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Handheld 2-channel impedimetric cell counting system with embedded real-time processing

机译:手持式2通道阻抗细胞计数系统,具有嵌入式实时处理功能

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摘要

Lab-on-a-chip systems have been attracting a growing attention for the perspective of miniaturization and portability of bio-chemical assays. Here we present a the design and characterization of a miniaturized, USB-powered, self-contained, 2-channel instrument for impedance sensing, suitable for label-free tracking and real-time detection of cells flowing in microfluidic channels. This original circuit features a signal generator based on a direct digital synthesizer, a transimpedance amplifier, an integrated square-wave lock-in coupled to a Σ▵ ADC converter, and a digital processing platform. Real-time automatic peak detection on two channels is implemented in a FPGA. System functionality has been tested with an electronic resistance modulator to simulate 1% impedance variation produced by cells, reaching a time resolution of 50μs (enabling a count rate of 2000 events/s) with an applied voltage as low as 200mV. Biological experiments have been carried out counting yeast cells. Statistical analysis of events is in agreement with the expected amplitude and time distributions. 2-channel yeast counting has been performed with concomitant dielectrophoretic cell separation, showing that this novel and ultra compact sensing system, thanks to the selectivity of the lock-in detector, is compatible with other AC electrical fields applied to the device.
机译:实验室内系统一直在引起生物化学测定的小型化和可移植性的观点来吸引日益激烈的关注。在这里,我们介绍了用于阻抗感测的小型化,USB供电,自包含的2通道仪器的设计和表征,适用于在微流体通道中流动的无标记跟踪和实时检测。该原始电路具有基于直接数字合成器的信号发生器,跨阻抗放大器,耦合到Σ▵ADC转换器的集成方波锁定,以及数字处理平台。在两个通道上实时自动峰值检测在FPGA中实现。系统功能已经用电子电阻调制器测试,以模拟电池产生的1%阻抗变化,达到50μs的时间分辨率(实现2000个事件/ s的计数率),其施加的电压低至200mV。已经进行了生物实验进行了计数酵母细胞。事件的统计分析与预期的幅度和时间分布一致。通过伴随的介电泳细胞分离进行了2沟道酵母计数,表明这种新颖和超紧凑的传感系统由于锁定检测器的选择性而言,与施加到该装置的其他AC电场兼容。

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