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Analysis and Simulation of Rare Cell Detection and Size Based Profiling Using Coupled Micro-Hall Detectors

机译:耦合微厅探测器的稀有细胞检测和尺寸分析的分析与仿真

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We present a comprehensive analysis and finite element method (FEM) modeling and simulations on using magnetic nanoparticles (MNPs) and Hall effect principles to detect, and estimate sizes of rare cells. In this model, rare cells labeled with MNPs are detected in-flow using coupled micro Hall voltage detectors (μHD). The voltage signals of μHDs are then analyzed to obtain size estimates. No physical contact, stressing, electrical excitation or immobilizing of cells is used. Voltage variations based on sensor dimensions, vertical separation distances and cell sizes were analyzed in simulations using finite element method. A signal processing algorithm was developed to determine cell size from detected voltages of bottom/top μHDs. This novel 2D dual μHD concept offers better accuracy when compared to conventional single μHD approach in cell count and also provide size profiling with 12.2% average error for cell diameters from 10 μm to 26 μm.
机译:我们在使用磁性纳米粒子(MNP)和霍尔效应原理进行综合分析和有限元方法(FEM)建模和模拟,以检测和估计稀有细胞的大小。在该模型中,使用耦合的微霍尔电压检测器(μHD)检测用MNP标记的稀有细胞。然后分析μHD的电压信号以获得大小估计。使用任何物理接触,应力,电激发或固定细胞。使用有限元方法分析了基于传感器尺寸,垂直分离距离和电池尺寸的电压变化。开发了信号处理算法以确定来自底部/顶部μHDS的检测电压的小区尺寸。与细胞计数中的传统单μHD方法相比,这种新颖的2D双μHD概念提供更好的精度,并且还提供12.2%平均误差的细胞直径为10μm至26μm的尺寸分析。

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