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- W4292461657 abstract "Diabetes monitoring methods available today for the ever-increasing number of diabetic patients worldwide are invasive, painful, time-consuming, and a constant burden on the household budget. For these reasons, non-invasive glucose monitoring is heavily researched and is highly desired by many companies. The first part of this chapter will discuss various guidelines and parameters that are important to consider when developing blood glucose measurement devices. As we move on, we will review some of the non-invasive glucose measurement methods that use the non-ionizing electromagnetic spectrum. The techniques are categorized according to the parametric estimation of blood/tissue properties and intrinsic glucose properties. In Sect. 4.3, we will study the complex permittivity variation with glucose concentration using the double Debye modelDebye model to analyze the dielectric properties of aqueous glucose solutions in the sub-THz region. The purpose of Sect. 4.4 is to discuss the importance and use of tissue-mimicking phantom modeling as a method of validating these non-invasive monitoring devices for blood glucose levels. As a part of the last section, we will explore the recently developed reflection and transmission derived sub-THz/THz sensors suitable for this application." @default.
- W4292461657 created "2022-08-20" @default.
- W4292461657 creator A5043116942 @default.
- W4292461657 creator A5064944310 @default.
- W4292461657 date "2022-01-01" @default.
- W4292461657 modified "2023-09-29" @default.
- W4292461657 title "Non-invasive Sub-Terahertz Blood Glucose Measurement" @default.
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