Haffner SM, Stern MP, Mitchell BD, Hazuda HP, Patterson JK. Incidence of type II diabetes in Mexican Americans predicted by fasting insulin and glucose levels, obesity, and body-fat distribution. Diabetes. 1990;39:283–8. ArticleCAS Google Scholar
Tulloch-Reid MK, Hanson RL, Saremi A, Looker HC, Williams DE, Krakoff J, et al. Hematocrit and the incidence of type 2 diabetes in the pima indians. Diabetes Care. 2004;27:2245–6. Article Google Scholar
Xun P, Liu K, Cao W, Sidney S, Williams OD, He K. Fasting insulin level is positively associated with incidence of hypertension among American young adults: a 20-year follow-up study. Diabetes Care. 2012;35:1532–7. ArticleCAS Google Scholar
He J, Klag MJ, Caballero B, Appel LJ, Charleston J, Whelton PK. Plasma insulin levels and incidence of hypertension in African Americans and whites. Arch Intern Med. 1999;159:498–503. ArticleCAS Google Scholar
Mitchell BD, Haffner SM, Hazuda HP, Valdez R, Stern MP. The relation between serum insulin levels and 8-year changes in lipid, lipoprotein, and blood pressure levels. Am J Epidemiol. 1992;136:12–22. ArticleCAS Google Scholar
Folsom AR, Rasmussen ML, Chambless LE, Howard G, Cooper LS, Schmidt MI, et al. Prospective associations of fasting insulin, body fat distribution, and diabetes with risk of ischemic stroke. The Atherosclerosis Risk in Communities (ARIC) Study Investigators. Diabetes Care. 1999;22:1077–83. ArticleCAS Google Scholar
Reynolds RC, Stockmann KS, Atkinson FS, Denyer GS, Brand-Miller JC. Effect of the glycemic index of carbohydrates on day-long (10 h) profiles of plasma glucose, insulin, cholecystokinin and ghrelin. Eur J Clin Nutr. 2009;63:872–8. ArticleCAS Google Scholar
Del Prato S, Leonetti F, Simonson DC, Sheehan P, Matsuda M, DeFronzo R. Effect of sustained physiologic hyperinsulinaemia and hyperglycaemia on insulin secretion and insulin sensitivity in man. Diabetologia. 1994;37:1025–35. ArticleCAS Google Scholar
Salmeron J, Aschirio A, Rimm EB, Colditz GA, Spiegelman D, Jenkins DJ, et al. Dietary fiber, glycemic load, and risk of NIDDM in men. Diabetes Care. 1997;20:545–50. ArticleCAS Google Scholar
Salmeron J, Manson JE, Stampfer MJ, Colditz GA, Wing AL, Willett WC. Dietary fiber, glycemic load, and risk of non-insulin-dependent diabetes mellitus in women. J Am Med Assoc. 1997;277:472–7. ArticleCAS Google Scholar
Schwingshackl L, Hoffmann G. Long-term effects of low glycemic index/load vs. high glycemic index/load diets on parameters of obesity and obesity-associated risks: a systematic review and meta-analysis. Nutr Metab Cardiovasc Dis. 2013;23:699–706. https://doi.org/10.1016/j.numecd.2013.04.008. ArticleCASPubMed Google Scholar
Mayer EJ, Newman B, Quesenberry CP Jr, Selby JV. Usual dietary fat intake and insulin concentrations in healthy women twins. Diabetes Care. 1993;16:1459–69. ArticleCAS Google Scholar
Parker DR, Weiss ST, Troisi R, Cassano PA, Vokonas PS, Landsberg L. Relationship of dietary saturated fatty acids and body habitus to serum insulin concentrations: the Normative Aging Study. Am J Clin Nutr. 1993;58:129–36. ArticleCAS Google Scholar
Maron DJ, Fair JM, Haskell WL. Saturated fat intake and insulin resistance in men with coronary artery disease. The Stanford Coronary Risk Intervention Project Investigators and Staff. Circulation. 1991;84:2020–7. ArticleCAS Google Scholar
Marshall JA, Bessesen DH, Hamman RF. High saturated fat and low starch and fibre are associated with hyperinsulinaemia in a non-diabetic population: the San Luis Valley Diabetes Study. Diabetologia. 1997;40:430–8. https://doi.org/10.1007/s001250050697. ArticleCASPubMed Google Scholar
Manolio TA, Savage PJ, Burke GL, Hilner JE, Liu K, Orchard TJ, et al. Correlates of fasting insulin levels in young adults: the CARDIA study. J Clin Epidemiol. 1991;44:571–8. ArticleCAS Google Scholar
Jacobs DR Jr, Tapsell LC. Food, not nutrients, is the fundamental unit in nutrition. Nutr Rev. 2007;65:439–50. PubMed Google Scholar
Howard VJ, Cushman M, Pulley L, Gomez CR, Go RC, Prineas RJ, et al. The reasons for geographic and racial differences in stroke study: objectives and design. Neuroepidemiology. 2005;25:135–43. https://doi.org/10.1159/000086678. ArticlePubMed Google Scholar
Judd SE, Letter AJ, Shikany JM, Roth DL, Newby PK. Dietary patterns derived using exploratory and confirmatory factor analysis are stable and generalizable across race, region, and gender subgroups in the REGARDS Study. Front Nutr. 2014;1:29. https://doi.org/10.3389/fnut.2014.00029. ArticlePubMed Google Scholar
Juanola-Falgarona M, Salas-Salvado J, Ibarrola-Jurado N, Rabassa-Soler A, Diaz-Lopez A, Guasch-Ferre M, et al. Effect of the glycemic index of the diet on weight loss, modulation of satiety, inflammation, and other metabolic risk factors: a randomized controlled trial. Am J Clin Nutr. 2014;100:27–35. https://doi.org/10.3945/ajcn.113.081216. ArticleCASPubMed Google Scholar
Hill JO, Peters JC, Reed GW, Schlundt DG, Sharp T, Greene HL. Nutrient balance in humans: effects of diet composition. Am J Clin Nutr. 1991;54:10–7. ArticleCAS Google Scholar
Boden G, Sargrad K, Homko C, Mozzoli M, Stein TP. Effect of a low-carbohydrate diet on appetite, blood glucose levels, and insulin resistance in obese patients with type 2 diabetes. Ann Intern Med. 2005;142:403–11. ArticleCAS Google Scholar
Gower BA, Chandler-Laney PC, Ovalle F, Goree LL, Azziz R, Desmond RA, et al. Favourable metabolic effects of a eucaloric lower-carbohydrate diet in women with PCOS. Clin Endocrinol. 2013;79:550–7. https://doi.org/10.1111/cen.12175. ArticleCAS Google Scholar
Okuyama H, Langsjoen PH, Ohara N, Hashimoto Y, Hamazaki T, Yoshida S, et al. Medicines and vegetable oils as hidden causes of cardiovascular disease and diabetes. Pharmacology. 2016;98:134–70. https://doi.org/10.1159/000446704. ArticleCASPubMed Google Scholar
Tabung FK, Wang W, Fung TT, Hu FB, Smith-Warner SA, Chavarro JE, et al. Development and validation of empirical indices to assess the insulinaemic potential of diet and lifestyle. Br J Nutr. 2016:1–12. https://doi.org/10.1017/S0007114516003755.