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Pharmaceutical applications of vibrational chemical imaging and chemometrics: a review.

机译:振动化学成像和化学计量学在制药领域的应用:综述。

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摘要

The emergence of chemical imaging (CI) has gifted spectroscopy an additional dimension. Chemical imaging systems complement chemical identification by acquiring spatially located spectra that enable visualization of chemical compound distributions. Such techniques are highly relevant to pharmaceutics in that the distribution of excipients and active pharmaceutical ingredient informs not only a product's behavior during manufacture but also its physical attributes (dissolution properties, stability, etc.). The rapid image acquisition made possible by the emergence of focal plane array detectors, combined with publication of the Food and Drug Administration guidelines for process analytical technology in 2001, has heightened interest in the pharmaceutical applications of CI, notably as a tool for enhancing drug quality and understanding process. Papers on the pharmaceutical applications of CI have been appearing in steadily increasing numbers since 2000. The aim of the present paper is to give an overview of infrared, near-infrared and Raman imaging in pharmaceutics. Sections 2 and 3 deal with the theory, device set-ups, mode of acquisition and processing techniques used to extract information of interest. Section 4 addresses the pharmaceutical applications.
机译:化学成像(CI)的出现使光谱学有了新的发展。化学成像系统通过获取使化学化合物分布可视化的空间光谱来补充化学识别。此类技术与药物高度相关,因为赋形剂和活性药物成分的分布不仅可以告知产品在制造过程中的行为,还可以告知其物理属性(溶解特性,稳定性等)。焦平面阵列检测器的出现使快速图像采集成为可能,再加上2001年美国食品和药物管理局发布的过程分析技术指南,引起了人们对CI药物应用的兴趣,尤其是作为提高药物质量的工具和理解过程。自2000年以来,有关CI的药物应用的论文一直在稳定增长。本论文的目的是概述药物中的红外,近红外和拉曼成像。第2和第3节介绍了用于提取感兴趣信息的理论,设备设置,获取方式和处理技术。第4节介绍了制药应用。

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