Fourier-transform infrared spectroscopic imaging of articular cartilage and biomaterials: A review.

Trends in applied spectroscopy Pub Date : 2013-01-01
Nagarajan Ramakrishnan, Yang Xia
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Abstract

Fourier transform infrared spectroscopy (FTIR) has the potential to mark up the chemical changes of the materials, as almost all the materials contain their signatures in infrared region. Spectroscopy combined with spatial resolution enables the possibility of characterizing samples up to microscopic level. The emerging development of instrumentation to provide spatial information for infrared (IR) spectroscopy, termed as IR microscopy, provides an opening for newer applications in terms of image analysis, novel data processing tools, etc. Characterization of biomaterials using IR spectroscopy has a trace back to 1950s. The advent of FTIR with imaging capability made characterization possible in cartilage tissue and other biological systems. Extensive analysis of chemical constituents of cartilage and tendon, collagen orientation and polarization property of cartilage using FTIR imaging (FTIRI) has been actively explored during the last two decades. Also, studies using specialized instrumentations like synchrotron FTIR imaging have been attempted to understand the characteristics of biological samples like cartilage. This review covers most of those investigations on cartilage with FTIRI to characterize the same in terms of component characteristics and quantification, collagen orientation, zonal boundary determination, influence of mechanical compression on tissue nature and its correlation to other techniques in last 20 years.

关节软骨和生物材料的傅立叶变换红外光谱成像:综述。
傅立叶变换红外光谱(FTIR)具有标记材料化学变化的潜力,因为几乎所有材料都在红外区域包含其特征。光谱学与空间分辨率相结合,可以将样品表征到微观水平。为红外光谱提供空间信息的仪器(称为红外显微镜)的新兴发展,为图像分析、新型数据处理工具等方面的新应用提供了机会。使用红外光谱对生物材料的表征可以追溯到20世纪50年代。具有成像能力的FTIR的出现使软骨组织和其他生物系统的表征成为可能。在过去的二十年里,使用FTIR成像(FTIRI)对软骨和肌腱的化学成分、软骨的胶原取向和极化特性进行了广泛的分析。此外,还试图使用同步加速器FTIR成像等专门仪器进行研究,以了解软骨等生物样品的特征。这篇综述涵盖了过去20年来对FTIRI软骨的大多数研究,以在成分特征和定量、胶原取向、区域边界确定、机械压缩对组织性质的影响及其与其他技术的相关性方面对其进行表征。
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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