Objective To evaluate the six-month impact of the advanced automated functions of a closed-loop control (CLC) system (Control-IQ) and a virtual educational camp (vEC) on emotions and time in range (TIR) of children and adolescents with type 1 diabetes. Methods Children and their parents participated in a three-day vEC. Clinical, glucose, and emotion data were evaluated before, just after, and six months after the vEC. Emotions were evaluated using adapted Plutchik's and Geneva Emotion Wheels. Results Forty-three children and adolescents (7-16 years) showed significant improvements in positive emotions immediately and six months after the vEC (67% and 65% vs 38%, p < 0.05, respectively), while mixed emotions were reduced (32% and 15% vs 6...
Introduction: In the last 5 years, the use of automatic insulin delivery systems has been increasing...
Objective the advanced hybrid closed loop (AHCL) systems have provided the potential to ameliorate g...
Objective To evaluate the impact of CamAPS FX hybrid closed-loop automated insulin delivery (HCL)...
Objective To evaluate the six-month impact of the advanced automated functions of a closed-loop cont...
Aim: To evaluate the impact of a virtual educational camp (vEC) on glucose control in children and a...
Aim: Education maximizes the benefits of new diabetes technology. Here we evaluated the impact of a ...
OBJECTIVE: To explore the experiences of adolescents with type 1 diabetes mellitus (T1DM) and their ...
Objective: This study aims to investigate the early impact of advanced hybrid closed loop system (AH...
Hybrid closed-loop (HCL) systems are characterised by integrating continuous glucose monitoring (CGM...
Aims: Continuous glucose monitoring (CGM) can improve glucometrics in children with type 1 diabetes ...
OBJECTIVE: To evaluate the impact of CamAPS FX hybrid closed-loop (HCL) automated insulin delivery i...
Objective To evaluate the impact of CamAPS FX hybrid closed-loop automated insulin delivery (HCL) in...
Abstract Objectives Our study aims to assess the...
We read with interest the article by Messer et al.1 reporting a significant increase in time in rang...
International audienceBackground: Studies of closed-loop control (CLC) in patients with type 1 diabe...
Introduction: In the last 5 years, the use of automatic insulin delivery systems has been increasing...
Objective the advanced hybrid closed loop (AHCL) systems have provided the potential to ameliorate g...
Objective To evaluate the impact of CamAPS FX hybrid closed-loop automated insulin delivery (HCL)...
Objective To evaluate the six-month impact of the advanced automated functions of a closed-loop cont...
Aim: To evaluate the impact of a virtual educational camp (vEC) on glucose control in children and a...
Aim: Education maximizes the benefits of new diabetes technology. Here we evaluated the impact of a ...
OBJECTIVE: To explore the experiences of adolescents with type 1 diabetes mellitus (T1DM) and their ...
Objective: This study aims to investigate the early impact of advanced hybrid closed loop system (AH...
Hybrid closed-loop (HCL) systems are characterised by integrating continuous glucose monitoring (CGM...
Aims: Continuous glucose monitoring (CGM) can improve glucometrics in children with type 1 diabetes ...
OBJECTIVE: To evaluate the impact of CamAPS FX hybrid closed-loop (HCL) automated insulin delivery i...
Objective To evaluate the impact of CamAPS FX hybrid closed-loop automated insulin delivery (HCL) in...
Abstract Objectives Our study aims to assess the...
We read with interest the article by Messer et al.1 reporting a significant increase in time in rang...
International audienceBackground: Studies of closed-loop control (CLC) in patients with type 1 diabe...
Introduction: In the last 5 years, the use of automatic insulin delivery systems has been increasing...
Objective the advanced hybrid closed loop (AHCL) systems have provided the potential to ameliorate g...
Objective To evaluate the impact of CamAPS FX hybrid closed-loop automated insulin delivery (HCL)...