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无需使用同步加速器即可实现高空间分辨率的人发傅里叶变换红外成像。

Fourier transform infrared imaging of human hair with a high spatial resolution without the use of a synchrotron.

作者信息

Chan K L A, Kazarian S G, Mavraki A, Williams D R

机构信息

Department of Chemical Engineering and Chemical Technology, Imperial College London, South Kensington Campus, London SW7 2AZ, United Kingdom.

出版信息

Appl Spectrosc. 2005 Feb;59(2):149-55. doi: 10.1366/0003702053085070.

Abstract

The cross-section of a human hair has been imaged for the first time using the micro attenuated total reflection (ATR) Fourier transformed infrared (FT-IR) method in combination with a focal plane array (FPA) detector. A rigorous approach was applied to determine the spatial resolution, namely, measuring the distance over which the band absorbance changes from 95 to 5% of the maximum absorbance when passing through a sharp interface. The measured value for IR transmission was approximately 16 microm, while the value obtained using ATR imaging was approximately 5 microm. The enhanced spatial resolution achieved by this method allows the medulla of the hair (approximately 8 microm in diameter) to be imaged clearly without the need for a synchrotron source. The spatial resolution of transmission and ATR imaging is compared, and advantages of ATR imaging are discussed.

摘要

首次使用微衰减全反射(ATR)傅里叶变换红外(FT - IR)方法结合焦平面阵列(FPA)探测器对人类头发的横截面进行了成像。采用了一种严格的方法来确定空间分辨率,即测量当穿过一个尖锐界面时,谱带吸光度从最大吸光度的95%变化到5%的距离。红外透射的测量值约为16微米,而使用ATR成像获得的值约为5微米。通过这种方法实现的增强空间分辨率使得头发的髓质(直径约8微米)能够清晰成像,而无需同步加速器光源。比较了透射成像和ATR成像的空间分辨率,并讨论了ATR成像的优势。

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