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Background Modeling Method to Identify Interactions Between Circulating Tumor Cells and Dendritic Cells

机译:识别循环肿瘤细胞与树突状细胞之间相互作用的背景建模方法

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Interactions between dendritic cells (DCs) and circulating tumor cells (CTCs) have attracted wide attention in tumor immunity research, especially on specifically targeted tumors. However, feature extraction and noninvasive tracking of DCs and CTCs are challenges that have long existed in biomedicine. In this study, we developed an automatic algorithm for identifying, counting, tracking, and segmenting fluorescently-labeled CTCs and DCs from the blood vessels of mouse ears. For fluorescence imaging, we constructed an in vivo image flow cytometry system to capture dual-channel (green and red) fluorescence image sequence simultaneously. To achieve real-time functions for the CTCs and DCs, we developed a motion detection method based on codebook which first performs background modeling and then cone-shaped area search procedures for postprocessing. We validated this novel algorithm through in vivo image sequencing, through which we observed the interaction of CTCs and DCs. Moreover, we used quantitative colocalization to determine the relationship between CTCs and DCs. The quantitative results illustrated the interactions between CTCs and DCs, as did image sequences which are promising for driving research on cancer immunotherapy in the future.
机译:树突状细胞(DC)与循环肿瘤细胞(CTC)之间的相互作用已在肿瘤免疫研究中引起了广泛的关注,特别是针对特定靶向的肿瘤。然而,DC和CTC的特征提取和无创跟踪是生物医学中长期存在的挑战。在这项研究中,我们开发了一种自动算法,用于从小鼠耳朵的血管中识别,计数,跟踪和分割荧光标记的CTC和DC。对于荧光成像,我们构建了一个体内图像流式细胞仪系统来同时捕获双通道(绿色和红色)荧光图像序列。为了实现CTC和DC的实时功能,我们开发了一种基于密码本的运动检测方法,该方法首先执行背景建模,然后执行锥形区域搜索程序进行后处理。我们通过体内图像测序验证了这种新颖的算法,通过该序列我们观察了CTC和DC的相互作用。此外,我们使用定量共定位来确定CTC和DC之间的关系。定量结果说明了CTC和DC之间的相互作用,图像序列也有希望在将来推动癌症免疫疗法的研究。

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