Nanophotonic Research Center, Shenzhen Key Laboratory of Micro-Scale Optical Information Technology, Institute of Microscale Optoelectronics, Shenzhen 518060, China.
College of Physics and Optoelectronic Engineering, Shenzhen University, Shenzhen 518060, China.
Biosensors (Basel). 2024 Aug 16;14(8):397. doi: 10.3390/bios14080397.
Photoacoustics can provide a direct measurement of light absorption by microalgae depending on the photosynthesis pigment within them. In this study, we have performed photoacoustic flowmetry on living microalgae cells to measure their flow characteristics, which include flow speed, flow angle, flow direction, and, more importantly, the photoacoustic absorption spectrum, all by observing the photoacoustic Doppler power spectra during their flowing state. A supercontinuum pulsed laser with a high repetition frequency is used as the light source: through intensity modulation at a specified frequency, it can provide wavelength-selectable excitation of a photoacoustic signal centered around this frequency. Our approach can be useful to simultaneously measure the flow characteristics of microalgae and easily discriminate their different species with high accuracy in both static and dynamic states, thus facilitating the study of their cultivation and their role in our ecosystem.
光声技术可以根据微藻内部的光合作用色素直接测量微藻对光的吸收。在这项研究中,我们对活体微藻细胞进行了光声流动测量,以测量它们的流动特性,包括流动速度、流动角度、流动方向,以及更重要的是光声吸收光谱,所有这些都是通过观察它们流动状态下的光声多普勒功率谱来实现的。我们使用具有高重复频率的超连续脉冲激光作为光源:通过在指定频率进行强度调制,可以提供以该频率为中心的光声信号的波长选择性激发。我们的方法可以同时测量微藻的流动特性,并在静态和动态状态下以高精度轻松区分它们的不同物种,从而促进对它们的培养及其在我们的生态系统中的作用的研究。