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Laser Induced Fluorescence Lifetime Characterization of Bacillus Endospore Species using Time Correlated Single Photon Counting Analysis with the Multi-Exponential Fit Method

机译:利用多指数拟合方法使用时间相关的单光子计数分析,激光诱导芽孢杆菌肌肌肌肌肌衰竭终潮时间

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Rapid detection of biological material is critical for determining presence/absence of bacterial endospores within various investigative programs. Even more critical is that if select material tests positive for bacillus endospores then tests should provide data at the species level. Optical detection of microbial endospore formers such as Bacillus sp. can be heavy, cumbersome, and may only identify at the genus level. Data provided from this study will aid in characterization needed by future detection systems for further rapid breakdown analysis to gain insight into a more positive signature collection of Bacillus sp. Literature has shown that fluorescence spectroscopy of endospores could be statistically separated from other vegetative genera, but could not be separated among one another. Results of this study showed endospore species separation is possible using laser-induce fluorescence with lifetime decay analysis for Bacillus endospores. Lifetime decays of B. subtilis, B. megaterium, B. coagulans, and B. anthracis Sterne strain were investigated. Using the Multi-Exponential fit method data showed three distinct lifetimes for each species within the following ranges, 0.2-1.3 ns; 2.5-7.0 ns; 7.5-15.0 ns, when laser induced at 307 nm. The four endospore species were individually separated using principle component analysis (95% CI).
机译:对生物材料的快速检测对于在各种调查方案中确定细菌性肠孢子的存在/不存在至关重要。更为批判的是,如果选择芽孢杆菌阳性的材料测试,则测试应在物种水平提供数据。微生物腹肌蛋白的光学检测如Bacillus sp。可以沉重,麻烦,并且可能只能在属级别识别。本研究提供的数据将有助于未来检测系统所需的表征,以进一步快速分解分析,以了解均质杆菌的更积极签名收集。文献已经表明,脑孢子蛋白的荧光光谱可以与其他植物属性统计分离,但不能在彼此中分开。该研究的结果表明,使用激光诱导荧光具有终生衰减分析的脑肌衰减分析,可以进行腹腔孢子素物种。研究了B.枯草芽孢杆菌,B. MegaTerium,B.凝血素和B.蒽氏菌菌株的终身衰减。使用多指数拟合方法数据显示以下范围内的每个物种的三个不同的寿命,0.2-1.3 ns; 2.5-7.0 ns; 7.5-15.0 ns,当激光诱导307 nm时。使用原理分析(95%CI)单独分离四种内部血液血液血液血液血液组件。

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