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In vivo imaging of pancreatic endocrine islets

机译:胰内分泌胰岛的体内成像

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Extended focus optical coherence microscope (xfOCM) circumvents the compromise between lateral resolution and depth of field by us of a Bessel-like illumination beam. The high sensitivity and parallel depth profiling of Fourier domain optical coherence tomography are preserved, and combined with high isotropic resolution of 1.5 - 2 urn. To comply with the requirements for in vivo measurements, beam scanning had to be implemented. We then performed measurements, first of excised pancreas, validated by standard immunohistochemistry, to investigate the structures that can be observed. For a quantitative analysis, a semi-automatic islet detection algorithm evaluated the islet size, position, contrast and homogeneity. The influence of streptozotocin on the signature of the islets was investigated in a next step. Finally, xfOCM was applied to make measurements of the murine pancreas in situ and in vivo, visualizing pancreatic lobules, ducts, blood vessels and individual islets of Langerhans.
机译:扩展焦点光学相干显微镜(xfOCM)通过使用类似贝塞尔的照明光束来避免横向分辨率和景深之间的折衷。保留了傅里叶域光学相干断层扫描的高灵敏度和平行深度分析,并结合了1.5-2 um的高各向同性分辨率。为了符合体内测量的要求,必须进行束扫描。然后,我们首先通过标准免疫组织化学验证了切除的胰腺的测量,以研究可以观察到的结构。对于定量分析,半自动胰岛检测算法评估了胰岛的大小,位置,对比度和同质性。在下一步中研究了链脲佐菌素对胰岛标记的影响。最后,将xfOCM应用于原位和体内小鼠胰腺的测量,以可视化胰腺小叶,导管,血管和Langerhans的单个胰岛。

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