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Design of portable ultraminiature flow cytometers for medical diagnostics

机译:用于医疗诊断的便携式超敏流式细胞仪的设计

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Design of portable microfluidic flow/image cytometry devices for measurements in the field (e.g. initial medical diagnostics) requires careful design in terms of power requirements and weight to allow for realistic portability. True portability with high-throughput microfluidic systems also requires sampling systems without the need for sheath hydrodynamic focusing both to avoid the need for sheath fluid and to enable higher volumes of actual sample, rather than sheath/sample combinations. Weight/power requirements dictate use of super-bright LEDs with top-hat excitation beam architectures and very small silicon photodiodes or nanophotonic sensors that can both be powered by small batteries. Signal-to-noise characteristics can be greatly improved by appropriately pulsing the LED excitation sources and sampling and subtracting noise in between excitation pulses. Microfluidic cytometry also requires judicious use of small sample volumes and appropriate statistical sampling by microfluidic cytometry or imaging for adequate statistical significance to permit real-time (typically in less than 15 minutes) initial medical decisions for patients in the field. This is not something conventional cytometry traditionally worries about, but is very important for development of small, portable microfluidic devices with small-volume throughputs. It also provides a more reasonable alternative to conventional tubes of blood when sampling geriatric and newborn patients for whom a conventional peripheral blood draw can be problematical. Instead one or two drops of blood obtained by pin-prick should be able to provide statistically meaningful results for use in making real-time medical decisions without the need for blood fractionation, which is not realistic in the doctor's office or field.
机译:用于测量的便携式微流体流量/图像细胞仪装置的设计(例如初始医疗诊断)需要仔细设计电源要求和重量,以实现现实的便携性。具有高吞吐量微流体系统的真正便携性也需要采样系统,而无需鞘水动力学聚焦,以避免鞘液的需要,并且能够实现较高的实际样品,而不是护套/样本组合。重量/功率要求决定使用具有顶帽激励束架构的超亮LED,以及非常小的硅光电二极管或纳米光电直播传感器,可以由小电池供电。通过适当地脉冲LED激励源和在激发脉冲之间的采样和减去噪声,可以大大提高信号 - 噪声特性。微流体细胞仪还需要通过微流体细胞术或成像进行微流体量和适当的统计取样,以进行足够的统计学意义,以允许实时的实时(通常在不到15分钟)中初始医学决策。这不是传统的细胞测定法传统上担心的东西,但对于具有小容量吞吐量的小型便携式微流体装置非常重要。它还为常规外周血吸血患者进行异常有问题时,它还为常规血管提供了更合理的替代品。而是通过PIN刺可以获得的一两滴血液应该能够提供统计上有意义的结果,以便在没有血液分级的情况下制作实时医学决策,这在医生的办公室或领域不现实。

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