Handbook of optical sensing of glucose in biological fluids and tissues / edited by Valery V. Tuchin.
| Other author | Tuchin, V. V. (Valeriĭ Viktorovich) |
| Format | Book |
| Publication Info | Boca Raton : CRC Press, ©2009. |
| Description | xxxii, 709 pages : illustrations ; 25 cm. |
| Supplemental Content | Table of contents |
| Subjects |
| Physical medium | illustration |
| Series | Series in medical physics and biomedical engineering Series in medical physics and biomedical engineering. |
| Contents | 1. Glucose: physiological norm and pathology -- System of blood glucose level regulation and carbohydrate metabolism -- Glucose and carbohydrate metebolism violations -- 2. Commercial biosensors for diabetes -- 3. Monte Carlo simulation of light propagation in human tissues and noninvasive glucose sensing -- Modeling of glucose sensing with OCT -- Modeling of glucose sensing with spatial resolved reflectometry -- 4. Statistical analysis for glucose prediction in blood samples by infrared spectroscopy -- Selection of optimal wavelength region based on the first loading vector analysis -- 5. Near-infrared reflection spectroscopy for noninvasive monitoring of glucose: established and novel strategies for multivariate calibration -- Experimental design and methods -- Results obtained by conventional calibration and discussion -- Specificity of response -- Illustration of the science-based calibration method -- 6. Characterizing the influence of acute hyperglycaemia on cerebral hemodynamics by optical imaging -- Optical imaging techniques of functional brain -- Influence of acute hyperglycaemia on CBF and SD in rat cortex -- 7. Near-infrared thermo-optical response of the localized reflectance of diabetic and non-diabetic skin -- 8. In vivo nondestructive measurement of blood glucose by near-infrared diffuse-reflectance spectroscopy -- NIR spectra of human skin and built of calibration models -- New chemometrics algorithms for wavelength interval selection and sample selection and their applications to in vivo near-infrared spectroscopic determination of blood glucose -- Multi-objective geb]netic algorithm-based sample selection for partial least dquares model building -- Region orthogonal signal correction (ROSC) and its application to in vivo NIR spectra of human skin. |
| Abstract | "This handbook presents methods that improve the accuracy in glucose prediction based on infrared absorption spectroscopy, recent studies on the influence of acute hyperglycemia on cerebral blood flow, and the correlation between diabetes and the thermo-optical response of human skin. It examines skin glucose monitoring by near-infrared spectroscopy (NIR), fluorescence-based glucose biosensors, and a photonic crystal contact lens sensor. The contributors also explore problems of polarimetric glucose sensing in transparent and turbid tissues as well as offer a high-resolution optical technique for noninvasive, continuous, and accurate blood glucose monitoring and glucose diffusion measurement."--Jacket. |
| General note | "A Taylor & Francis book." |
| Bibliography note | Includes bibliographical references and index. |
| Genre/form | Handbooks and manuals. |
| LCCN | 2008014799 |
| ISBN | 9781584889748 (hardback ; alk. paper) |
| ISBN | 1584889748 (hardback ; alk. paper) |
Availability
| Library | Location | Call Number | Status | Item Actions |
|---|---|---|---|---|
| Joyner | General Stacks | RC660 .H363 2009 | ✔ Available | Place Hold |