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首页> 外文期刊>Journal of Biophotonics >In vivo label-free functional photoacoustic monitoring of ischemic reperfusion
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In vivo label-free functional photoacoustic monitoring of ischemic reperfusion

机译:在缺血再灌注的无标签功能光声监测中

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摘要

Pressure ulcer formation is a common problem among patients confined to bed or restricted to wheelchairs. The ulcer forms when the affected skin and underlying tissues go through repeated cycles of ischemia and reperfusion, leading to inflammation. This theory is evident by intravital imaging studies performed in immune cell-specific, fluorescent reporter mouse skin with induced ischemia-reperfusion (I-R) injuries. However, traditional confocal or multiphoton microscopy cannot accurately monitor the progression of vascular reperfusion by contrast agents, which leaks into the interstitium under inflammatory conditions. Here, we develop a dual-wavelength micro electro mechanical system (MEMS) scanning-based optical resolution photoacoustic microscopy (OR-PAM) system for continuous label-free functional imaging of vascular reperfusion in an IR mouse model. This MEMS-OR-PAM system provides fast scanning speed for concurrent dual-wavelength imaging, which enables continuous monitoring of the reperfusion process. During reperfusion, the revascularization of blood vessels and the oxygen saturation (sO(2)) changes in both arteries and veins are recorded, from which the local oxygen extraction ratios of the ischemic tissue and the unaffected tissue can be quantified. Our MEMS-OR-PAM system provides novel perspectives to understand the I-R injuries. It solves the problem of dynamic label-free functional monitoring of the vascular reperfusion at high spatial resolution.
机译:压力溃疡形成是限制在轮椅上的患者中的常见问题。当受影响的皮肤和底层组织通过重复血症和再灌注的血液循环时,溃疡形式,导致炎症。该理论是通过在免疫细胞特异性,荧光报道小鼠皮肤中进行的流体成像研究具有明显,荧光报道小鼠皮肤具有诱导的缺血再灌注(I-R)伤害。然而,传统的共焦或多光子显微镜不能准确地监测造影剂的血管再灌注的进展,这在炎症条件下泄漏到间质中。在这里,我们开发一种双波长微电器电力机械系统(MEMS)扫描基光学分辨率光声显微镜(OR-PAM)系统,用于在IR小鼠模型中连续无标记功能成像的血管再灌注。该MEMS或-PAM系统为并发双波长成像提供快速扫描速度,这使得能够连续监控再灌注过程。在再灌注期间,记录血管的血管和血液饱和度(SO(2))的变化,缺血组织和未受影响组织的局部氧萃取比率可以量化。我们的MEMS-or-PAM系统提供了新颖的观点来了解I-R伤害。它解决了在高空间分辨率下对血管再灌注的动态标记功能监测的问题。

著录项

  • 来源
    《Journal of Biophotonics》 |2019年第7期|共9页
  • 作者单位

    Singapore Bioimaging Consortium 11 Biopolis Way Singapore 138667 Singapore;

    Singapore Bioimaging Consortium 11 Biopolis Way Singapore 138667 Singapore;

    Singapore Immunol Network 8a Biomed Grove Singapore 138648 Singapore;

    CALTECH Andrew &

    Peggy Cherng Dept Med Engn Caltech Opt Imaging Lab 1200 East Calif Blvd Pasadena CA 91125 USA;

    Singapore Bioimaging Consortium 11 Biopolis Way Singapore 138667 Singapore;

    Singapore Bioimaging Consortium 11 Biopolis Way Singapore 138667 Singapore;

    Pohang Univ Sci &

    Technol Dept Creat IT Engn Pohang South Korea;

    Pohang Univ Sci &

    Technol Dept Creat IT Engn Pohang South Korea;

    MicroPhotoAcoustics Inc Ronkonkoma NY USA;

    Pohang Univ Sci &

    Technol Dept Creat IT Engn Pohang South Korea;

    Singapore Immunol Network 8a Biomed Grove Singapore 138648 Singapore;

    CALTECH Andrew &

    Peggy Cherng Dept Med Engn Caltech Opt Imaging Lab 1200 East Calif Blvd Pasadena CA 91125 USA;

    Singapore Bioimaging Consortium 11 Biopolis Way Singapore 138667 Singapore;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学;
  • 关键词

    image processing; ischemia reperfusion; photoacoustic imaging; skin;

    机译:图像处理;缺血再灌注;光声成像;皮肤;

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