胆红素光纤传感器的初步研制。

Analytical Chemistry Insights Pub Date : 2014-07-01 eCollection Date: 2014-01-01 DOI:10.4137/ACI.S14711
Steven M Babin, Raymond M Sova
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引用次数: 8

摘要

本文描述了一种光纤胆红素传感器的初步开发,其中一个无包层传感部分用于提供透射光与化学环境的倏逝波相互作用。通过使用与胆红素吸收峰相对应的波长,可以使用Beer-Lambert定律将传感部分周围的胆红素浓度与吸收的光量联系起来。初步的体外测试表明,传感器响应与体吸收测量结果以及比尔-朗伯定律是一致的。此外,还发现共轭和非共轭胆红素具有不同的峰值吸收波长,因此可以使用两个光学频率来测量两种胆红素。该装置的未来发展可以为重症新生儿高胆红素血症患者提供实时、即时监测静脉注射胆红素的手段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Preliminary development of a fiber optic sensor for measuring bilirubin.

Preliminary development of a fiber optic bilirubin sensor is described, where an unclad sensing portion is used to provide evanescent wave interaction of the transmitted light with the chemical environment. By using a wavelength corresponding to a bilirubin absorption peak, the Beer-Lambert Law can be used to relate the concentration of bilirubin surrounding the sensing portion to the amount of absorbed light. Initial testing in vitro suggests that the sensor response is consistent with the results of bulk absorption measurements as well as the Beer-Lambert Law. In addition, it is found that conjugated and unconjugated bilirubin have different peak absorption wavelengths, so that two optical frequencies may potentially be used to measure both types of bilirubin. Future development of this device could provide a means of real-time, point-of-care monitoring of intravenous bilirubin in critical care neonates with hyperbilirubinemia.

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