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Microfluidic cell sorter with integrated piezoelectric actuator

机译:集成压电致动器的微流体细胞分选仪

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摘要

We demonstrate a low-power (<0.1 mW), low-voltage (<10 Vp-p) on-chip piezoelectrically actuated micro-sorter that can deflect single particles and cells at high-speed. With rhodamine in the stream, switching of flow between channels can be visualized at high actuation frequency (~1.7 kHz). The magnitude of the cell deflection can be precisely controlled by the magnitude and waveform of input voltage. Both simulation and experimental results indicate that the drag force imposed on the suspended particle/cell by the instantaneous fluid displacement can alter the trajectory of the particle/cell of any size, shape, and density of interest in a controlled manner. The open-loop E. Coli cell deflection experiment demonstrates that the sorting mechanism can produce a throughput of at least 330 cells/s, with a promise of a significantly higher throughput for an optimized design. To achieve close-loop sorting operation, fluorescence detection, real-time signal processing, and field-programmable-gate-array (FPGA) implementation of the control algorithms were developed to perform automated sorting of fluorescent beads. The preliminary results show error-free sorting at a sorting efficiency of ~70%. Since the piezoelectric actuator has an intrinsic response time of 0.1–1 ms and the sorting can be performed under high flowrate (particle speed of ~1–10 cm/s), the system can achieve a throughput of >1,000 particles/s with high purity.
机译:我们展示了一种低功耗(<0.1 mW),低电压(<10 Vp-p)的片上压电驱动微分选器,该分选器可以使单个粒子和细胞高速偏转。在流中使用罗丹明时,可以在高启动频率(〜1.7 kHz)下可视化通道之间的流切换。单元偏转的大小可以通过输入电压的大小和波形精确控制。仿真和实验结果均表明,瞬时流体位移施加在悬浮颗粒/细胞上的阻力可以受控方式改变任何大小,形状和密度的颗粒/细胞的轨迹。开环大肠杆菌细胞偏转实验表明,该分选机制可产生至少330个细胞/秒的通量,对于优化设计,有望显着提高通量。为了实现闭环分选操作,开发了控制算法的荧光检测,实时信号处理和现场可编程门阵列(FPGA)实现,以执行荧光珠的自动分选。初步结果显示,分选效率约为70%,可实现无错误分选。由于压电执行器的固有响应时间为0.1–1毫秒,并且可以在高流速下进行分选(粒子速度为〜1–10 cm / s),因此该系统可以实现> 1,000粒子/秒的吞吐量纯度。

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