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Cell Contour Tracking and Data Synchronization for Real-Time, High-Accuracy Micropipette Aspiration

机译:实时,高精度微量移液器抽吸的细胞轮廓跟踪和数据同步

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摘要

This paper presents an automated cell contour visual measurement technique and a data synchronization mechanism for real-time, high-accuracy mechanical characterization of individual cells with micropipette aspiration. A computer vision tracking algorithm is developed for automatically measuring cell deformation parameters in real time (30 Hz) with a resolution down to 0.21 pixel, significantly enhancing the accuracy and efficiency of micropipette aspiration. To achieve a high characterization accuracy, the cell deformations and applied pressure changes are precisely synchronized using a data synchronization mechanism. Experimental results on both solid-like cells (interstitial cells) and liquid-like cells (neutrophils) quantitatively demonstrate that the visual tracking algorithm is capable of significantly increasing the efficiency and accuracy of micropipette aspiration. Among several characterized mechanical parameters, the viscoelastic properties of porcine aortic valve interstitial cells were, for the first time, quantified in this study.
机译:本文提出了一种自动化的细胞轮廓视觉测量技术和一种数据同步机制,用于通过微量移液器抽吸对单个细胞进行实时,高精度的机械表征。开发了一种计算机视觉跟踪算法,可实时自动测量细胞变形参数(30 Hz),分辨率低至0.21像素,显着提高了微量移液器抽吸的准确性和效率。为了获得较高的表征精度,可使用数据同步机制精确同步单元变形和施加的压力变化。固体样细胞(间质细胞)和液体样细胞(嗜中性粒细胞)的实验结果定量地表明,视觉跟踪算法能够显着提高微量移液器抽吸的效率和准确性。在几个表征的机械参数中,猪主动脉瓣间质细胞的粘弹性是首次在这项研究中量化。

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