Gao Yi, Huang Tao, Hao Jing-Ru, Ma Yue
Key Laboratory of Trace Inspection and Identification Technology, Ministry of Public Security, Criminal Investigation Police University of China, Shenyang 110035, China.
Beijing Public Security Judicial Expertise Center, Beijing 100054, China.
Fa Yi Xue Za Zhi. 2022 Oct 25;38(5):640-649. doi: 10.12116/j.issn.1004-5619.2021.510904.
Hyperspectral imaging technology can obtain the spatial and spectral three-dimensional imaging of substances simultaneously, and obtain the unique continuous characteristic spectrum of substances in a wide spectrum range at a certain spatial resolution, which has outstanding advantages in the fine classification and identification of biological substances. With the development of hyperspectral imaging technology, a large amount of data has been accumulated in the exploration of data acquisition, image processing and material inspection. As a new technology means, hyperspectral imaging technology has its unique advantages and wide application prospects. It can be combined with the common biological physical evidence of blood (stains), saliva, semen, sweat, hair, nails, bones, etc., to achieve rapid separation, inspection and identification of substances. This paper introduces the basic theory of hyperspectral imaging technology and its application in common biological evidence examination research and analyzes the feasibility and development of biological evidence testing and identification, in order to provide a theoretical basis for the development of new technology and promote hyperspectral imaging technology in related biological examination, to better serve the forensic practice.
高光谱成像技术能够同时获取物质的空间和光谱三维成像,并在一定空间分辨率下,在宽光谱范围内获取物质独特的连续特征光谱,这在生物物质的精细分类和识别方面具有突出优势。随着高光谱成像技术的发展,在数据采集、图像处理和物质检测探索过程中积累了大量数据。作为一种新技术手段,高光谱成像技术具有独特优势和广阔应用前景。它可与血液(斑迹)、唾液、精液、汗液、毛发、指甲、骨骼等常见生物物证相结合,实现物质的快速分离、检测和识别。本文介绍了高光谱成像技术的基本理论及其在常见生物物证检验研究中的应用,分析了生物物证检验鉴定的可行性及发展情况,以期为新技术的发展提供理论依据,推动高光谱成像技术在相关生物检验中的应用,更好地服务于法医实践。