Institut FEMTO-ST, Université de Franche-Comté, CNRS, F-25000 Besançon, France.
Centre d'Investigation Clinique, Centre Hospitalier Universitaire de Besançon, INSERM CIC 1431, 25030 Besançon, France.
Sensors (Basel). 2023 Apr 27;23(9):4325. doi: 10.3390/s23094325.
Despite numerous innovations, measuring bacteria concentrations on a routine basis is still time consuming and ensuring accurate measurements requires careful handling. Furthermore, it often requires sampling small volumes of bacteria suspensions which might be poorly representative of the real bacteria concentration. In this paper, we propose a spectroscopy measurement method based on a description of the absorption/attenuation spectra of ESKAPEE bacteria. Concentrations were measured with accuracies less than 2%. In addition, mixing the mathematical description of the absorption/attenuation spectra of mammalian T-cells and bacteria allows for the simultaneous measurements of both species' concentrations. This method allows real-time, sampling-free and seeder-free measurement and can be easily integrated into a closed-system environment.
尽管有许多创新,但是常规测量细菌浓度仍然很耗时,并且要确保准确的测量需要小心处理。此外,它通常需要从小体积的细菌悬浮液中采样,而这些悬浮液可能不能很好地代表实际的细菌浓度。在本文中,我们提出了一种基于 ESKAPEE 细菌吸收/衰减光谱描述的光谱测量方法。浓度测量的精度小于 2%。此外,混合哺乳动物 T 细胞和细菌的吸收/衰减光谱的数学描述,允许同时测量两种浓度。这种方法允许实时、无采样和无接种测量,并且可以很容易地集成到封闭系统环境中。