Gregory GA, Robinson TIG, Linklater SE, Wang F, Colagiuri S, de Beaufort C, et al. Global incidence, prevalence, and mortality of type 1 diabetes in 2021 with projection to 2040: a modelling study. Lancet Diabetes Endocrinol. 2022;10(10):741–60.
Nathan DM. The Diabetes Control and Complications Trial/Epidemiology of Diabetes Interventions and Complications Study at 30 Years: overview. Diabetes Care. 2014;37(1):9–16.
Article CAS PubMed Google Scholar
Holt RIG, DeVries JH, Hess-Fischl A, Hirsch IB, Kirkman MS, Klupa T, et al. The management of type 1 diabetes in adults A consensus report by the American Diabetes Association (ADA) and the European Association for the Study of Diabetes (EASD) Diabetes Care. 2021;44(11):2589–625
American Diabetes Association. Standards of medical care in diabetes-2023. Diabetes Care. 2023;46(Suppl 1):S1-291.
Brazeau AS, Messier V, Talbo MK, Gagnon C, Taleb N, Fortier I, et al. Self-reported severe and nonsevere hypoglycemia in type 1 diabetes: population surveillance through the BETTER Patient Engagement Registry: development and baseline characteristics. Can J Diabetes. 2022;46(8):813–21.
Wu ZK, Jin TR, Weng JP. A thorough analysis of diabetes research in China from 1995 to 2015: current scenario and future scope. Sci China Life Sci. 2019;62(1):46–62.
Miller KM, Hermann J, Foster N, Hofer SE, Rickels MR, Danne T, et al. Longitudinal changes in continuous glucose monitoring use among individuals with type 1 diabetes: international comparison in the German and Austrian DPV and U.S. T1D Exchange Registries. Diabetes Care. 2020;43(1):e1-e2
Beck RW, Bergenstal RM, Laffel LM, Pickup JC. Advances in technology for management of type 1 diabetes. Lancet. 2019;394(10205):1265–73.
Article CAS PubMed Google Scholar
Nc F, Rw B, Km M, Ma C, Mr R, La D, et al. State of type 1 diabetes management and outcomes from the T1D Exchange in 2016–2018. Diabetes Technol Ther. 2019;21(2):66–72.
Ling P, Yan J, Yang D, Luo S, Zheng X, Wu Z, et al. Current state of type 1 diabetes in China: an analysis from a mobile health application TangTangQuan based database. Diabetologia. 2019;62:S394-S
Garg SK. Past, present, and future of continuous glucose monitors. Diabetes Technol Ther. 2023;25(S3):S1–4. https://doi.org/10.1089/dia.2023.0041.
Bergenstal RM, Tamborlane WV, Ahmann A, Buse JB, Dailey G, Davis SN, et al. Effectiveness of sensor-augmented insulin-pump therapy in type 1 diabetes. N Engl J Med. 2010;363(4):311–20.
Article CAS PubMed Google Scholar
Braune K, Lal RA, Petruzelkova L, Scheiner G, Winterdijk P, Schmidt S, et al. Open-source automated insulin delivery: international consensus statement and practical guidance for health-care professionals. Lancet Diabetes Endocrinol. 2022;10(1):58–74.
Powers MA, Bardsley J, Cypress M, Duker P, Funnell MM, Fischl AH, et al. Diabetes self-management education and support in type 2 diabetes: a joint position statement of the American Diabetes Association, the American Association of Diabetes Educators, and the Academy of Nutrition and Dietetics. J Acad Nutr Diet. 2015;115(8):1323–34.
Rankin D, Cooke DD, Elliott J, Heller SR, Lawton J, the UKNDSG. Supporting self-management after attending a structured education programme: a qualitative longitudinal investigation of type 1 diabetes patients’ experiences and views. BMC Public Health. 2012;12(1):652.
Winkley K, Evwierhoma C, Amiel SA, Lempp HK, Ismail K, Forbes A. Patient explanations for non-attendance at structured diabetes education sessions for newly diagnosed Type 2 diabetes: a qualitative study. Diabet Med. 2015;32(1):120–8.
Article CAS PubMed Google Scholar
•• Liu Z, Wang C, Yang D, Luo S, Ding Y, Xu W, et al. High engagement in mobile peer support is associated with better glycemic control in type 1 diabetes: a real-world study. J Diabetes Investig. 2022;13(11):1914–24. A large sample study suggesting that 12 months’ use of a mobile application improved glucose management, especially among those more engaged in peer support
Xie LF, Roy-Fleming A, Haag S, Costa DD, Brazeau AS. Development of the support self-guided, web application for adults living with type 1 diabetes in Canada by a multi-disciplinary team using a people-oriented approach based on the Behaviour Change Wheel. Digit Health. 2023;9:20552076231152760.
PubMed PubMed Central Google Scholar
Xie L. Design, evaluation, optimization, and adaptation of a web application for type 1 diabetes self-management. https://escholarship.mcgill.ca/concern/theses/j67319489. Accessed 23 Aug 2023.
Lane W, Lambert E, George J, Rathor N, Thalange N. Exploring the burden of mealtime insulin dosing in adults and children with type 1 diabetes. Clin Diabetes. 2021;39(4):347–57.
Article PubMed PubMed Central Google Scholar
Evert AB, Dennison M, Gardner CD, Garvey WT, Lau KHK, MacLeod J, et al. Nutrition therapy for adults with diabetes or prediabetes: a consensus report. Diabetes Care. 2019;42(5):731–54.
Article PubMed PubMed Central Google Scholar
ElSayed NA, Aleppo G, Aroda VR, Bannuru RR, Brown FM, Bruemmer D, et al. 5 Facilitating positive health behaviors and well-being to improve health outcomes: standards of care in diabetes-2023. Diabetes Care. 2023;46(Supple 1):S68-s96.
Yale JF, Paty B, Senior PA. Hypoglycemia. Can J Diabetes. 2018;42(Suppl 1):S104–8.
American Diabetes Association. 7. Diabetes technology: standards of medical care in diabetes—2021. Diabetes Care. 2020;44(Supplement_1):S85-S99
•• Waldenmaier D, Freckmann G, Pleus S, Hermanns N, Ehrmann D, Heinemann L, et al. Therapy adjustments in people with type 1 diabetes with impaired hypoglycemia awareness on multiple daily injections using real-time continuous glucose monitoring: a mechanistic analysis of the HypoDE study. BMJ Open Diabetes Res Care. 2021;9(1). First large RCT showing additional possible benefit of rt-CGM to intercept an upcoming hypoglycaemia while reducing the amount of simple carbohydrate needed.
Pinsker JE, Bartee A, Katz M, Lalonde A, Jones R, Dassau E, et al. Predictive low-glucose suspend necessitates less carbohydrate supplementation to rescue hypoglycemia: need to revisit current hypoglycemia treatment guidelines. Diabetes Technol Ther. 2021;23(7):512–6.
Article CAS PubMed PubMed Central Google Scholar
• Wallace T, Heath J, Koebbel C. The impact of flash glucose monitoring on adults with type 1 diabetes’ eating habits and relationship with food. Diabetes Res Clin Pract. 2023;196:110230. A novel qualitative study exploring the impact of isCGM on people with type 1 diabetes’ relationship with food.
Ida S, Kaneko R, Imataka K, Okubo K, Shirakura Y, Azuma K, et al. Effects of flash glucose monitoring on dietary variety, physical activity, and self-care behaviors in patients with diabetes. J Diabetes Res. 2020;2020:9463648.
Article PubMed PubMed Central Google Scholar
Priesterroth L, Grammes J, Clauter M, Kubiak T. Diabetes technologies in people with type 1 diabetes mellitus and disordered eating: a systematic review on continuous subcutaneous insulin infusion, continuous glucose monitoring and automated insulin delivery. Diabet Med. 2021;38(7):e14581.
Ketema EB, Kibret KT. Correlation of fasting and postprandial plasma glucose with HbA1c in assessing glycemic control; systematic review and meta-analysis. Arch Public Health. 2015;73:43.
Article PubMed PubMed Central Google Scholar
Haidar A, Legault L, Raffray M, Gouchie-Provencher N, Jafar A, Devaux M, et al. A randomized crossover trial to compare automated insulin delivery (the artificial pancreas) with carbohydrate counting or simplified qualitative meal-size estimation in type 1 diabetes. Diabetes Care. 2023;46(7):1372–8.
Article PubMed PubMed Central Google Scholar
•• Russell SJ, Beck RW, Damiano ER, El-Khatib FH, Ruedy KJ, Balliro CA, et al. Multicenter, randomized trial of a bionic pancreas in type 1 diabetes. N Engl J Med. 2022;387(13):1161–72. Large RCT assessing a novel technology (bionic pancreas) requiring minimal input from the user
Al Balwi R, Al Madani W, Al GA. Efficacy of insulin dosing algorithms for high-fat high-protein mixed meals to control postprandial glycemic excursions in people living with type 1 diabetes: A systematic review and meta-analysis. Pediatr Diabetes. 2022;23(8):1635–46.
Article CAS PubMed Google Scholar
Metwally M, Cheung TO, Smith R, Bell KJ. Insulin pump dosing strategies for meals varying in fat, protein or glycaemic index or grazing-style meals in type 1 diabetes: a systematic review. Diabetes Res Clin Pract. 2021;172:108516.
Article CAS PubMed Google Scholar
McKnight JA, Ochs A, Mair C, McKnight O, Wright R, Gibb FW, et al. The effect of DAFNE education, continuous subcutaneous insulin infusion, or both in a population with type 1 diabetes in Scotland. Diabet Med. 2020;37(6):1016–22.
Article CAS PubMed Google Scholar
Gingras V, Bonato L, Messier V, Roy-Fleming A, Smaoui MR, Ladouceur M, et al. Impact of macronutrient content of meals on postprandial glucose control in the context of closed-loop insulin delivery: a randomized cross-over study. Diabetes Obes Metab. 2018;20(11):2695–9.
Article CAS PubMed Google Scholar
Lehmann V, Zueger T, Zeder A, Scott S, Bally L, Laimer M, et al. Lower daily carbohydrate intake is associated with improved glycemic control in adults with type 1 diabetes using a hybrid closed-loop system. Diabetes Care. 2020;43(12):3102–5.
Article CAS PubMed Google Scholar
Toobert DJ, Hampson SE, Glasgow RE. The summary of diabetes self-care activities measure: results from 7 studies and a revised scale. Diabetes Care. 2000;23(7):943–50.
Article CAS PubMed Google Scholar
Kebede MM, Pischke CR. Popular diabetes apps and the impact of diabetes app use on self-care behaviour: a survey among the digital community of persons with diabetes on social media. Front Endocrinol (Lausanne). 2019;10:135.
Bohn B, Herbst A, Pfeifer M, Krakow D, Zimny S, Kopp F, et al. Impact of physical activity on glycemic control and prevalence of cardiovascular risk factors in adults with type 1 diabetes: a cross-sectional multicenter study of 18,028 patients. Diabetes Care. 2015;38(8):1536–43.
Center for Surveillance and Applied Research, Public Health Agency of Canada. Physical Activity, Sedentary Behaviour and Sleep (PASS) indicators, 2023 Edition. 2023. https://health-infobase.canada.ca/pass/. Accessed 30th Aug 2023.
Brazeau AS, Rabasa-Lhoret R, Strychar I, Mircescu H. Barriers to physical activity among patients with type 1 diabetes. Diabetes Care. 2008;31(11):2108–9.
Article PubMed PubMed Central Google Scholar
Parent C, Lespagnol E, Berthoin S, Tagougui S, Heyman J, Stuckens C, et al. Barriers to physical activity in children and adults living with type 1 diabetes: a complex link with real-life glycemic excursions. Can J Diabetes. 2023;47(2):124–32.
Moser O, Riddell MC, Eckstein ML, Adolfsson P, Rabasa-Lhoret R, van den Boom L, et al. Glucose management for exercise using continuous glucose monitoring (CGM) and intermittently scanned CGM (isCGM) systems in type 1 diabetes: position statement of the European Association for the Study of Diabetes (EASD) and of the International Society for Pediatric and Adolescent Diabetes (ISPAD) endorsed by JDRF and supported by the American Diabetes Association (ADA). Diabetologia. 2020;63(12):2501–20.
Article CAS PubMed Google Scholar
Hásková A, Radovnická L, Petruželková L, Parkin CG, Grunberger G, Horová E, et al. Real-time CGM is superior to flash glucose monitoring for glucose control in type 1 diabetes: the CORRIDA randomized controlled trial. Diabetes Care. 2020;43(11):2744–50.
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