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Text book of foundations and adult health nursing. Richman RL, United states of America Mosbey press Icn2004. 1784 p.\nR. G. Epidemiology of diabetes. Adv Drug Deliv Rev. 2002; 54 (9):1165-72.\nStates CNdfsneagiodapitU. Atlanta, GA: US Department of Health and Human Services, CDC; 2011. Available from: http:\u002F\u002Fwww.cdc.gov\u002Fdiabetes\u002Fpubs\u002Ffactsheet11.htm.\nNational Diabetes Statistics Report, 2014. 2014 2017. Report No.\nAvailable from: http:\u002F\u002Fwww.who.int\u002Fmediacentre\u002Ffactsheets\u002Ffs312\u002Fen\u002F.\nDelavary A, Mahdavi hezave. A, Noroozy nezhad, Yarahmadi S. National prevention and control program for diabetes. Health Department, CDC, Office glands and metabolic, Tehran: Nashre seda center:138. 15, 7, 9 p.\nShirazi, 2011, The effect of self care program education by group discussion method on self concept in diabetic adolescent girls reffered to Iranian Diabetes Society, Iran J Nurs Res, 6\nhttp:\u002F\u002Fvizhub.healthdata.org\u002Fgbd-compare\u002F.\nRezaee, 2001, Others KAa Rate of self care Insolin Therapy in Diabetics patients type 1 referred to Diabetic research center of Kermanshah, J Behbood, 6, 47\nDiabetes Report Card, 2014\nMohamad, 2012\nBagheri Ebrahimi, 2005, Survey quality of life in Diabetics patients based on complication, referred to emamhosain hospital of Shahrood, City Kord Univ Med Sci, 7, 0\nLandim, 2011, Self-care competence in the case of Brazilian patients with diabetes mellitus in a multiprofessional educational programme, J Clin Nurs, 20, 340, 10.1111\u002Fj.1365-2702.2011.03883.x\nRamachandran, 2000, Vascular complications in young Asian Indian patients with type 1 diabetes mellitus, J Diab Rsrch Clin Prac, 48, 1\nLim, 2009, A nationwide survey about the current status of glycemic control and complications in diabetic patients in 2006The committee of the Korean diabetes association on the epidemiology of diabetes mellitus, Korean Diabetes J, 33, 48, 10.4093\u002Fkdj.2009.33.1.48\nAssociation AD, 2017, Standards of Medical Care in Diabetes 2017, Diabet Care, 40, 33\nMohsen, 2008\nShakeshaft, 2003, Using patient-driven computers to provide cost-effective prevention in primary care: a conceptual framework, Health Promot Int, 18, 67, 10.1093\u002Fheapro\u002F18.1.67\nCroyle, 2005\nMohsen, 2012\nTaghdisi, 2011, Effect of educational program based on PRECED model on quality of life in patients with typeII diabetes, J Gorgan Univ Med Sci, 13, 29\nFatemehsadat, 2014, PRECEDE − PROCEED model the impact of an educational intervention based on PRECEDE − PROCEED model on lifestyle changes among hypertension patient, J Health Educ Health Promotion, 2, 17\nSalinero-Fort, 2011, Effectiveness of PRECEDE model for health education on changes and level of control of HbA1c, blood pressure, lipids, and body mass index in patients with type 2 diabetes mellitus, BMC Public Health, 11, 267, 10.1186\u002F1471-2458-11-267\nFarshad F. Primary Results of STEPs 20162017:[22-6 pp.].\nTahere, 2008, Planning and evaluation of an educational intervention programme to improve life quality in patients after coronary artery bypass graft-surgery according to PRECEDE-PROCEED model, J Birjand Univ Med Sci, 15, 27\nMahdi, 2017, Effect of Precede–Proceed model on preventive behaviors for type 2 diabetes mellitus in high-Risk individuals, Clin Nurs Res, 26, 241, 10.1177\u002F1054773815621026\nZigheymat, 2009, Effect of education based on precede-proceed model on knowledge, attitude and behavior of epilepsy patients, J Behav Sci, 3, 223\nYeo, 2007, Development of an early psychosis public education program using the PRECEDE–PROCEED model, Health Educ Res, 22, 639, 10.1093\u002Fher\u002Fcyl126\nChaing Lichi, Huang Jing-long, Chang-Ming L., Educational diagnosis of self-managment behaviors of parents with asthmatic children by triangulation based on PRECEDE-PROCEED model in Taiwan. Patient Education and Counseling. 2003, 49:19-21.\nAlexander, 2003, An evaluation of a support group for breast-feeding women in Salisbury, UK, Midwifery, 19, 215, 10.1016\u002FS0266-6138(03)00033-0\nBidi, 2013, Effectiveness of educational program on knowledge, attitude, self care and life style in patients with type II diabetes, Q J Sabzevar Univ Med Sci, 19, 336\nYates, 2004, A randomized controlled trial of a nurse-administered educational intervention for improving cancer pain management in ambulatory setting, Patient Educ Couns, 53, 227, 10.1016\u002FS0738-3991(03)00165-4\nZendehtalab, 2012, The effect of a program designed based on PRECEDE-PROCEED model on adolescents’ mental health and their parents’ participatio, Evid Based Care, 2, 45\nZigheymat, 2009, Effect of education based on precede-proceed model on knowledge, attitude and behavior of epilepsy patients, J Behav Sci, 3\nShakerinejad, 2011, Effect of educational program on safety behavior of primary school students for earthquake according precede model in Ahvaz city, J School Public Health Inst Public Health Res Yazd, 2, 174\nNazari, 2008, Interventions based on PRECEDE-PROCEED for promoting safety behaviors in primary school boys, Armaghan Danesh, 13, 83\nGoodarzy Mandana, Ebrahimzade Esa ea. The relationship between knowledge, attitude and performance with efficacy in patients with type II diabetes in Karaj. Iranian Journal of Diabetes and Lipid Disorders. 2012;11(3):269-81.\nKhezrloo Somaye, Feyzi DA. Examine the relationship between self-efficacy and self care in patients with diabetes referred to diabetes clinic of Urmia. 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2001, Diet, lifestyle, and the risk of type 2 diabetes mellitus in women, N Engl J Med, 345, 790, 10.1056\u002FNEJMoa010492\nWorld Health Organization, 2016\nKopelman, 2000, Obesity as a medical problem, Nature, 404, 635, 10.1038\u002F35007508\nLowry, 2000, Physical activity, food choice, and weight management goals and practices among US college students, Am J Prev Med, 18, 18, 10.1016\u002FS0749-3797(99)00107-5\nDror, 2014, Dairy consumption and pre-school, school-age and adolescent obesity in developed countries: a systematic review and meta-analysis, Obes Rev, 15, 516, 10.1111\u002Fobr.12158\nKelder, 1994, Longitudinal tracking of adolescent smoking, physical activity, and food choice behaviours, Am J Public Health, 84, 1121, 10.2105\u002FAJPH.84.7.1121\nProimos, 2012, Noncommunicable diseases in children and adolescents, Pediatrics, 130, 379, 10.1542\u002Fpeds.2012-1475\nCairns, 2013, Systematic reviews of the evidence on the nature, extent and effects of food marketing to children: a retrospective summary, Appetite, 62, 209, 10.1016\u002Fj.appet.2012.04.017\nMcGill, 2015, Are interventions to promote healthy eating equally effective for all? Systematic review of socioeconomic inequalities in impact, BMC Public Health, 15, 457, 10.1186\u002Fs12889-015-1781-7\nAjzen, 1991, The theory of planned behaviour, Organ Behav Hum Decis Process, 50, 179, 10.1016\u002F0749-5978(91)90020-T\nDennison, 2008, Adolescent food choice: an application of the Theory of Planned Behaviour, J Hum Nutr Diet, 8, 9, 10.1111\u002Fj.1365-277X.1995.tb00292.x\nMcDermott, 2015, The theory of planned behaviour and discrete food choices: a systematic review and meta-analysis, Int J Behav Nutr Phys Act, 12, 162, 10.1186\u002Fs12966-015-0324-z\nFrancis, 2004\nGodin, 2004, Does perceived behavioural control mediate the relationship between power beliefs and intention?, Br J Health Psychol, 9, 557, 10.1348\u002F1359107042304614\nTaghdisi, 2016, Effect of educational intervention on the fruit and vegetables consumption among the students: applying theory of planned behavior, J Res Health Sci, 16, 195\nHardeman, 2002, Application of the theory of planned behaviour in behaviour change interventions: a systematic review, Psychol Health, 17, 123, 10.1080\u002F08870440290013644a\nChen, 2013, Factors associated with being overweight among Inner Mongolia medical students in China, BMJ Open, 3, e003900, 10.1136\u002Fbmjopen-2013-003900\nBian, 2012, Prevalence of and factors associated with daily smoking among Inner Mongolia medical students in China: a cross-sectional questionnaire survey, Subst Abuse Treat Prev Policy, 7, 20, 10.1186\u002F1747-597X-7-20\nSun, 2013, Factors associated with skipping breakfast among Inner Mongolia medical students in China, BMC Public Health, 13, 42, 10.1186\u002F1471-2458-13-42\nKristal, 1999, How can stages of change be best used in dietary interventions?, J Am Diet Assoc, 99, 679, 10.1016\u002FS0002-8223(99)00165-0\nProchaska, 1994, Stages of change and decisional balance for 12 problem behaviours, Health Psychol, 13, 39, 10.1037\u002F0278-6133.13.1.39\nProchaska, 1997, The transtheoretical model of health behaviour change, Am J Health Promot, 12, 38, 10.4278\u002F0890-1171-12.1.38\nCohen, 1992, A power primer, Psychol Bull, 112, 155, 10.1037\u002F0033-2909.112.1.155\nHooper, 2008, Structural equation modelling: guidelines for determining model fit, Electron J Bus Res Methods, 6, 53\nPan, 2012, Exporting diabetes to Asia: the impact of western-style fast food, Circulation, 126, 163, 10.1161\u002FCIRCULATIONAHA.112.115923\nShuangquan Burentegusi Yu, 2006, Microflora in traditional starter cultures for fermented milk, hurunge, from Inner Mongolia, China, Anim Sci J, 77, 235, 10.1111\u002Fj.1740-0929.2006.00343.x\nBarnidge, 2012, Understanding and addressing barriers to implementation of environmental and policy intervention to support physical activity and healthy eating in rural communities, J Rural Health, 29, 97, 10.1111\u002Fj.1748-0361.2012.00431.x\nFan, 2010, Emotional and behavioral problems of Chinese left-behind children: a preliminary study, Soc Psychiatry Psychiatr Epidemiol, 45, 655, 10.1007\u002Fs00127-009-0107-4\nHuang, 2015, Health-related quality of life of the rural-China left-behind children or adolescents and influential factors: a cross-sectional study, Health Qual Life Outcomes, 13, 29, 10.1186\u002Fs12955-015-0220-x\nConner, 2002, The theory of planned behaviour and healthy eating, Health Psychol, 21, 194, 10.1037\u002F0278-6133.21.2.194\nAikman, 2006, Food attitudes, eating behaviour, and the information underlying food attitudes, Appetite, 47, 111, 10.1016\u002Fj.appet.2006.02.004\nBrown, 2004, Children’s eating attitudes and behaviour: a study of the modelling and control theories of parental influence, Health Educ Res, 19, 261, 10.1093\u002Fher\u002Fcyg040\nO’Dea, 2000, Improving the body image, eating attitudes, and behaviors of young male and female adolescents: a new educational approach that focuses on self-esteem, Int J Eat Disord, 28, 43, 10.1002\u002F(SICI)1098-108X(200007)28:1\u003C43::AID-EAT6>3.0.CO;2-D\nDudley, 2015, Teaching 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2020, Clinical characteristics of coronavirus disease 2019 in China, N Engl J Med, 382, 1708, 10.1056\u002FNEJMoa2002032\nSohrabi, 2020, World Health Organization declares global emergency: a review of the 2019 novel coronavirus (COVID-19), Int J Surg, 76, 71, 10.1016\u002Fj.ijsu.2020.02.034\nWu, 2020, Characteristics of and important lessons from the coronavirus disease 2019 (COVID-19) outbreak in China: summary of a report of 72314 cases from the Chinese Center for Disease Control and Prevention, J Am Med Assoc, 323, 1239, 10.1001\u002Fjama.2020.2648\nChung, 2020, The risk of diabetes on clinical out-comes in patients with coronavirus disease 2019: a retrospective cohort study, Diabetes Metab J, 44, 405, 10.4093\u002Fdmj.2020.0105\nYan, 2020, Clinical characteristics and outcomes of patients with severe COVID-19 with diabetes, BMJ Open Diab Res Care, 8, 10.1136\u002Fbmjdrc-2020-001343\n2019\nVan Kerkhove, 2011, Risk factors for severe outcomes following 2009 influenza A (H1N1) infection: a global pooled analysis, PLoS Med, 8, 10.1371\u002Fjournal.pmed.1001053\nLi, 2020, Prevalence and impact of cardiovascular metabolic diseases on COVID-19 in China, Clin Res Cardiol, 109, 531, 10.1007\u002Fs00392-020-01626-9\nHuang, 2020, Diabetes mellitus is associated with increased mortality and severity of disease in COVID-19 pneumonia - a systematic review, meta-analysis, and meta-regression, Diabetes Metabolic Synd. Clin. Res. Rev., 14, 395e403\nHussain, 2020, COVID-19 and diabetes: knowledge in progress, Diabetes Res Clin Pract, 162, 108142, 10.1016\u002Fj.diabres.2020.108142\nOrtiz-Núñez, 2020, Análisis métrico de la producción científica sobre COVID-19 en SCOPUS, Rev Cubana Inf Cienc Salud, 31, e1587\nTorres-Salinas, 2020, Ritmo de crecimiento diario de la producción científica sobre Covid-19. Análisis en bases de datos y repositorios en acceso abierto, Prof Inferm, 29\nGregorio-Chaviano, 2020, Análisis bibliométrico de la producción científica latinoamericana sobre COVID-19, Biomedica, 40\nChahrour, 2020, A bibliometric analysis of COVID-19 research activity: a call for increased output, Cureus, 12\nHossain, 2020, Current status of global research on novel coronavirus disease (COVID-19): a bibliometric analysis and knowledge mapping, F1000Research, 374, 10.12688\u002Ff1000research.23690.1\nBelli, 2020, Coronavirus mapping in scientific publications: when science advances rapidly and collectively, is access to this knowledge open to society?, Scientometrics, 124, 2661, 10.1007\u002Fs11192-020-03590-7\nBonilla-Aldana, 2020, SARS-CoV, MERS-CoV and now the 2019-novel CoV: have we investigated enough about coronaviruses? – a bibliometric analysis, Trav Med Infect Dis, 33, 101566, 10.1016\u002Fj.tmaid.2020.101566\nDi Girolamo, 2020, Characteristics of scientific articles on COVID-19 published during the initial 3 months of the pandemic, Scientometrics, 125, 795, 10.1007\u002Fs11192-020-03632-0\nTorres, 2020, Análisis bibliométrico de la producción científica latinoamericana y del Caribe sobre COVID-19 en PUBMED, Rev Cubana Inf Cienc Salud, 31\nLou, 2020, Coronavirus disease 2019: a bibliometric analysis and review, Eur Rev Med Pharmacol Sci, 24, 3411\nForero-Peña, 2020, COVID-19 en Latinoamérica: una revisión sistemática de la literatura y análisis bibliométrico, Rev. Salud Pública., 22, 1, 10.15446\u002Frsap.v22n2.86878\nHirsch, 2005, An index to quantify an individual’s scientific research output, Proc Natl Acad Sci USA, 102, 16569, 10.1073\u002Fpnas.0507655102\nJin, 2007, The R-and AR-indices: complementing the h-index, Chin Sci Bull, 52, 855, 10.1007\u002Fs11434-007-0145-9\nMoya-Anegón, 2013, The research guarantors of scientific papers and the output counting: a promising new approach, Scientometrics, 97, 421, 10.1007\u002Fs11192-013-1046-0\nPerianes-Rodriguez, 2016, Constructing bibliometric networks: a comparison between full and fractional counting, J Informetr, 10, 1178, 10.1016\u002Fj.joi.2016.10.006\nMongeon, 2016, The journal coverage of Web of Science and Scopus: a comparative analysis, Scientometrics, 106, 213, 10.1007\u002Fs11192-015-1765-5\nAleixandre, 2013, Coautoría y redes de colaboración científica de la pediatría española (2006-2010), An Pediatr, 78\nAmaro-Ares, 2018, El impacto de las publicaciones seriadas y su efecto sobre la producción científica cubana sobre Bibliotecología y Ciencias de la Información, Bib An Invest, 14, 34\nCorrales-Reyes, 2019, Cuban scientific production on diabetes, 2000-2017: peer-reviewed publications, collaboration and impact, MEDICC Rev, 21, 19\nCorrales-Reyes, 2020, Visibility and impact of the Cuban dental scientific output, Scopus 1995-2017, J Oral Res, 9, 129",{"EN":393},"COVID-19 and diabetes: Analysis of the scientific production indexed in Scopus",{"VOID":395},"10.1016\u002Fj.dsx.2021.03.002","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS1871402121000709",[398,413,428],{"id":399,"sortIndex":192,"researcher":18,"roles":400,"affiliations":401,"properties":410},"4af4c621-037b-4d79-8e5b-42edf1d3c5c1",[136],[402],{"id":18,"sortIndex":19,"affiliation":403,"properties":18},{"id":404,"createTime":405,"updateTime":405,"relativeEntities":406,"slug":18,"properties":407,"entityType":55,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"3ee8fc5b-1a12-471f-b419-62e10ccb1e47","2024-02-10T01:39:06.314+00:00",[],{"title":408},{"VI":409},"Translational Medicine Research Center, Norbert Wiener University, Peru",{"title":411},{"VI":412},"Christian R. 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Role of insulin resistance in human disease, Diabetes, 37, 1595, 10.2337\u002Fdiabetes.37.12.1595\nLies, 1998, Development of the multiple metabolic syndrome: an epidemiologic perspective, Epidemiologic Reviews, 20, 157, 10.1093\u002Foxfordjournals.epirev.a017978\nHaffner, 1992, Prospective analysis of the insulin-resistance syndrome (syndrome X), Diabetes, 41, 715, 10.2337\u002Fdiabetes.41.6.715\nFriend A, Craig L, Turner S. Theprevalence of metabolic syndrome in children: a systematic review of the literature. Metabolic Syndrome and Related Disorders.\nFord, 2010, Prevalence and correlates of metabolic syndrome based on a harmonious definition among adults in the US, Journal of Diabetes, 2, 180, 10.1111\u002Fj.1753-0407.2010.00078.x\nErvin, 2009, Prevalence of metabolic syndrome among adults 20 years of age and over, by sex, age, race and ethnicity, and body mass index: United States, 2003–2006, National Health Statistics Reports, 13, 1\nPark, 2012, Sex differences in the relationship between socioeconomic status and metabolic syndrome: the Korean National Health and Nutrition Examination Survey, Diabetes Research and Clinical Practice, 96, 400, 10.1016\u002Fj.diabres.2011.12.025\n2001, Executive summary of the third report of the National Cholesterol Education Program (NCEP) expert panel on detection, evaluation, and treatment of high blood cholesterol in adults (adult treatment panel III), Journal of American Medical Association, 285, 2486, 10.1001\u002Fjama.285.19.2486\nAlberti, 2005, The metabolic syndrome—a new worldwide definition, Lancet, 366, 1059, 10.1016\u002FS0140-6736(05)67402-8\nFord, 2011, Prevalence and correlates of metabolic syndrome based on a harmonious definition among adults in the US, Journal of Diabetes, 2, 180, 10.1111\u002Fj.1753-0407.2010.00078.x\nSumner, 2012, Components of the metabolic syndrome differ between young and old adults in the US population, Journal of Clinical Hypertension (Greenwich), 14, 502, 10.1111\u002Fj.1751-7176.2012.00647.x\nFord, 2008, Metabolic syndrome and health-related quality of life among U.S. adult, Annals of Epidemiology, 18, 165, 10.1016\u002Fj.annepidem.2007.10.009\nTziallas, 2012, The impact of the metabolic syndrome on health-related quality of life: a cross-sectional study in Greece, European Journal of Cardiovascular Nursing, 11, 297, 10.1016\u002Fj.ejcnurse.2011.02.004\nRoohafza, 2012, Psychological status and quality of life in relation to the metabolic syndrome: Isfahan Cohort Study, International Journal of Endocrinology, 2012, 380902, 10.1155\u002F2012\u002F380902\nLee, 2012, Health-related quality of life in adults with metabolic syndrome: the Korea national health and nutrition examination survey, 2007–2008, Annals of Nutrition and Metabolism, 61, 275, 10.1159\u002F000341494\nVetter, 2011, Relation of health-related quality of life to metabolic syndrome, obesity, depression and comorbid illnesses, International Journal of Obesity (London), 35, 1087, 10.1038\u002Fijo.2010.230\nCarroll, 2012, Trends in lipids and lipoproteins in US adults, 1988–2010, Journal of American Medical Association, 308, 1545, 10.1001\u002Fjama.2012.13260\nAmerican Psychiatric Association, 1994\nSAS release 9. Cary, NC: SAS Institute.\nShah BV, Bernwell BG, Bieler GS. SUDAAN User's manual. Research Triangle Park, NC.\nWolter, 1990\nAmuna, 2008, Epidemiological and nutrition transition in developing countries: impact on human health and development, Proceedings of the Nutrition Society, 67, 82, 10.1017\u002FS0029665108006058\nMisra, 2008, Obesity and the metabolic syndrome in developing countries, Journal of Clinical Endocrinology and Metabolism, 93, S9, 10.1210\u002Fjc.2008-1595\nBatsis, 2007, Metabolic syndrome: from global epidemiology to individualized medicine, Clinical Pharmacology and Therapeutics, 82, 509, 10.1038\u002Fsj.clpt.6100355\nJames, 2004, International Obesity Task Force. The obesity epidemic, metabolic syndrome and future prevention strategies, European Journal of Cardiovascular Prevention and Rehabilitation, 11, 3, 10.1097\u002F01.hjr.0000114707.27531.48\nOunpuu, 2001, Validity of the US Behavioral Risk Factor Surveillance System's health related quality of life survey tool in a group of older Canadians, Chronic Diseases in Canada, 22, 93\nMoriarty, 2003, The Centers for Disease Control and Prevention's Healthy Days Measuresd Population tracking of perceived physical and mental health over time, Health and Quality of Life Outcomes, 1, 37, 10.1186\u002F1477-7525-1-37\nAndresen, 1999, Performance of health-related quality-of-life instruments in a spinal cord injured population, Archives of Physical Medicine and Rehabilitation, 80, 877, 10.1016\u002FS0003-9993(99)90077-1\nNewschaffer, 1998\nAndresen, 2000, Reliability and validity of disability questions for US Census 2000, American Journal of Public Health, 90, 1297, 10.2105\u002FAJPH.90.8.1297\nAndresen, 2003, Retest reliability of surveillance questions on health related quality of life, Journal of Epidemiology and Community Health, 57, 339, 10.1136\u002Fjech.57.5.339\nOunpuu, 2000, Using the U. S. Behavior Risk Factor Surveillance System's health related quality of life survey tool in a Canadian city, Canadian Journal of Public Health. 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Effects of ramipril on cardiovascular and microvascular outcomes in people with diabetes mellitus: results of the HOPE study and MICRO-HOPE substudy. 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Is it important? How to measure it?, J. Diabetes. Sci. Technol., 2, 1094, 10.1177\u002F193229680800200618\nLin, 2012, Variation of fasting plasma glucose: a predictor of mortality in patients with type 2 diabetes, Am J Med, 125, 416, 10.1016\u002Fj.amjmed.2011.07.027\nLin, 2012, Annual fasting plasma glucose variation increases risk of cancer incidence and mortality in patients with type 2 diabetes: the Taichung Diabetes Study, Endocr Relat Canc, 19, 473, 10.1530\u002FERC-12-0038\nZoppini, 2008, Variability of body weight, pulse pressure and glycaemia strongly predict total mortality in elderly type 2 diabetic patients. The verona diabetes study, Diabetes Metabol. Res. Rev., 24, 624, 10.1002\u002Fdmrr.897\nKrinsley, 2008, Glycemic variability: a strong independent predictor of mortality in critically ill patients, Crit Care Med, 36, 3008, 10.1097\u002FCCM.0b013e31818b38d2\nHermanides, 2010, Glucose variability is associated with intensive care unit mortality, Crit Care Med, 38, 838, 10.1097\u002FCCM.0b013e3181cc4be9\nVestbo, 2013, Global strategy for the diagnosis, management, and prevention of chronic obstructive pulmonary disease: GOLD executive summary, Am J Respir Crit Care Med, 187, 347, 10.1164\u002Frccm.201204-0596PP\nStrain, 2018, Diabetes, cardiovascular disease and the microcirculation, Cardiovasc Diabetol, 17, 57, 10.1186\u002Fs12933-018-0703-2\nHershey, 2017, Importance of glycemic control in cancer patients with diabetes: treatment through end of life, Asia Pac. J. Oncol. 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A consensus statement from the international diabetes federation, Diabet Med, 23, 469, 10.1111\u002Fj.1464-5491.2006.01858.x\nKGMM, 1998, Definition, diagnosis and classification of diabetes mellitus and its complications. Part 1: diagnosis and classification of diabetes mellitus. Provisional report of a WHO consultation, Diabet Med, 15, 539, 10.1002\u002F(SICI)1096-9136(199807)15:7\u003C539::AID-DIA668>3.0.CO;2-S\nButnoriene, 2015, Metabolic syndrome, major depression, generalized anxiety disorder, and ten-year all-cause and cardiovascular mortality in middle aged and elderly patients, Int J Cardiol, 190, 360, 10.1016\u002Fj.ijcard.2015.04.122\nBarbieri, 2001, New aspects of the insulin resistance syndrome: impact on haematological parameters, Diabetologia, 44, 1232, 10.1007\u002Fs001250100634\nWang, 2004, Association between hematological parameters and metabolic syndrome components in a Chinese population, J Diabetes Complicat, 18, 322, 10.1016\u002FS1056-8727(04)00003-0\nJesri, 2005, Platelet and white blood cell counts are elevated in patients with the metabolic syndrome, J Clin Hypertens, 7, 705, 10.1111\u002Fj.1524-6175.2005.04809.x\nHsieh, 2007, Correlation between white blood cell count and metabolic syndrome in adolescence, Pediatr Int, 49, 827, 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