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Intelligent image-activated cell sorting 2.0

机译:智能图像激活的单元格排序2.0

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The advent of intelligent image-activated cell sorting (iIACS) has enabled high-throughput intelligent image-based sorting of single live cells from heterogeneous populations. iIACS is an on-chip microfluidic technology that builds on a seamless integration of a high-throughput fluorescence microscope, cell focuser, cell sorter, and deep neural network on a hybrid software-hardware data management architecture, thereby providing the combined merits of optical microscopy, fluorescence-activated cell sorting (FACS), and deep learning. Here we report an iIACS machine that far surpasses the state-of-the-art iIACS machine in system performance in order to expand the range of applications and discoveries enabled by the technology. Specifically, it provides a high throughput of similar to 2000 events per second and a high sensitivity of similar to 50 molecules of equivalent soluble fluorophores (MESFs), both of which are 20 times superior to those achieved in previous reports. This is made possible by employing (i) an image-sensor-based optomechanical flow imaging method known as virtual-freezing fluorescence imaging and (ii) a real-time intelligent image processor on an 8-PC server equipped with 8 multi-core CPUs and GPUs for intelligent decision-making, in order to significantly boost the imaging performance and computational power of the iIACS machine. We characterize the iIACS machine with fluorescent particles and various cell types and show that the performance of the iIACS machine is close to its achievable design specification. Equipped with the improved capabilities, this new generation of the iIACS technology holds promise for diverse applications in immunology, microbiology, stem cell biology, cancer biology, pathology, and synthetic biology.
机译:智能图像激活的细胞排序(IIACS)的出现使得能够从异构群体中启用了基于高吞吐的智能图像的单个直播单元的排序。 IIACS是一种片上微流体技术,可以在混合软件 - 硬件数据管理架构上的高通量荧光显微镜,细胞聚焦器,细胞分拣机和深神经网络的无缝集成,从而提供光学显微镜的组合优点,荧光激活的细胞分选(FACS)和深度学习。在这里,我们报告了一个IIAIACS机器,即将超越系统性能的最先进的IIACS机器,以扩展技术支持的应用范围和发现。具体地,它提供了类似于2000个事件的高吞吐量,并且类似于类似于50个等同的可溶性荧光团(MESF)的敏感性,这两种分子均为先前报告中达到的20倍。这是通过使用(i)基于图像传感器的光机械流量成像方法来实现的,称为虚拟冻结荧光成像和(ii)在配备8个多核CPU的8-PC服务器上的实时智能图像处理器智能决策的GPU,为了显着提高IIACS机器的成像性能和计算能力。我们用荧光粒子和各种细胞类型表征IIAIACS机器,表明IIACS机器的性能接近其可实现的设计规范。这一新一代IIACS技术配备了改进的能力,可承诺在免疫学,微生物学,干细胞生物学,癌症生物学,病理学和合成生物学中不同的应用。

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