Objective: Contemporary and future outpatient long-term artificial pancreas (AP) studies need to cope with the well-known large intra- and interday glucose variability occurring in type 1 diabetic (T1D) subjects. Here, we propose an adaptive model predictive control (MPC) strategy to account for it and test it in silico. Methods: A run-to-run (R2R) approach adapts the subcutaneous basal insulin delivery during the night and the carbohydrate-to-insulin ratio (CR) during the day, based on some performance indices calculated from subcutaneous continuous glucose sensor data. In particular, R2R aims, first, to reduce the percentage of time in hypoglycemia and, secondarily, to improve the percentage of time in euglycemia and average glucose. In s...
Arguably, a minimally invasive system using subcutaneous (s.c.) continuous glucose monitoring (CGM) ...
The development of a closed-loop artificial pancreas to regulate the blood glucose concentration of ...
Objective: To test an in silico Type 1 diabetes control protocol while accounting for realistic phys...
Contemporary and future outpatient long-term artificial pancreas (AP) studies need to cope with the ...
Background The technological advancements in subcutaneous continuous glucose monitoring and insulin ...
The insulin to carbohydrate ratio (CR) is a parameter used by patients with type 1 diabetes (T1D) to...
BACKGROUND: The development of artificial pancreas has received a new impulse from recent technolog...
People with type 1 diabetes (T1D) face the challenge of administering exogenous insulin to maintain ...
The artificial pancreas (AP) is a closed-loop system to automatically regulate the glucose concentra...
Background: The objective of this research is to develop a new artificial pancreas that takes into a...
BACKGROUND: The objective of this research is to develop a new artificial pancreas that takes into ...
Inpatient studies suggest that model predictive control (MPC) is one of the most promising algorithm...
Background: To evaluate the efficacy of a run-to-run (R2R) adaptive wearable artificial pancreas (AP...
Background: Maintaining glycemic equilibrium can be challenging for people living with type 1 diabet...
Despite the continuous efforts devoted to AP development in the last decades, an artificial pancreas...
Arguably, a minimally invasive system using subcutaneous (s.c.) continuous glucose monitoring (CGM) ...
The development of a closed-loop artificial pancreas to regulate the blood glucose concentration of ...
Objective: To test an in silico Type 1 diabetes control protocol while accounting for realistic phys...
Contemporary and future outpatient long-term artificial pancreas (AP) studies need to cope with the ...
Background The technological advancements in subcutaneous continuous glucose monitoring and insulin ...
The insulin to carbohydrate ratio (CR) is a parameter used by patients with type 1 diabetes (T1D) to...
BACKGROUND: The development of artificial pancreas has received a new impulse from recent technolog...
People with type 1 diabetes (T1D) face the challenge of administering exogenous insulin to maintain ...
The artificial pancreas (AP) is a closed-loop system to automatically regulate the glucose concentra...
Background: The objective of this research is to develop a new artificial pancreas that takes into a...
BACKGROUND: The objective of this research is to develop a new artificial pancreas that takes into ...
Inpatient studies suggest that model predictive control (MPC) is one of the most promising algorithm...
Background: To evaluate the efficacy of a run-to-run (R2R) adaptive wearable artificial pancreas (AP...
Background: Maintaining glycemic equilibrium can be challenging for people living with type 1 diabet...
Despite the continuous efforts devoted to AP development in the last decades, an artificial pancreas...
Arguably, a minimally invasive system using subcutaneous (s.c.) continuous glucose monitoring (CGM) ...
The development of a closed-loop artificial pancreas to regulate the blood glucose concentration of ...
Objective: To test an in silico Type 1 diabetes control protocol while accounting for realistic phys...