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Development and optimization of an integrated Faraday modulator and compensator design for continuous polarimetric glucose monitoring


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Development and optimization of an integrated Faraday modulator and compensator design for continuous polarimetric glucose monitoring
Table of Contents
Abstract
Acknowledgements
Table of Contents
List of Tables
List of Figures
List of Abbreviations
List of Symbols
1 Introduction
1.1 Literature Review
1.1.1 The Origins of Polarimetry in Glucose Sensing
1.1.2 Tackling the Challenges of Polarimetric Sensing
1.1.3 Polarimetry in Turbid Media
1.1.4 The In Vivo Application of Polarimetric Sensing
1.2 The Current Objectives
2 Theory
2.1 Glucose as a Target Molecule
2.1.1 Continuous Glucose Monitoring
2.1.2 Optical Activity
2.2 Optical Polarimetry
2.2.1 Faraday Rotation in Polarimetry
2.2.2 Magnetic Fields in Faraday Rotation
2.2.3 Modeling the Optical Components
2.3 Finite Element Modeling (FEM)
3 Materials and Methods
3.1 Building the Initial FEM
3.2 FEM of the Compensator and Modulator Coils
3.3 Validation of the FEM
3.4 IFMC Design and Optimization
3.5 Static Validation of the IFMC
3.6 Programmable Flow System Design
3.7 Continuous Dynamic Glucose Detection
4 Results and Discussion
4.1 Building the Initial FEM
4.2 FEM of the Compensator and Modulator Coils
4.3 Validation of the FEM
4.4 IFMC Design and Optimization
4.5 Static Validation of the IFMC
4.6 Programmable Flow System Design
4.7 Continuous Dynamic Glucose Detection
5 Conclusions and Future Work
References
A. Coilcraft Inductor Specifications
B. Digi-Key Inductor Specifications
C. IFMC Electronic Components
D. IFMC PID Digital Control VI
E. WELCO Peristaltic Pump Specifications
F. LIFA Firmware Code
G. LIFA Header Code
H. LIFA Source Code
I. AFMotor Header Code
J. AFMotor Source Code
K. AccelStepper Header Code
L. AccelStepper Source Code
M. LIFA VIs Used in Flow System Programs
N. Flow System Control VIs
O. Raw Collected Data 
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