Designing Microwave Sensors for Glucose Concentration Detection in Aqueous and Biological Solutions: Towards Non-Invasive Glucose Sensing
暫譯: 設計微波感測器以檢測水相及生物溶液中的葡萄糖濃度:朝向非侵入式葡萄糖感測
Juan, Carlos G.
- 出版商: Springer
- 出版日期: 2021-06-15
- 售價: $6,720
- 貴賓價: 9.5 折 $6,384
- 語言: 英文
- 頁數: 242
- 裝訂: Hardcover - also called cloth, retail trade, or trade
- ISBN: 3030761789
- ISBN-13: 9783030761783
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相關分類:
微波工程 Microwave、感測器 Sensor
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相關主題
商品描述
This book presents a comprehensive study covering the design and application of microwave sensors for glucose concentration detection, with a special focus on glucose concentration tracking in watery and biological solutions. This book is based on the idea that changes in the glucose concentration provoke variations in the dielectric permittivity of the medium. Sensors whose electrical response is sensitive to the dielectric permittivity of the surrounding media should be able to perform as glucose concentration trackers. At first, this book offers an in-depth study of the dielectric permittivity of water-glucose solutions at concentrations relevant for diabetes purposes; in turn, it presents guidelines for designing suitable microwave resonators, which are then tested in both water-glucose solutions and multi-component human blood plasma solutions for their detection ability and sensitivities. Finally, a portable version is developed and tested on a large number of individuals in a real clinical scenario. All in all, the book reports on a comprehensive study on glucose monitoring devices based on microwave sensors. It covers in depth the theoretical background, provides extensive design guidelines to maximize sensitivity, and validates a portable device for applications in clinical settings.
商品描述(中文翻譯)
本書提供了一項全面的研究,涵蓋了用於葡萄糖濃度檢測的微波傳感器的設計與應用,特別專注於在水性和生物溶液中追蹤葡萄糖濃度。本書的基礎在於葡萄糖濃度的變化會引起介質介電常數的變化。對於周圍介質的介電常數敏感的傳感器應能夠作為葡萄糖濃度追蹤器。首先,本書深入研究了與糖尿病相關的水-葡萄糖溶液的介電常數;接著,提供了設計合適微波共振器的指導方針,這些共振器隨後在水-葡萄糖溶液和多組分人類血漿溶液中進行檢測能力和敏感度的測試。最後,開發並測試了一個便攜式版本,並在真實臨床場景中對大量個體進行了測試。總的來說,本書報告了一項基於微波傳感器的葡萄糖監測設備的全面研究。它深入探討了理論背景,提供了廣泛的設計指導以最大化敏感度,並驗證了一個可用於臨床環境的便攜式設備。