Wearable Contact Lens Biosensors for Continuous Glucose Monitoring Using Smartphones
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Haider Butt | Ali K Yetisen | A. Yetisen | H. Butt | Mohamed Elsherif | Mohammed Umair Hassan | M. Elsherif
[1] Jürgen Durner,et al. Clinical chemistry: challenges for analytical chemistry and the nanosciences from medicine. , 2009, Angewandte Chemie.
[2] D. Matthews,et al. Management of Hyperglycemia in Type 2 Diabetes: A Patient-Centered Approach , 2012, Diabetes Care.
[3] J. Assal,et al. [Long-term complications in diabetes mellitus]. , 1989, Acta medica portuguesa.
[4] Mark Woodward,et al. Severe hypoglycemia and risks of vascular events and death. , 2010, The New England journal of medicine.
[5] K. Kataoka,et al. Glucose-responsive polymer bearing a novel phenylborate derivative as a glucose-sensing moiety operating at physiological pH conditions. , 2003, Biomacromolecules.
[6] S. Asher,et al. Photonic crystal glucose-sensing material for noninvasive monitoring of glucose in tear fluid. , 2004, Clinical chemistry.
[7] Mark D. Losego,et al. Hydrogel-Based Glucose Sensors: Effects of Phenylboronic Acid Chemical Structure on Response , 2013 .
[8] Jeff Blyth,et al. Glucose-sensitive holographic sensors for monitoring bacterial growth. , 2004, Analytical chemistry.
[9] Kazunori Kataoka,et al. Simple and precise preparation of a porous gel for a colorimetric glucose sensor by a templating technique. , 2003, Angewandte Chemie.
[10] Paolo Pozzilli,et al. Do we need continuous glucose monitoring in type 2 diabetes? , 2013, Diabetes/metabolism research and reviews.
[11] Yuya Egawa,et al. Colorimetric Sugar Sensing Using Boronic Acid-Substituted Azobenzenes , 2014, Materials.
[12] Haider Butt,et al. Reusable, robust, and accurate laser-generated photonic nanosensor. , 2014, Nano letters.
[13] Igor K Lednev,et al. Photonic crystal carbohydrate sensors: low ionic strength sugar sensing. , 2003, Journal of the American Chemical Society.
[14] O. Nur,et al. A Miniature Graphene-based Biosensor for Intracellular Glucose Measurements , 2015 .
[15] J. van Dijk,et al. Exercise Strategies to Optimize Glycemic Control in Type 2 Diabetes: A Continuing Glucose Monitoring Perspective , 2015, Diabetes Spectrum.
[16] Y. S. Zhang,et al. Glucose‐Sensitive Hydrogel Optical Fibers Functionalized with Phenylboronic Acid , 2017, Advanced materials.
[17] S. Asher,et al. Fast responsive crystalline colloidal array photonic crystal glucose sensors. , 2006, Analytical chemistry.
[18] David Rodbard,et al. Continuous Glucose Monitoring: A Review of Successes, Challenges, and Opportunities. , 2016, Diabetes technology & therapeutics.
[19] M. Ezzati,et al. National, regional, and global trends in fasting plasma glucose and diabetes prevalence since 1980: systematic analysis of health examination surveys and epidemiological studies with 370 country-years and 2·7 million participants , 2011, The Lancet.
[20] Stephanie A. Amiel,et al. Real-Time Continuous Glucose Monitoring Significantly Reduces Severe Hypoglycemia in Hypoglycemia-Unaware Patients With Type 1 Diabetes , 2013, Diabetes Care.
[21] Jae Ho Shin,et al. Biocompatible materials for continuous glucose monitoring devices. , 2013, Chemical reviews.
[22] Laurence Kennedy,et al. Finger-Stick Glucose Monitoring , 2010, Diabetes Care.
[23] Igor K Lednev,et al. High ionic strength glucose-sensing photonic crystal. , 2003, Analytical chemistry.
[24] Paul V Braun,et al. Linear and Fast Hydrogel Glucose Sensor Materials Enabled by Volume Resetting Agents , 2014, Advanced materials.
[25] Paul V Braun,et al. Glucose-sensitive inverse opal hydrogels: analysis of optical diffraction response. , 2004, Langmuir : the ACS journal of surfaces and colloids.
[26] Min Xue,et al. A 2-D photonic crystal hydrogel for selective sensing of glucose , 2014 .
[27] H Hoshino,et al. Glucose-sensing electrode coated with polymer complex gel containing phenylboronic Acid. , 1996, Analytical chemistry.
[28] G. S. Wilson,et al. Enzyme-based biosensors for in vivo measurements. , 2000, Chemical reviews.
[29] Kazunori Kataoka,et al. Confined stimuli-responsive polymer gel in inverse opal polymer membrane for colorimetric glucose sensor. , 2009, Langmuir : the ACS journal of surfaces and colloids.
[30] Adam Heller,et al. Electrochemical glucose sensors and their applications in diabetes management. , 2008, Chemical reviews.
[31] S. Asher,et al. Two-dimensional photonic crystal surfactant detection. , 2012, Analytical chemistry.
[32] Joseph Wang. Electrochemical glucose biosensors. , 2008, Chemical reviews.
[33] Jeff Blyth,et al. Holographic glucose sensors. , 2005, Biosensors & bioelectronics.
[34] Haider Butt,et al. Glucose Sensing with Phenylboronic Acid Functionalized Hydrogel-Based Optical Diffusers , 2018, ACS nano.
[35] S. Minko,et al. Stimuli-responsive hydrogel thin films , 2009 .
[36] S. Sharp,et al. Factors associated with the presence of diabetic ketoacidosis at diagnosis of diabetes in children and young adults: a systematic review , 2011, BMJ : British Medical Journal.
[37] H. Lapinski,et al. Continuous glucose monitoring in patients with type 2 diabetes: Why? When? Whom? , 2007, Diabetes & metabolism.
[38] Mark R Prausnitz,et al. Faster pharmacokinetics and increased patient acceptance of intradermal insulin delivery using a single hollow microneedle in children and adolescents with type 1 diabetes , 2013, Pediatric diabetes.
[39] S. Asher,et al. Periodicity-controlled two-dimensional crystalline colloidal arrays. , 2011, Langmuir : the ACS journal of surfaces and colloids.