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Femtosecond time-resolved laser-induced breakdown spectroscopy for detection and identification of bacteria: A comparison to the nanosecond regime

机译:飞秒时间分辨激光诱导的击穿光谱,用于检测和鉴定细菌:与纳秒制度的比较

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Bacterial samples {Escherichia coli and Bacillus subtilis) have been analyzed by laser-induced breakdown spectroscopy (LIBS) using femtosecond pulses. We compare the obtained spectra with those resulting from the classical nanosecond LIBS. Specific features of femtosecond LIBS have been demonstrated, very attractive for analyzing biological sample: (i) a lower plasma temperature leading to negligible nitrogen and oxygen emissions from excited ambient air and a better contrast in detection of trace mineral species; and (ii) a specific ablation regime that favors intramolecular bonds emission with respect to atomic emission. A precise kinetic study of molecular band head intensities allows distinguishing the contribution of native CN bonds released by the sample from that due to carbon recombination with atmospheric nitrogen. Furthermore a sensitive detection of trace mineral elements provide specific spectral signature of different bacteria. An example is given for the Gram test provided by different magnesium emissions from Escherichia coli and Bacillus subtilis. An entire spectram consists of hundred resolved lines belonging to 13 atomic or molecular species, which provides an ensemble of valuable data to identify different bacteria.
机译:通过飞秒脉冲通过激光诱导的击穿光谱(Libs)分析了细菌样品{eScherichia Coli和枯草芽孢杆菌)。我们将所获得的光谱与典型纳秒Libs产生的那些进行比较。已经证明了Femtosecond Libs的具体特征,非常有吸引力,用于分析生物样品:(i)降低血浆温度,导致来自激发环境空气的可忽略的氮和氧气排放以及在痕量矿物质的检测中更好地形成鲜明对比; (ii)一种特定的消融制度,其促进了分子内债券相对于原子排放的发射。分子带头强度的精确动力学研究允许将样品释放的天然CN键的贡献区分为由于碳重组与大气氮气的碳重组。此外,痕量矿物元素的敏感性检测提供了不同细菌的特异性光谱特征。给出了来自大肠杆菌和枯草芽孢杆菌的不同镁排放提供的革兰彻检测。整个光谱由属于13个原子或分子物种的百分分辨的线组成,其提供了有价值的数据来识别不同的细菌。

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