesity.
[47] O. Hamdy,et al. Metabolic obesity: the paradox between visceral and subcutaneous fat. , 2006, Current diabetes reviews.
[48] J. Bénet,et al. Risk factors for obesity in dogs in France. , 2006, The Journal of nutrition.
[49] A. German. The growing problem of obesity in dogs and cats. , 2006, The Journal of nutrition.
[50] L. Lefaucheur,et al. Low birth weight is associated with enlarged muscle fiber area and impaired meat tenderness of the longissimus muscle in pigs. , 2006, Journal of animal science.
[51] R Staufenbiel,et al. Invited review: Methods to determine body fat reserves in the dairy cow with special regard to ultrasonographic measurement of backfat thickness. , 2006, Journal of dairy science.
[52] D. Laflamme. Nutrition for aging cats and dogs and the importance of body condition. , 2005, The Veterinary clinics of North America. Small animal practice.
[53] S R Silva,et al. Estimation in vivo of the body and carcass chemical composition of growing lambs by real-time ultrasonography. , 2005, Journal of animal science.
[54] P. J. Armstrong,et al. Prevalence and risk factors for obesity in adult cats from private US veterinary practices. , 2005 .
[55] A. Kruif,et al. Back fat measurements in sows from three commercial pig herds: relationship with reproductive efficiency and correlation with visual body condition scores , 2004 .
[56] D. Barker. The developmental origins of chronic adult disease , 2004, Acta paediatrica (Oslo, Norway : 1992). Supplement.
[57] A. D'avignon,et al. Comparison of various methods for estimating body fat in dogs. , 2004, Journal of the American Animal Hospital Association.
[58] M. Gillman,et al. Fetal origins of obesity. , 2003, Obesity research.
[59] Saskia J Te Velde,et al. Birth weight, adult body composition, and subcutaneous fat distribution. , 2003, Obesity research.
[60] Abdullah Al Mamun,et al. Obesity in Adulthood and Its Consequences for Life Expectancy: A Life-Table Analysis , 2003, Annals of Internal Medicine.
[61] T. Nakao,et al. Relationship between body condition score and ultrasonographic measurement of subcutaneous fat in dairy cows , 2001 .
[62] J. Speakman,et al. Validation of dual energy X-ray absorptiometry (DXA) by comparison with chemical analysis of dogs and cats , 2001, International Journal of Obesity.
[63] M. Niiyama,et al. Measurement of the back fat layer in beagles for estimation of obesity using two-dimensional ultrasonography. , 2001, The Journal of small animal practice.
[64] D. Laflamme. Development and validation of a body condition score system for dogs , 1997 .
[65] O. Vangen,et al. Breed and sex differences in fat distribution and mobilization in growing pigs fed at maintenance , 1996 .
[66] N. Mcewan,et al. Use of ultrasound in the measurement of subcutaneous fat and prediction of total body fat in dogs. , 1991, The Journal of nutrition.
[67] A. Kempster. Fat partition and distribution in the carcasses of cattle, sheep and pigs: A review. , 1981, Meat science.
[68] M. Susser,et al. Obesity in young men after famine exposure in utero and early infancy. , 1976, The New England journal of medicine.