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基于近红外透射光谱法的动物全血鉴别

[Identification of Animal Whole Blood Based on Near Infrared Transmission Spectroscopy].

作者信息

Wan Xiong, Wang Jian, Liu Peng-xi, Zhang Ting-ting

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2016 Jan;36(1):80-3.

Abstract

The inspection and classification for blood products are important but complicated in import-export ports or inspection and quarantine departments. For the inspection of whole blood products, open sampling can cause pollution and virulence factors in bloods samples may even endanger inspectors. Thus non-contact classification and identification methods for whole bloods of animals are needed. Spectroscopic techniques adopted in the flowcytometry need sampling blood cells during the detection; therefore they can not meet the demand of non-contact identification and classification for whole bloods of animals. Infrared absorption spectroscopy is a technique that can be used to analyze the molecular structure and chemical bonds of detected samples under the condition of non-contact. To find a feasible spectroscopic approach of non-contact detection for the species variation in whole blood samples, a near infrared transmitted spectra (NITS, 4 497.669 - 7 506.4 cm(-1)) experiment of whole blood samples of three common animals including chickens, dogs and cats has been conducted. During the experiment, the spectroscopic resolution is 5 cm(-1), and each spectrogram is an average of 5 measured spectral data. Experimental results show that all samples have a sharp absorption peak between 5 184 and 5 215 cm(-1), and a gentle absorption peak near 7 000 cm(-1). Besides, the NITS curves of different samples of same animals are similar, and only have slight differences in the whole transmittance. A correlation coefficient (CC) is induced to distinguish the differences of the three animals' whole bloods in NITS curves, and the computed CCs between NITS curves of different samples of the same animals, are greater than 0.99, whereas CCs between NITS curves of the whole bloods of different animals are from 0.509 48 to 0.916 13. Among which CCs between NITS curves of the whole bloods of chickens and cats are from 0.857 23 to 0.912 44, CCs between NITS curves of the whole bloods of chickens and dogs are from 0.509 48 to 0.664 82, and CCs between NITS curves of the whole bloods of cats and dogs are from 0.872 75 to 0.916 13. The cat and the dog belong to the class of mammal, and the CCs between their whole bloods NITS curves are greater than those between chickens and cats, or chickens and dogs, which are hetero-class animals. Namely, the whole bloods NITS curves of the cat and the dog have higher similarity. These results of NITS provide a feasible method of non-contact identification of animal whole bloods.

摘要

血液制品在进出口口岸或检验检疫部门的检验和分类工作既重要又复杂。对于全血制品的检验,开放式采样可能会造成污染,血液样本中的致病因子甚至可能危及检验人员。因此,需要对动物全血进行非接触式分类和识别方法。流式细胞术中采用的光谱技术在检测过程中需要对血细胞进行采样;因此,它们无法满足对动物全血进行非接触式识别和分类的需求。红外吸收光谱技术是一种可以在非接触条件下用于分析被检测样本的分子结构和化学键的技术。为了找到一种可行的用于全血样本物种差异非接触检测的光谱方法,对鸡、狗和猫三种常见动物的全血样本进行了近红外透射光谱(NITS,4497.669 - 7506.4 cm(-1))实验。实验过程中,光谱分辨率为5 cm(-1),每个光谱图是5次测量光谱数据的平均值。实验结果表明,所有样本在5184至5215 cm(-1)之间有一个尖锐的吸收峰,在7000 cm(-1)附近有一个平缓的吸收峰。此外,同一动物不同样本的NITS曲线相似,仅在整体透光率上有细微差异。引入相关系数(CC)来区分三种动物全血NITS曲线的差异,同一动物不同样本的NITS曲线之间计算得到的CC值大于0.99,而不同动物全血NITS曲线之间的CC值在0.50948至0.91613之间。其中,鸡和猫全血NITS曲线之间的CC值在0.85723至0.91244之间,鸡和狗全血NITS曲线之间的CC值在0.50948至0.66482之间,猫和狗全血NITS曲线之间的CC值在0.87275至0.91613之间。猫和狗属于哺乳动物类,它们全血NITS曲线之间的CC值大于鸡与猫或鸡与狗(这两类不同的动物)之间的CC值。也就是说,猫和狗的全血NITS曲线具有更高的相似度。NITS的这些结果为动物全血的非接触识别提供了一种可行的方法。

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