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Measurement of very low concentration of microparticles in fluid by single particle detection using acoustic radiation force induced particle motion

机译:使用声辐射力诱导粒子运动通过单颗粒检测测量流体中的微粒浓度非常低的微粒

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Analysis and characterization of microparticles suspended in fluid have important applications in various industries. In this work, a new ultrasound-based method is proposed that enables the measurement of very low concentrations of particles in fluid. By using single particle detection, the method provides particle counts and acquires backscatter signals from individual particles. The detection method utilizes the motion of the particle induced by the acoustic radiation force and acoustic streaming. The identification of an individual particle is enabled by detecting its trajectory using a line-by-line cross-correlation and modified Hough transform. The proposed method has the potential to be used as a laboratory or a clinical device for analyzing fluid samples and studying single-cell characteristics.
机译:悬浮在流体中悬浮的微粒的分析和表征在各个行业中具有重要应用。在这项工作中,提出了一种新的超声基方法,使得能够测量流体中的非常低浓度的颗粒。通过使用单粒子检测,该方法提供粒子计数并从各个粒子获取反向散射信号。检测方法利用由声辐射力和声流引起的颗粒的运动。通过使用逐行互相关和修改的Hough变换检测其轨迹来使能识别单个粒子。该方法具有用作实验室或临床装置,用于分析流体样品并研究单细胞特征。

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