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weight and subsequent blood pressure: A meta-analysis",{"VOID":586},"[\"8545470210938002360\"]",{"VOID":588},"Wright, 1999, Hypertension: Epidemiology and contemporary management strategies, 133\nChen, 1995, Nutrition transition in China: the growth of affluent diseases with the alleviation of undernutrition, Asia Pacific J Clin Nutr, 4, 287\nUeshima, 2000, Epidemiology of hypertension in China and Japan, J Hum Hypertens, 14, 765, 10.1038\u002Fsj.jhh.1001054\nRose, 1985, Sick individuals and sick populations, Int J Epidemiol, 14, 32, 10.1093\u002Fije\u002F14.1.32\nBarker, 1989, Rise and fall of Western diseases, Nature, 338, 371, 10.1038\u002F338371a0\nBarker, 1997, Maternal nutrition, fetal nutrition, and disease in later life, Nutrition, 13, 807, 10.1016\u002FS0899-9007(97)00193-7\nByrne, 2000, Fetal origins of adult disease: epidemiology and mechanisms, J Clin Pathol, 53, 822, 10.1136\u002Fjcp.53.11.822\nGodfrey, 2000, Fetal nutrition and adult disease, Am J Clin Nutr, 71, 1344S, 10.1093\u002Fajcn\u002F71.5.1344s\nLangley-Evans, 1996, Role of glucocorticoids in programming of maternal diet-induced hypertension in the rat, J Nutr Biochem, 7, 173, 10.1016\u002F0955-2863(95)00197-2\nManning, 2001, Low birth weight-associated adult hypertension in the rat, Pediatr Nephrol, 16, 417, 10.1007\u002Fs004670000560\nPersson, 1992, Low birth weight is associated with elevated adult blood pressure in the chronically catheterized guinea-pig, Acta Physiol Scand, 145, 195, 10.1111\u002Fj.1748-1716.1992.tb09356.x\nBarker, 1989, Growth in utero, blood pressure in childhood and adult life, and mortality from cardiovascular disease, BMJ, 298, 564, 10.1136\u002Fbmj.298.6673.564\nBarker, 1989, Weight in infancy and death from ischaemic heart disease, Lancet, 2, 577, 10.1016\u002FS0140-6736(89)90710-1\nLaw, 1996, Is blood pressure inversely related to birth weight? The strength of evidence from a systematic review of the literature, J Hypertens, 14, 935, 10.1097\u002F00004872-199608000-00002\nWhincup, 1998, Fetal origins of cardiovascular risk: evidence from studies in children, Proc Nutr Soc, 57, 123, 10.1079\u002FPNS19980018\nBarker, 1986, Infant mortality, childhood nutrition, and ischaemic heart disease in England and Wales, Lancet, 1, 1077, 10.1016\u002FS0140-6736(86)91340-1\nBergvall, 2007, Genetic and shared environmental factors do not confound the association between birth weight and hypertension: a study among Swedish twins, Circulation, 115, 2931, 10.1161\u002FCIRCULATIONAHA.106.674812\nMartyn, 1995, Growth in utero, adult blood pressure, and arterial compliance, Br Heart J, 73, 116, 10.1136\u002Fhrt.73.2.116\nBarker, 2006, Commentary: birthweight and coronary heart disease in a historical cohort, Int J Epidemiol, 35, 886, 10.1093\u002Fije\u002Fdyl151\nFalkner, 2004, Effect of birth weight on blood pressure and body size in early adolescence, Hypertension, 43, 203, 10.1161\u002F01.HYP.0000109322.72948.24\nHirschler, 2008, Does low birth weight predict obesity\u002Foverweight and metabolic syndrome in elementary school children?, Arch Med Res, 39, 796, 10.1016\u002Fj.arcmed.2008.08.003\nJarvelin, 2004, Early life factors and blood pressure at age 31 years in the 1966 northern Finland birth cohort, Hypertension, 44, 838, 10.1161\u002F01.HYP.0000148304.33869.ee\nKistner, 2000, Increased blood pressure but normal renal function in adult women born preterm, Pediatr Nephrol, 15, 215, 10.1007\u002Fs004670000473\nLiew, 2008, The relationship between birthweight and early age-related maculopathy: the atherosclerosis risk in communities study, Ophthalmic Epidemiol, 15, 56, 10.1080\u002F09286580701613769\nLurbe, 2001, Birth weight influences blood pressure values and variability in children and adolescents, Hypertension, 38, 389, 10.1161\u002F01.HYP.38.3.389\nPyhala, 2009, Blood pressure responses to psychosocial stress in young adults with very low birth weight: Helsinki study of very low birth weight adults, Pediatrics, 123, 731, 10.1542\u002Fpeds.2008-0277\nSalgado, 2009, Low birth weight as a marker of changes in ambulatory blood pressure monitoring, Arq Bras Cardiol, 92, 107\nTian, 2006, Birth weight and risk of type 2 diabetes, abdominal obesity and hypertension among Chinese adults, Eur J Endocrinol, 155, 601, 10.1530\u002Feje.1.02265\nYarbrough, 1998, Birth weight, adult weight, and girth as predictors of the metabolic syndrome in postmenopausal women: the Rancho Bernardo study, Diabetes Care, 21, 1652, 10.2337\u002Fdiacare.21.10.1652\nYliharsila, 2003, Self-perpetuating effects of birth size on blood pressure levels in elderly people, Hypertension, 41, 446, 10.1161\u002F01.HYP.0000055780.21222.96\nBegg, 1994, Operating characteristics of a rank correlation test for publication bias, Biometrics, 50, 1088, 10.2307\u002F2533446\nLiew, 2008, Low birthweight is associated with narrower arterioles in adults, Hypertension, 51, 933, 10.1161\u002FHYPERTENSIONAHA.107.101584\nWei, 2003, Low birth weight and high birth weight infants are both at an increased risk to have type 2 diabetes among schoolchildren in Taiwan, Diabetes Care, 26, 343, 10.2337\u002Fdiacare.26.2.343\nEriksson, 2000, Fetal and childhood growth and hypertension in adult life, Hypertension, 36, 790, 10.1161\u002F01.HYP.36.5.790\nTamakoshi, 2006, Birth weight and adult hypertension: cross-sectional study in a Japanese workplace population, Circ J, 70, 262, 10.1253\u002Fcircj.70.262\nHuxley, 2002, Unravelling the fetal origins hypothesis: is there really an inverse association between birthweight and subsequent blood pressure?, Lancet, 360, 659, 10.1016\u002FS0140-6736(02)09834-3\nWells GA, Shea B, O’Connell D, et al. The Newcastle-Ottawa Scale (NOS) for assessing the quality of nonrandomized studies in meta-analyses. Accessed June 2009. http:\u002F\u002Fwww.ohri.ca\u002Fprograms\u002Fclinical_epidemiology\u002Foxford.asp\nHiggins, 2003, Measuring inconsistency in meta-analyses, BMJ, 327, 557, 10.1136\u002Fbmj.327.7414.557\nBarker, 2002, Growth and living conditions in childhood and hypertension in adult life: a longitudinal study, J Hypertens, 20, 1951, 10.1097\u002F00004872-200210000-00013\nHardy, 2003, Birthweight, childhood social class, and change in adult blood pressure in the 1946 British birth cohort, Lancet, 362, 1178, 10.1016\u002FS0140-6736(03)14539-4\nKoupil, 2005, Birth weight, hypertension and “white coat” hypertension: size at birth in relation to office and 24-h ambulatory blood pressure, J Hum Hypertens, 19, 635, 10.1038\u002Fsj.jhh.1001868\nZhao, 2002, Birthweight, childhood growth and hypertension in adulthood, Int J Epidemiol, 31, 1043, 10.1093\u002Fije\u002F31.5.1043\nDyck, 2001, From “thrifty genotype” to “hefty fetal phenotype”: the relationship between high birthweight and diabetes in Saskatchewan registered Indians, Can J Public Health, 92, 340, 10.1007\u002FBF03404975\nMcCance, 1994, Birth weight and non-insulin dependent diabetes: thrifty genotype, thrifty phenotype, or surviving small baby genotype?, BMJ, 308, 942, 10.1136\u002Fbmj.308.6934.942\nBarker, 1992\nLangley-Evans, 2001, Fetal programming of cardiovascular function through exposure to maternal undernutrition, Proc Nutr Soc, 60, 505, 10.1079\u002FPNS2001111\nBarker, 2005, Trajectories of growth among children who have coronary events as adults, N Engl J Med, 353, 1802, 10.1056\u002FNEJMoa044160\nBarker, 1993, Fetal nutrition and cardiovascular disease in adult life, Lancet, 341, 938, 10.1016\u002F0140-6736(93)91224-A\nSmith, 2005, Birth weight of offspring and subsequent cardiovascular mortality of the parents, Epidemiology, 16, 563, 10.1097\u002F01.ede.0000164790.96316.c0\nBarker, 1998\nFranco, 2006, Effects of low birth weight in 8 to 13-year-old children: implications in endothelial 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up to 36hours after arterial switch procedure in neonates without pre-existing brain damage: its relationship to neurodevelopmental outcome, Exp Brain Res, 165, 343, 10.1007\u002Fs00221-005-2300-3\nvan Wezel-Meijler, 2010, Cranial ultrasonography in neonates: role and limitations, Semin Perinatol, 34, 28, 10.1053\u002Fj.semperi.2009.10.002\nPerlman, 1981, The effect of patent ductus arteriosus on flow velocity in the anterior cerebral arteries: ductal steal in the premature newborn infant, J Pediatr, 99, 767, 10.1016\u002FS0022-3476(81)80408-8\nDix, 2016, Cerebral oxygenation and echocardiographic parameters in preterm neonates with a patent ductus arteriosus: an observational study, Arch Dis Child Fetal Neonatal Ed, 101, F520, 10.1136\u002Farchdischild-2015-309192\nJacobs, 2011, Transposition of the great arteries: lessons learned about patterns of practice and outcomes from the congenital heart surgery database of the society of thoracic surgeons, World J Pediatr Congenit Heart Surg, 2, 19, 10.1177\u002F2150135110381392\nNorwood, 1988, Intermediate results of the arterial switch repair. 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