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Advances in imaging probes and optical microendoscopic imaging techniques for early in vivo cancer assessment

机译:用于早期体内癌症评估的成像探针和光学显微内窥镜成像技术的进展

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摘要

A new chapter in the history of medical diagnosis happened when the first X-ray technology was invented in the late 1800s. Since then, many non-invasive and minimally invasive imaging techniques have been invented for clinical diagnosis to research in cellular biology, drug discovery, and disease monitoring. These imaging modalities have leveraged the benefits of significant advances in computer, electronics, and information technology and, more recently, targeted molecular imaging. The development of targeted contrast agents such as fluorescent and nanoparticle probes coupled with optical imaging techniques has made it possible to selectively view specific biological events and processes in both in vivo and ex vivo systems with great sensitivity and selectivity. Thus, the combination of targeted molecular imaging probes and optical imaging techniques have become a mainstay in modern medicinal and biological research. Many promising results have demonstrated great potentials to translate to clinical applications. In this review, we describe a discussion of employing imaging probes and optical microendoscopic imaging techniques for cancer diagnosis.
机译:1800年代末期发明了第一项X射线技术后,医学诊断史上的新篇章发生了。从那以后,发明了许多非侵入性和微创成像技术,用于临床诊断,以研究细胞生物学,药物发现和疾病监测。这些成像方式充分利用了计算机,电子学和信息技术以及最近的靶向分子成像技术的重大进步所带来的好处。靶向荧光造影剂(例如荧光探针和纳米颗粒探针)的发展以及光学成像技术的结合,使得有可能以很高的灵敏度和选择性选择性地观察体内和体外系统中的特定生物学事件和过程。因此,靶向分子成像探针和光学成像技术的结合已成为现代医学和生物学研究的主流。许多令人鼓舞的结果显示了转化为临床应用的巨大潜力。在这篇综述中,我们描述了使用成像探针和光学显微内镜成像技术进行癌症诊断的讨论。

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