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Advances in intravital microscopy for monitoring cell flow dynamics in vivo

机译:活体内显微镜用于监测体内细胞流动动力学的研究进展

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摘要

The use of small animals in intravital optical microscopy is a well-established experimental model to study blood microcirculation in vivo. Recent advances in cell biology and optical techniques (e.g., lasers, CCD cameras, software, etc.) provide the basis for significant improvements with in vivo imaging. This review summarizes the latest achievements in this specific area focusing on the development of modern optical and biological platforms. This includes in vivo real time monitoring of individual cells in the context of blood flow, super-sensitive fluorescence imaging, high-speed cell imaging and light scattering techniques. The capability of these platforms has been demonstrated in live animal models (e.g., mouse and rat ear, rat mesentery, and others) for real-time monitoring of individual blood cell properties (e.g., size and shape), cell trafficking, cell-cell interactions (e.g., aggregation in flow or adhesion to vessel walls), and blood flow viscosity. Future applications are discussed including in vivo early diagnosis of disease and monitoring cellular responses to environmental and therapeutic interventions.
机译:在活体内光学显微镜中使用小型动物是研究体内血液微循环的公认实验模型。细胞生物学和光学技术(例如激光,CCD相机,软件等)的最新进展为体内成像的显着改善提供了基础。这篇综述总结了该特定领域的最新成就,重点是发展现代光学和生物平台。这包括在血流情况下对单个细胞进行体内实时监测,超灵敏的荧光成像,高速细胞成像和光散射技术。这些平台的功能已经在活体动物模型(例如,老鼠和大鼠的耳朵,大鼠肠系膜等)中得到了证明,可以实时监测单个血细胞的性质(例如,大小和形状),细胞运输,细胞相互作用(例如,血流中的聚集或对血管壁的粘附)以及血流粘度。讨论了未来的应用,包括疾病的体内早期诊断以及监测细胞对环境和治疗干预的反应。

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