Bioelectronic organ-based sensor for microfluidic real-time analysis of the demand in insulin
Author:
Funder
French National research Agency ANR
FEDER BIODIA
FEDER DIAGLYC
Publisher
Elsevier BV
Subject
Electrochemistry,Biomedical Engineering,General Medicine,Biophysics,Biotechnology
Reference47 articles.
1. Evaluation of subcutaneous glucose monitoring systems under routine environmental conditions in patients with type 1 diabetes
2. Evaluating the glucose tolerance test in mice
3. Time Lag of Glucose From Intravascular to Interstitial Compartment in Humans
4. Functional coupling of human pancreatic islets and liver spheroids on-a-chip: Towards a novel human ex vivo type 2 diabetes model
5. Effect of Continuous Glucose Monitoring on Glycemic Control in Adults With Type 1 Diabetes Using Insulin Injections
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