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Multi-Pixel Photon Counters for Optofluidic Characterization of Particles and Microalgae

机译:多像素光子计数器用于微粒和微藻的光流体表征

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摘要

We have developed an optofluidic biosensor to study microscale particles and different species of microalgae. The system is comprised of a microchannel with a set of chevron-shaped grooves. The chevrons allows for hydrodynamic focusing of the core stream in the center using a sheath fluid. The device is equipped with a new generation of highly sensitive photodetectors, multi-pixel photon counter (MPPC), with high gain values and an extremely small footprint. Two different sizes of high intensity fluorescent microspheres and three different species of algae (Chlamydomonas reinhardtii strain 21 gr, Chlamydomonas suppressor, and Chlorella sorokiniana) were studied. The forward scattering emissions generated by samples passing through the interrogation region were carried through a multimode fiber, located in 135 degree with respect to the excitation fiber, and detected by a MPPC. The signal outputs obtained from each sample were collected using a data acquisition system and utilized for further statistical analysis. Larger particles or cells demonstrated larger peak height and width, and consequently larger peak area. The average signal output (integral of the peak) for Chlamydomonas reinhardtii strain 21 gr, Chlamydomonas suppressor, and Chlorella sorokiniana falls between the values found for the 3.2 and 10.2 μm beads. Different types of algae were also successfully characterized.
机译:我们已经开发出一种光流体生物传感器来研究微尺度颗粒和微藻的不同种类。该系统由带有一组人字形凹槽的微通道组成。人字形允许使用鞘液对中心处的芯流进行流体动力聚焦。该设备配备了新一代的高灵敏度光电探测器,多像素光子计数器(MPPC),具有高增益值和非常小的占位面积。研究了两种不同大小的高强度荧光微球和三种不同的藻类(莱茵衣藻菌株21 gr,衣藻抑制物和索氏小球藻)。由样品通过询问区域产生的前向散射发射通过多模光纤传输,该多模光纤相对于激励光纤位于135度,并由MPPC检测。使用数据采集系统收集从每个样本获得的信号输出,并将其用于进一步的统计分析。较大的颗粒或孔显示出较大的峰高和峰宽,因此峰面积也较大。莱茵衣藻21 gr,衣藻抑制物和小球藻小球藻的平均信号输出(峰的积分)落在3.2和10.2μm磁珠的值之间。不同类型的藻类也已成功表征。

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