Association between Cardiometabolic risk factor and responsiveness to vitamin D supplementation: a new approach using artificial neural network…

Lips P. Worldwide status of vitamin D nutrition. J Steroid Biochem Mol Biol. 2010;121(12):297300.

CAS PubMed Article Google Scholar

Feldman D, et al. The role of vitamin D in reducing cancer risk and progression. Nat Rev Cancer. 2014;14(5):342.

CAS PubMed Article Google Scholar

Behera KK, et al. Effect of vitamin D supplementation on thyroid autoimmunity among subjects of autoimmune thyroid disease in a coastal province of India: a randomized open-label trial. Nigerian Med J. 2020;61(5):237.

Article Google Scholar

Memon S, Alam A, Iftikhar S. The frequency of vitamin D deficiency in chronic kidney disease and its relation with baseline mineral bone markers. JPMA. 2020;70(3):4326.

Pettifor JM, Thandrayen K, Thacher TD. Vitamin D deficiency and nutritional rickets in children, in Feldman D, Pike JW, Adams J (eds): Vitamin D, ed 3. London: Elsevier; 2011. pp. 110728.

Akkermans MD, et al. Iron and vitamin D deficiency in healthy young children in Western Europe despite current nutritional recommendations. J Pediatr Gastroenterol Nutr. 2016;62(4):63542.

CAS PubMed Article Google Scholar

Bahrami A, et al. High dose vitamin D supplementation is associated with a reduction in depression score among adolescent girls: a nine-week follow-up study. J Diet Suppl. 2018;15(2):17382.

CAS PubMed Article Google Scholar

Kaddam IM, et al. Prevalence of vitamin D deficiency and its associated factors in three regions of Saudi Arabia: a cross-sectional study. Saudi Med J. 2017;38(4):381.

PubMed PubMed Central Article Google Scholar

Carrillo-Vega MF, et al. Vitamin D deficiency in older adults and its associated factors: a cross-sectional analysis of the Mexican health and aging study. Arch Osteoporos. 2017;12(1):8.

PubMed Article Google Scholar

Deplanque X, Wullens A, Norberciak L. Prevalence and risk factors of vitamin D deficiency in healthy adults aged 18-65 years in northern France. La Revue de Med Interne. 2017;38(6):36873.

CAS Article Google Scholar

Chao Y-S, et al. Vitamin D status of Canadians employed in northern latitudes. Occup Med. 2013;63(7):48593.

Article Google Scholar

Wagner CL, Greer FR. Prevention of rickets and vitamin D deficiency in infants, children, and adolescents. Pediatrics. 2008;122(5):114252.

PubMed Article Google Scholar

Greene-Finestone L, et al. 25-Hydroxyvitamin D in Canadian adults: biological, environmental, and behavioral correlates. Osteoporos Int. 2011;22(5):138999.

CAS PubMed Article Google Scholar

Sahota JK, Shaw N. Preventing vitamin D deficiency in children in the UK. Nurse Prescribing. 2014;12(12):596602.

Article Google Scholar

Smith S, et al. Space programs and space food systems. Nutritional Biochemistry of Space Flight. New York: Nova Science; 2009.

Google Scholar

Mazahery H, von Hurst P. Factors affecting 25-hydroxyvitamin D concentration in response to vitamin D supplementation. Nutrients. 2015;7(7):511142.

CAS PubMed PubMed Central Article Google Scholar

Moon RJ, et al. Determinants of the maternal 25-hydroxyvitamin D response to vitamin D supplementation during pregnancy. J Clin Endocrinol Metab. 2016;101(12):501220.

CAS PubMed PubMed Central Article Google Scholar

Dixon T, et al. An overview of the prevalence of 25-hydroxy-vitamin D inadequacy amongst elderly patients with or without fragility fracture in the United Kingdom. Curr Med Res Opin. 2006;22(2):40515.

CAS PubMed Article Google Scholar

Hollis BW, Wagner CL. The role of the parent compound vitamin D with respect to metabolism and function: why clinical dose intervals can affect clinical outcomes. J Clin Endocrinol Metab. 2013;98(12):461928.

CAS PubMed PubMed Central Article Google Scholar

Webb AR, Kline L, Holick MF. Influence of season and latitude on the cutaneous synthesis of vitamin D3: exposure to winter sunlight in Boston and Edmonton will not promote vitamin D3 synthesis in human skin. J Clin Endocrinol Metab. 1988;67(2):3738.

CAS PubMed Article Google Scholar

Lips P, et al. A global study of vitamin D status and parathyroid function in postmenopausal women with osteoporosis: baseline data from the multiple outcomes of raloxifene evaluation clinical trial. J Clin Endocrinol Metab. 2001;86(3):121221.

CAS PubMed Article Google Scholar

Shrewsbury V, et al. Transition to adult care in adolescent obesity: a systematic review and why it is a neglected topic. Int J Obes. 2014;38(4):475.

CAS Article Google Scholar

Rivera J, et al. Childhood and adolescent overweight and obesity in Latin America: a systematic review. Lancet Diab Endocrinol. 2014;2(4):32132.

Article Google Scholar

McGill A, et al. Relationships of low serum vitamin D3 with anthropometry and markers of metabolic syndrome and diabetes in overweightand obesity. Obes Metab. 2009;6(4):523.

Article Google Scholar

Pereira-Santos M, et al. Obesity and vitamin D deficiency: a systematic review and meta-analysis. Obes Rev. 2015;16(4):3419.

CAS PubMed Article Google Scholar

Ford ES, et al. Concentrations of serum vitamin D and the metabolic syndrome among US adults. Diabetes Care. 2005;28(5):122830.

CAS PubMed Article Google Scholar

Patel JL, Goyal RK. Applications of artificial neural networks in medical science. Curr Clin Pharmacol. 2007;2(3):21726.

PubMed Article Google Scholar

Ivanovi D, et al. ANN prediction of metabolic syndrome: a complex puzzle that will be completed. J Med Syst. 2016;40(12):264.

PubMed Article Google Scholar

Hirose H, et al. Prediction of metabolic syndrome using artificial neural network system based on clinical data including insulin resistance index and serum adiponectin. Comput Biol Med. 2011;41(11):10516.

CAS PubMed Article Google Scholar

Khayyatzadeh SS, et al. High-dose vitamin D supplementation is associated with an improvement in several cardio-metabolic risk factors in adolescent girls: a nine-week follow-up study. Ann Clin Biochem. 2018;55(2):22735.

CAS PubMed Article Google Scholar

Holick MF, et al. Evaluation, treatment, and prevention of vitamin D deficiency: an Endocrine Society clinical practice guideline. J Clin Endocrinol Metab. 2011;96(7):191130.

CAS PubMed Article Google Scholar

Delshad M, et al. Reliability and validity of the modifiable activity questionnaire for an Iranian urban adolescent population. Int J Prev Med. 2015;6:3.

Khorasanchi Z, et al. Passive smoking is associated with cognitive and emotional impairment in adolescent girls. J Gen Psychol. 2019;146(1):6878.

PubMed Article Google Scholar

Wen Z, Liao W, Chen S. Production of cellulase by Trichoderma reesei from dairy manure. Bioresour Technol. 2005;96(4):4919.

CAS PubMed Article Google Scholar

Cybenko G. Approximation by superpositions of a sigmoidal function. Math Control Signals Syst. 1989;2(4):30314.

Article Google Scholar

Kupusinac A, Stoki E, Doroslovaki R. Predicting body fat percentage based on gender, age and BMI by using artificial neural networks. Comput Methods Prog Biomed. 2014;113(2):6109.

Article Google Scholar

Zhao Y-Y, et al. Characterization of new nitrosamines in drinking water using liquid chromatography tandem mass spectrometry. Environ Sci Technol. 2006;40(24):763641.

CAS PubMed Article Google Scholar

Holick MF, et al. Guidelines for preventing and treating vitamin D deficiency and insufficiency revisited. J Clin Endocrinol Metab. 2012;97(4):11538.

CAS PubMed Article Google Scholar

Rahmaniyan M. Effects of race, geography, body habitus, diet, and exercise on vitamin D metabolism. In: Feldman D, Pike JW, Glorieux FH, editors. Vitamin D second edition. London: Elsevier Academic Press; 2005. p.789801.

Mo M, et al. A systematic review and meta-analysis of the response of serum 25-hydroxyvitamin D concentration to vitamin D supplementation from RCTs from around the globe. Eur J Clin Nutr. 2019;73:81634.

Bhattacharyya MH, DeLuca HF. The regulation of rat liver calciferol-25-hydroxylase. J Biol Chem. 1973;248(9):296973.

CAS PubMed Article Google Scholar

Chen JS, et al. Hypovitaminosis D and parathyroid hormone response in the elderly: effects on bone turnover and mortality. Clin Endocrinol. 2008;68(2):2908.

CAS Article Google Scholar

Isaia G, et al. Prevalence of hypovitaminosis D in elderly women in Italy: clinical consequences and risk factors. Osteoporos Int. 2003;14(7):57782.

CAS PubMed Article Google Scholar

Aloia JF, et al. Vitamin D intake to attain a desired serum 25-hydroxyvitamin D concentration. Am J Clin Nutr. 2008;87(6):19528.

CAS PubMed Article Google Scholar

Talwar SA, et al. Dose response to vitamin D supplementation among postmenopausal African American women. Am J Clin Nutr. 2007;86(6):165762.

CAS PubMed PubMed Central Article Google Scholar

Fu L, et al. Common genetic variants of the vitamin D binding protein (DBP) predict differences in response of serum 25-hydroxyvitamin D [25 (OH) D] to vitamin D supplementation. Clin Biochem. 2009;42(1011):11747.

CAS PubMed Article Google Scholar

Putman MS, et al. A randomized clinical trial of vitamin D supplementation in healthy adolescents. J Adolesc Health. 2013;52(5):5928.

PubMed Article Google Scholar

Rodrguez-Rodrguez E, et al. Vitamin D in overweight/obese women and its relationship with dietetic and anthropometric variables. Obesity. 2009;17(4):77882.

PubMed Article CAS Google Scholar

Tamer G, et al. Is vitamin D deficiency an independent risk factor for obesity and abdominal obesity in women? Endokrynol Polska. 2012;63(3):196201.

CAS Google Scholar

Vilarrasa N, et al. Low 25-hydroxyvitamin D concentrations in obese women: their clinical significance and relationship with anthropometric and body composition variables. J Endocrinol Investig. 2007;30(8):6538.

CAS Article Google Scholar

Snijder MB, et al. Adiposity in relation to vitamin D status and parathyroid hormone levels: a population-based study in older men and women. J Clin Endocrinol Metab. 2005;90(7):411923.

CAS PubMed Article Google Scholar

Mutt SJ, et al. Inhibition of cytokine secretion from adipocytes by 1, 25-dihydroxyvitamin D3 via the NF-B pathway. FASEB J. 2012;26(11):44007.

CAS PubMed Article Google Scholar

Mutt SJ, et al. Vitamin D and adipose tissuemore than storage. Front Physiol. 2014;5:228.

See the original post here:

Association between Cardiometabolic risk factor and responsiveness to vitamin D supplementation: a new approach using artificial neural network...

Related Posts

Comments are closed.