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Rapid test for the detection of hazardous microbiological material

机译:快速检测有害微生物物质

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After attacks with anthrax pathogens have been committed since 2001 all over the world the fast detection and determination of biological samples has attracted interest. A very promising method for a rapid test is Laser Induced Breakdown Spectroscopy (LIBS). LIBS is an optical method which uses time-resolved or time-integrated spectral analysis of optical plasma emission after pulsed laser excitation. Even though LIBS is well established for the determination of metals and other inorganic materials the analysis of microbiological organisms is difficult due to their very similar stoichiometric composition. To analyze similar LIBS-spectra computer assisted chemometrics is a very useful approach.rnIn this paper we report on first results of developing a compact and fully automated rapid test for the detection of hazardous microbiological material. Experiments have been carried out with two setups: A bulky one which is composed of standard laboratory components and a compact one consisting of miniaturized industrial components. Both setups work at an excitation wavelength of λ=1064nm (Nd:YAG). Data analysis is done by Principal Component Analysis (PCA) with an adjacent neural network for fully automated sample identification.
机译:自2001年以来,在全世界范围内都发生了炭疽病病原体的袭击之后,对生物样品的快速检测和测定引起了人们的兴趣。快速测试的一种非常有前途的方法是激光诱导击穿光谱法(LIBS)。 LIBS是一种光学方法,它使用脉冲激光激发之后的光学等离子体发射的时间分辨或时间积分光谱分析。尽管LIBS已很好地用于金属和其他无机材料的测定,但由于微生物的化学计量组成非常相似,因此很难对其进行分析。分析相似的LIBS光谱计算机辅助化学计量学是一种非常有用的方法。在本文中,我们报告了开发紧凑,全自动的快速检测有害微生物材料的快速结果。实验使用两种设置进行:一种是由标准实验室组件组成的笨重组件,另一种是由小型工业组件组成的紧凑组件。两种设置都在λ= 1064nm的激发波长(Nd:YAG)下工作。数据分析是通过主成分分析(PCA)与相邻的神经网络进行的,以实现全自动样品识别。

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