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葡萄糖浓度对THz频段血液光学特性的影响
作者姓名:GUSEV Sviatoslav Igorevich  DEMCHENKO Petr S  CHERKASOVA Olga P  FEDOROV Vyacheslav I  KHODZITSKY Mikhail K
作者单位:1. ITMO University, Saint-Petersburg 197101, Russia; 2. Institute of Laser Physics of SB RAS, Novosibirsk 630090, Russia; 3. Novosibirsk State Technical University, Novosibirsk 630073, Russia
摘    要:无创性血糖检测仍是糖尿病患者护理安全舒适的现实科学任务。本文研究了血糖光学特性与血糖浓度之间的相关性。用时域THz光谱研究了全血在0.3~0.5 THz频率范围内的透射谱。在注射胰岛素后的短时间内,由同一糖尿病患者产生了生物样品。得到了血液光学特性的频散特性。基于频散,给出了血糖浓度与折射率和介电常数的关系式。这项工作是复杂研究的一部分,重点是无创葡萄糖测量技术的发展。记录血糖水平与血液光学参数之间的依赖关系,使得将来可以使用反射光谱技术进行无创血糖水平检测。

关 键 词:光谱学  太赫兹  葡萄糖  糖尿病
收稿时间:2017-12-17

Influence of glucose concentration on blood optical properties in THz frequency range
GUSEV Sviatoslav Igorevich,DEMCHENKO Petr S,CHERKASOVA Olga P,FEDOROV Vyacheslav I,KHODZITSKY Mikhail K.Influence of glucose concentration on blood optical properties in THz frequency range[J].Chinese Optics,2018,11(2):182-189.
Authors:GUSEV Sviatoslav Igorevich  DEMCHENKO Petr S  CHERKASOVA Olga P  FEDOROV Vyacheslav I  KHODZITSKY Mikhail K
Institution:1. ITMO University, Saint-Petersburg 197101, Russia; 2. Institute of Laser Physics of SB RAS, Novosibirsk 630090, Russia; 3. Novosibirsk State Technical University, Novosibirsk 630073, Russia
Abstract:Non-invasive blood glucose sensing is still actual scientific task for more safe and comfort diabetes care. This article shows correlation between blood optical properties and its glucose concentration. The transmission spectra of whole blood have been studied by the time-domain THz spectroscopy in the frequency range from 0.3 to 0.5 THz. Biosamples were produced from the same person with the diabetes mellitus during a short time period after the insulin injection have been used. Frequency dispersions of blood optical properties are obtained. Based on frequency dispersions, the dependences of blood glucose concentrations with the refractive index and permittivity are presented. This work is a part of the complex investigation, which focuses on the development of a non-invasive glucose measuring technique. Registering dependences between blood glucose level and blood optical parameters allows for using the reflective spectroscopy techniques in future for non-invasive blood glucose level sensing.
Keywords:spectroscopy  terahertz  glucose  diabetes mellitus
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