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A novel measurement method of microorganism growth by tunable diode laser-absorption spectroscopy

机译:可调二极管激光吸收光谱法测量微生物生长的新方法

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The objective of this work was to attain essential parameters by using a Gompertz model that employed a new approach of wavelength modulation spectroscopy (WMS) to describe the microorganism growth. The measurement method of WMS introduces noninvasive technique instead of complicated invasive microorganism operation analysis and quickly obtains the accurate real-time measurement results. By using the WMS measurement, the specific growth curve of microorganism growth clearly displayed every three minute, which has characteristics of high sensitivity, high spectral resolution, fast time response and overcomes the randomness and error operation of traditional analysis methods. The measurement value of BF and AF in the range of 1.008 to 1.043 and the lower MSE showed that Gompertz model can fit the data well and be capable of describing bacteria growth rate and lag time. The results of experiment data suggested that the specific growth rate of microorganism depends on the temperature. With the increase of temperature ranging from 25 °C to 42 °C, the lag time of bacteria growth has been shortened. And the suitable temperature of bacteria growth is about 37 °C. Judging from the growth rate of microorganisms, we can identify the microbial species, not only to improve the precision and efficiency, but also to provides a rapidly sensitive way for microbial detection. The lag time of microorganism growth also provides a great application prospect for shelf life of the food safety.
机译:这项工作的目的是通过使用Gompertz模型获得基本参数,该模型采用了一种新的波长调制光谱法(WMS)来描述微生物的生长。 WMS的测量方法引入了非侵入性技术,而不是复杂的侵入性微生物操作分析,可以快速获得准确的实时测量结果。通过WMS测量,每三分钟清晰地显示出微生物生长的特定生长曲线,具有灵敏度高,光谱分辨率高,响应时间快的特点,克服了传统分析方法的随机性和误差操作的特点。 BF和AF的测量值在1.008到1.043之间,并且MSE较低,这表明Gompertz模型可以很好地拟合数据,并能够描述细菌的生长速率和滞后时间。实验数据的结果表明,微生物的比生长速率取决于温度。随着温度从25°C到42°C的升高,细菌生长的滞后时间缩短了。细菌生长的合适温度约为37°C。从微生物的生长速度来看,我们可以鉴定出微生物种类,不仅可以提高精密度和效率,而且可以提供一种快速灵敏的微生物检测方法。微生物生长的滞后时间也为食品安全的保质期提供了广阔的应用前景。

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