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Real Time Electronic Feedback for Improved Acoustic Trapping of Micron-Scale Particles

机译:实时电子反馈可改善微米级颗粒的声捕获

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摘要

Acoustic differential extraction has been previously reported as a viable alternative to the repetitive manual pipetting and centrifugation steps for isolating sperm cells from female epithelial cells in sexual assault sample evidence. However, the efficiency of sperm cell isolation can be compromised in samples containing an extremely large number of epithelial cells. When highly concentrated samples are lysed, changes to the physicochemical nature of the medium surrounding the cells impacts the acoustic frequency needed for optimal trapping. Previous work has demonstrated successful, automated adjustment of acoustic frequency to account for changes in temperature and buffer properties in various samples. Here we show that, during acoustic trapping, real-time monitoring of voltage measurements across the piezoelectric transducer correlates with sample-dependent changes in the medium. This is achieved with a wideband peak detector circuit, which identifies the resonant frequency with minimal disruption to the applied voltage. We further demonstrate that immediate, corresponding adjustments to acoustic trapping frequency provides retention of sperm cells from high epithelial cell-containing mock sexual assault samples.
机译:以前已经报道了声学差异提取法是从性侵犯样本证据中的雌性上皮细胞中分离精子细胞的重复手动移液和离心步骤的可行替代方法。然而,在包含大量上皮细胞的样品中,精子细胞分离的效率可能会受到影响。裂解高度浓缩的样品时,细胞周围培养基的物理化学性质的变化会影响最佳捕获所需的声频。先前的工作表明成功成功地自动调整了声频,以解决各种样品中温度和缓冲液特性的变化。在这里,我们表明,在声波捕获期间,跨压电换能器的电压测量值的实时监控与介质中依赖于样本的变化相关。这是通过宽带峰值检测器电路实现的,该电路可在对施加电压造成最小干扰的情况下识别谐振频率。我们进一步证明,对声捕获频率的立即,相应的调整可从含有高上皮细胞的模拟性侵犯样本中保留精子细胞。

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