Role of Continuous Glucose Monitoring in Clinical Trials: Recommendations on Reporting.
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Philip Home | Irl B Hirsch | Oliver Schnell | Linong Ji | Frank Snoek | K. Barnard | W. Polonsky | I. Hirsch | S. Garg | C. Mathieu | R. Bergenstal | P. Home | F. Snoek | M. Kamp | L. Laffel | S. Joshi | L. Ji | O. Schnell | B. Guerci | E. Bosi | T. Haak | Maarten Kamp | Satish Garg | Lori Laffel | Richard Bergenstal | Katharine Barnard | Emanuele Bosi | Bruno Guerci | Thomas Haak | Shashank R Joshi | Chantal Mathieu | William H Polonsky
[1] Effect of Acarbose on Glycemic Variability in Patients with Poorly Controlled Type 2 Diabetes Mellitus Receiving Stable Background Therapy: A Placebo‐Controlled Trial , 2015, Pharmacotherapy.
[2] P. Geelhoed-Duijvestijn,et al. Novel glucose-sensing technology and hypoglycaemia in type 1 diabetes: a multicentre, non-masked, randomised controlled trial , 2016, The Lancet.
[3] Jun-Sing Wang,et al. Effects of acarbose versus glibenclamide on glycemic excursion and oxidative stress in type 2 diabetic patients inadequately controlled by metformin: a 24-week, randomized, open-label, parallel-group comparison. , 2011, Clinical therapeutics.
[4] M. Emoto,et al. Improved glycemic control with teneligliptin in patients with type 2 diabetes mellitus on hemodialysis: Evaluation by continuous glucose monitoring. , 2015, Journal of diabetes and its complications.
[5] B. Richelsen,et al. Continuous Glucose Monitoring After Gastric Bypass to Evaluate the Glucose Variability After a Low-Carbohydrate Diet and to Determine Hypoglycemia , 2016, Obesity Surgery.
[6] T. Jones,et al. Glycaemic impact of patient-led use of sensor-guided pump therapy in type 1 diabetes: a randomised controlled trial , 2009, Diabetologia.
[7] David Kerr,et al. Impact of Type 1 Diabetes Technology on Family Members/Significant Others of People With Diabetes , 2016, Journal of diabetes science and technology.
[8] Christopher G. Parkin,et al. Sensor-augmented insulin pump therapy: results of the first randomized treat-to-target study. , 2008, Diabetes technology & therapeutics.
[9] Irl B Hirsch,et al. CONTINUOUS GLUCOSE MONITORING: A CONSENSUS CONFERENCE OF THE AMERICAN ASSOCIATION OF CLINICAL ENDOCRINOLOGISTS AND AMERICAN COLLEGE OF ENDOCRINOLOGY. , 2016, Endocrine practice : official journal of the American College of Endocrinology and the American Association of Clinical Endocrinologists.
[10] T. Kubiak,et al. Psychosocial Aspects of Continuous Glucose Monitoring , 2016, Journal of diabetes science and technology.
[11] Robert Cuddihy,et al. Characterizing glucose exposure for individuals with normal glucose tolerance using continuous glucose monitoring and ambulatory glucose profile analysis. , 2008, Diabetes technology & therapeutics.
[12] Sang-Man Jin,et al. Efficacy of mitiglinide and sitagliptin, alone or in combination, on postprandial excursion and glycemic variability assessed by continuous glucose monitoring: a post hoc analysis with single-day treatment , 2015, Expert opinion on pharmacotherapy.
[13] Darrell M. Wilson,et al. The effect of continuous glucose monitoring in well-controlled type 1 diabetes , 2010 .
[14] Robert Vigersky,et al. Role of continuous glucose monitoring for type 2 in diabetes management and research. , 2017, Journal of diabetes and its complications.
[15] J. Rosenstock,et al. Lower Glucose Variability and Hypoglycemia Measured by Continuous Glucose Monitoring With Novel Long-Acting Insulin LY2605541 Versus Insulin Glargine , 2014, Diabetes Care.
[16] B. Olsen,et al. Hypoglycemia Prevention and User Acceptance of an Insulin Pump System with Predictive Low Glucose Management , 2016, Diabetes technology & therapeutics.
[17] M. Namba,et al. Insulin resistance and β-cell function influence postprandial blood glucose levels in Japanese patients with gestational diabetes mellitus , 2015, Gynecological endocrinology : the official journal of the International Society of Gynecological Endocrinology.
[18] L. Menna-Barreto,et al. Sleep and glycemic control in type 1 diabetes. , 2015, Archives of endocrinology and metabolism.
[19] R. Beck,et al. Use of continuous glucose monitoring as an outcome measure in clinical trials. , 2012, Diabetes technology & therapeutics.
[20] James Chamberlain,et al. Persistence of Continuous Glucose Monitoring Use in a Community Setting 1 Year After Purchase , 2013, Clinical Diabetes.
[21] D. Klonoff,et al. Recommendations for standardizing glucose reporting and analysis to optimize clinical decision making in diabetes: the Ambulatory Glucose Profile (AGP). , 2013, Diabetes technology & therapeutics.
[22] Janet M. Allen,et al. Overnight closed loop insulin delivery (artificial pancreas) in adults with type 1 diabetes: crossover randomised controlled studies , 2011, BMJ : British Medical Journal.
[23] Steven J. Russell,et al. A Comparative Effectiveness Analysis of Three Continuous Glucose Monitors , 2014, Journal of diabetes science and technology.
[24] G. Freckmann,et al. Rate-of-Change Dependence of the Performance of Two CGM Systems During Induced Glucose Swings , 2015, Journal of diabetes science and technology.
[25] Howard Wolpert,et al. Effect of Continuous Glucose Monitoring on Glycemic Control in Adults With Type 1 Diabetes Using Insulin Injections: The DIAMOND Randomized Clinical Trial , 2017, JAMA.
[26] M. Phillip,et al. Effect of Continuous Glucose Monitoring on Hypoglycemia in Type 1 Diabetes , 2011, Diabetes Care.
[27] Stephen D Patek,et al. Assessing sensor accuracy for non-adjunct use of continuous glucose monitoring. , 2015, Diabetes technology & therapeutics.
[28] David Rodbard,et al. Glycemic variability: measurement and utility in clinical medicine and research--one viewpoint. , 2011, Diabetes technology & therapeutics.
[29] Eric Renard,et al. Incremental Value of Continuous Glucose Monitoring When Starting Pump Therapy in Patients With Poorly Controlled Type 1 Diabetes , 2009, Diabetes Care.
[30] R. Nishimura,et al. 24-Hour Glycemic Variations in Drug-Naïve Patients with Type 2 Diabetes: A Continuous Glucose Monitoring (CGM)-Based Study , 2013, PloS one.
[31] J. Holst,et al. IDegLira Improves Both Fasting and Postprandial Glucose Control as Demonstrated Using Continuous Glucose Monitoring and a Standardized Meal Test , 2015, Journal of diabetes science and technology.
[32] K. Barnard,et al. Clinical Utility of SMBG: Recommendations on the Use and Reporting of SMBG in Clinical Research , 2015, Diabetes Care.
[33] P. Baghurst,et al. Measuring glycaemic variation. , 2010, Current diabetes reviews.
[34] Weiqing Wang,et al. Reference Values for Continuous Glucose Monitoring in Chinese Subjects , 2009, Diabetes Care.
[35] Michael O'Grady,et al. Continuous glucose monitoring and intensive treatment of type 1 diabetes. , 2008, The New England journal of medicine.
[36] Alex J Sutton,et al. Glycaemic control in type 1 diabetes during real time continuous glucose monitoring compared with self monitoring of blood glucose: meta-analysis of randomised controlled trials using individual patient data , 2011, BMJ : British Medical Journal.
[37] T. Bailey,et al. The Performance and Usability of a Factory-Calibrated Flash Glucose Monitoring System , 2015, Diabetes technology & therapeutics.
[38] J. Mastrototaro,et al. Performance evaluation of the MiniMed continuous glucose monitoring system during patient home use. , 2000, Diabetes technology & therapeutics.
[39] Howard C. Zisser,et al. Outcome Measures for Artificial Pancreas Clinical Trials: A Consensus Report , 2016, Diabetes Care.
[40] Lutz Heinemann. Continuous Glucose Monitoring and Clinical Trials , 2009, Journal of diabetes science and technology.
[41] Andrew K. Balo,et al. The Accuracy and Efficacy of the Dexcom G4 Platinum Continuous Glucose Monitoring System , 2015, Journal of diabetes science and technology.
[42] Sofia Dahlqvist,et al. Continuous Glucose Monitoring vs Conventional Therapy for Glycemic Control in Adults With Type 1 Diabetes Treated With Multiple Daily Insulin Injections: The GOLD Randomized Clinical Trial , 2017, JAMA.
[43] D Rodbard,et al. Ambulatory Glucose Profile: Representation of Verified Self-Monitored Blood Glucose Data , 1987, Diabetes Care.
[44] C. Mathieu,et al. Sensor‐augmented pump therapy lowers HbA1c in suboptimally controlled Type 1 diabetes; a randomized controlled trial , 2011, Diabetic medicine : a journal of the British Diabetic Association.
[45] Workgroup on Hypoglycemia. Defining and reporting hypoglycemia in diabetes: a report from the American Diabetes Association Workgroup on Hypoglycemia. , 2005, Diabetes care.
[46] Yan Liu,et al. Effect of liraglutide vs. NPH in combination with metformin on blood glucose fluctuations assessed using continuous glucose monitoring in patients with newly diagnosed type 2 diabetes. , 2015, International journal of clinical pharmacology and therapeutics.
[47] B. Kovatchev. Hypoglycemia Reduction and Accuracy of Continuous Glucose Monitoring. , 2015, Diabetes technology & therapeutics.
[48] R. Bergenstal,et al. Comparison of Insulin Glargine 300 Units/mL and 100 Units/mL in Adults With Type 1 Diabetes: Continuous Glucose Monitoring Profiles and Variability Using Morning or Evening Injections , 2017, Diabetes Care.
[49] Guido Freckmann,et al. CGM Versus FGM; or, Continuous Glucose Monitoring Is Not Flash Glucose Monitoring , 2015, Journal of diabetes science and technology.
[50] A. King,et al. Omitting late-night eating may cause hypoglycemia in "well controlled" basal insulin-treated type 2 diabetes. , 2015, Endocrine practice : official journal of the American College of Endocrinology and the American Association of Clinical Endocrinologists.