Page 35 - Glucose Monitoring Devices
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30     CHAPTER 1 Introduction to SMBG




                         [116] Heinemann L. Finger pricking and pain: a never ending story. Journal of Diabetes Sci-
                              ence and Technology 2008;2:919e21. https://doi.org/10.1177/193229680800200526.
                         [117] Tanaka N, Yabe D, Murotani K, Ueno S, Kuwata H, Hamamoto Y, et al. Mental
                              distress and health-related quality of life among type 1 and type 2 diabetes patients us-
                              ing self-monitoring of blood glucose: a cross-sectional questionnaire study in Japan.
                              Journal of Diabetes Investigation 2018;9:1203e11. https://doi.org/10.1111/jdi.12827.
                         [118] Franciosi M, Pellegrini F, De Berardis G, Belfiglio M, Cavaliere D, Di Nardo B, et al.
                              The impact of blood glucose self-monitoring on metabolic control and quality of life in
                              type 2 diabetic patients: an urgent need for better educational strategies. Diabetes Care
                              2001;24:1870e7. https://doi.org/10.2337/diacare.24.11.1870.
                         [119] Clar C, Barnard K, Cummins E, Royle P, Waugh N. Self-monitoring of blood glucose
                              in type 2 diabetes: systematic review. Health Technology Assessment 2010;14. https://
                              doi.org/10.3310/hta14120.
                         [120] Bergenstal R, Ahmann A, Bailey T, Beck R, Bissen J, Buckingham B, et al. Recom-
                              mendations for standardizing glucose reporting and analysis to optimize clinical deci-
                              sion making in diabetes: the ambulatory glucose profile. Journal of Diabetes Science
                              and Technology 2013;7:562e78. https://doi.org/10.1177/193229681300700234.
                         [121] Klonoff D, Parkes J, Kovatchev B, Kerr D, Bevier W, Brazg R, et al. Investigation of
                              the accuracy of 18 marketed blood glucose monitors. Diabetes Care 2018;41:1681e8.
                              https://doi.org/10.2337/dc17-1960.
                         [122] Klonoff D, Blonde L, Cembrowski G, Chacra A, Charpentier G, Colagiuri S, et al.
                              Consensus report: the current role of self-monitoring of blood glucose in non-
                              insulin-treated type 2 diabetes. Journal of Diabetes Science and Technology 2011;5:
                              1529e48. https://doi.org/10.1177/193229681100500630.
                         [123] Erbach M, Freckmann G, Hinzmann R, Kulzer B, Ziegler R, Heinemann L, et al. In-
                              terferences and limitations in blood glucose self-testing. Journal of Diabetes Science
                              and Technology 2016;10:1161e8. https://doi.org/10.1177/1932296816641433.
                         [124] Freckmann G, Baumstark A, Jendrike N, Rittmeyer D, Pleus S, Haug C. Accuracy
                              evaluation of four blood glucose monitoring systems in the hands of intended users
                              and trained personnel based on ISO 15197 requirements. Diabetes Technology and
                              Therapeutics 2017;19:246e54. https://doi.org/10.1089/dia.2016.0341.
                         [125] Boettcher C, Dost A, Wudy S, Flechtner-Mors M, Borkenstein M, Schiel R, et al. Ac-
                              curacy of blood glucose meters for self-monitoring affects glucose control and hypo-
                              glycemia rate in children and adolescents with type 1 diabetes. Diabetes Technology
                              and Therapeutics 2015;17:275e82. https://doi.org/10.1089/dia.2014.0262.
                         [126] Breton M, Kovatchev B. Impact of blood glucose self-monitoring errors on glucose
                              variability, risk for hypoglycemia, and average glucose control in type 1 diabetes:
                              an in silico study. Journal of Diabetes Science and Technology 2010;4:562e70.
                              https://doi.org/10.1177/193229681000400309.
                         [127] Campos-Na ´n ˜ez E, Fortwaengler K, Breton M. Clinical impact of blood glucose moni-
                              toring accuracy: an in-silico study. Journal of Diabetes Science and Technology 2017;
                              11:1187e95. https://doi.org/10.1177/1932296817710474.
                         [128] Kovatchev B, Cobelli C. Glucose variability: timing, risk analysis, and relationship to
                              hypoglycemia in diabetes. Diabetes Care 2016;39:502e10. https://doi.org/10.2337/
                              dc15-2035.
                         [129] Bergenstal R. Continuous glucose monitoring: transforming diabetes management
                              step by step. The Lancet 2018;391:1334e6. https://doi.org/10.1016/s0140-6736(18)
                              30290-3.
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