Yvonne Ho Ho Patient-Specific Controller for an Implantable Artificial Pancreas

Patient-Specific Controller for an Implantable Artificial Pancreas

von Yvonne Ho

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Beschreibung

The thesis focuses on the control of blood glucose devices and design of implantable devices, and offers valuable insights on diabetes mellitus and related physiology and treatments. Diabetes mellitus is a widespread chronic disease in the modern world that affects millions of people around the globe. In Singapore, one in ten of the population has diabetes, and the severity of the problem has prompted the country’s prime minister to talk about the disease at the National Day Rally in 2017. 

Designing an artificial pancreas that can provide effective blood glucose control for individuals with diabetes is one of the most challenging engineering problems. The author reports on research into the development of an implantable artificial pancreas that can regulate blood glucose levels by delivering appropriate dosages of insulin when necessary. 
By sensing blood glucose and injecting insulin directly into the vein, the implantable device aims to remove delays that occur with subcutaneous blood glucose sensing and insulin delivery. Preliminary in-vitro and in-vivo experimental results suggest that the implantable device for blood glucose control could be a clinically viable alternative to pancreas transplant.


The thesis focuses on the control of blood glucose devices and design of implantable devices, and offers valuable insights on diabetes mellitus and related physiology and treatments. Diabetes mellitus is a widespread chronic disease in the modern world that affects millions of people around the globe. In Singapore, one in ten of the population has diabetes, and the severity of the problem has prompted the country’s prime minister to talk about the disease at the National Day Rally in 2017. 

Designing an artificial pancreas that can provide effective blood glucose control for individuals with diabetes is one of the most challenging engineering problems. The author reports on research into the development of an implantable artificial pancreas that can regulate blood glucose levels by delivering appropriate dosages of insulin when necessary. 
By sensing blood glucose and injecting insulin directly into the vein, the implantable device aimsto remove delays that occur with subcutaneous blood glucose sensing and insulin delivery. Preliminary in-vitro and in-vivo experimental results suggest that the implantable device for blood glucose control could be a clinically viable alternative to pancreas transplant.


Nominated as an outstanding Ph.D thesis by National University of Singapore, Singapore, Singapore Discusses the development of an implantable artificial pancreas that can regulate blood glucose levels by delivering appropriate dosage of insulin when necessary Outlines the challenging engineering problem of designing an artificial pancreas that can effectively control blood glucose levels Offers valuable insights into in the modeling and control of blood glucose levels and the design of implantable devices

Autor*in

Yvonne Ho

Themen in »Patient-Specific Controller for an Implantable Artificial Pancreas«

Diabetes Mellitus Blood Glucose Monitoring Glucose Metabolism Insulin Delivery Glucose-Insulin System Model Predictive Controller Interior Point Ant Algorithm Glucose-Insulin Dynamics UVa/Padova Simulator Virtual Patient Primal-Dual Interior Point Method diabetes

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Details

ISBN: 9789811347702
Verlag: Springer Singapore
Erscheinung: 19.01.2019

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