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Integrated multimodal photoacoustic microscopy with OCT- guided dynamic focusing

机译:集成多模态光声显微镜OCT引导动态聚焦

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摘要

Combining different contrast mechanisms to achieve simultaneous multimodal imaging is always desirable but is challenging due to the various optical and hardware requirements for different imaging systems. We developed a multimodal microscopic optical imaging system with the capability of providing comprehensive structural, functional and molecular information of living tissues. This imaging system integrated photoacoustic microscopy (PAM), optical coherence tomography (OCT), optical Doppler tomography (ODT) and confocal fluorescence microscopy in one platform. By taking advantage of the depth resolving capability of OCT, we developed a novel OCT-guided surface contour scanning methodology for dynamic focusing adjustment. We have conducted phantom, in vivo, and ex vivo tests to demonstrate the capability of the multimodal imaging system for providing comprehensive microscopic information of biological tissues. Integrating all the aforementioned imaging modalities with OCT-guided dynamic focusing for simultaneous multimodal imaging has promising potential for preclinical research and clinical practice in the future.
机译:始终希望组合不同的对比度机制以实现同步多模态成像,但由于不同成像系统的各种光学和硬件要求,因此具有挑战性。我们开发了一种多模式显微光学成像系统,能够提供有关活组织的全面结构,功能和分子信息。该成像系统在一个平台上集成了光声显微镜(PAM),光学相干断层扫描(OCT),光学多普勒断层扫描(ODT)和共聚焦荧光显微镜。通过利用OCT的深度解析能力,我们开发了一种新颖的OCT引导的表面轮廓扫描方法来进行动态聚焦调整。我们已经进行了幻像,体内和离体测试,以证明多峰成像系统提供生物组织全面显微信息的能力。将所有上述成像方式与OCT引导的动态聚焦集成在一起以进行同步多模态成像,在未来的临床前研究和临床实践中具有广阔的前景。

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