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Microfluidic Platform with Multiplexed Electronic Detection for Spatial Tracking of Particles

机译:具有多重电子检测功能的微流体平台用于粒子的空间跟踪

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摘要

Microfluidic processing of biological samples typically involves differential manipulations of suspended particles under various force fields in order to spatially fractionate the sample based on a biological property of interest. For the resultant spatial distribution to be used as the assay readout, microfluidic devices are often subjected to microscopic analysis requiring complex instrumentation with higher cost and reduced portability. To address this limitation, we have developed an integrated electronic sensing technology for multiplexed detection of particles at different locations on a microfluidic chip. Our technology, called Microfluidic CODES, combines Resistive Pulse Sensing with Code Division Multiple Access to compress 2D spatial information into a 1D electrical signal. In this paper, we present a practical demonstration of the Microfluidic CODES technology to detect and size cultured cancer cells distributed over multiple microfluidic channels. As validated by the high-speed microscopy, our technology can accurately analyze dense cell populations all electronically without the need for an external instrument. As such, the Microfluidic CODES can potentially enable low-cost integrated lab-on-a-chip devices that are well suited for the point-of-care testing of biological samples.
机译:生物样品的微流体处理通常涉及在各种力场下对悬浮颗粒进行差分操作,以便根据目标生物学特性在空间上分离样品。为了将所得的空间分布用作测定读数,微流体设备经常要进行微观分析,这需要复杂的仪器,且成本较高且便携性降低。为了解决这个限制,我们已经开发了一种集成的电子传感技术,可以对微流控芯片上不同位置的颗粒进行多重检测。我们的技术称为微流体编码,将电阻式脉冲传感与码分多址技术相结合,将2D空间信息压缩为1D电信号。在本文中,我们提供了微流控CODES技术的实际演示,该技术可检测并确定分布在多个微流控通道上的培养癌细胞的大小。经高速显微镜验证,我们的技术可以通过电子方式准确分析密集的细胞群,而无需外部仪器。这样,微流体CODES可以潜在地实现低成本的集成芯片实验室实验室设备,该设备非常适合生物样品的即时检验。

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