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Fluorescence sensors for parallel measurements in multichannel microfluidic devices covering the full channel cross sections

机译:用于覆盖整个通道横截面的多通道微流控设备中并行测量的荧光传感器

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Sensitive fluorescence sensors are needed to measure single cell properties in microfluidic devices. Optimizing the parallelizability and the measurement volume are two options enabling high throughput applications. The fluorescence sensor presented is highly parallelizable and, due to MEMS micromirror arrays, several sensors can be integrated in one multichannel microfluidic system. The fluorescence sensor has a detection volume of a few thousand femtoliters, covering the full cross-sections of the microfluidic channels used and can be easily adjusted to other cross-section geometries. By measuring labeled particles with diameters below 10 μm we qualified the applicability of the sensor with different channel geometries. The sensors have measurement volumes fitted to the channel geometries with widths from 20 μrn up to 400 μm and reach a decision limit of less than 1790 molecules of equivalent soluble fluorophore.
机译:需要灵敏的荧光传感器来测量微流控设备中的单细胞特性。优化并行性和测量量是实现高通量应用的两个选择。所展示的荧光传感器具有高度可并行性,并且由于采用了MEMS微镜阵列,因此可以将多个传感器集成到一个多通道微流体系统中。荧光传感器的检测体积为几千飞升,覆盖了所用微流体通道的整个横截面,并且可以轻松调整为其他横截面几何形状。通过测量直径小于10μm的标记颗粒,我们验证了具有不同通道几何形状的传​​感器的适用性。传感器具有适合于通道几何形状的测量体积,宽度从20μm到最大400μm,并达到了小于1790个等效可溶性荧光团分子的判定极限。

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