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使用单独优化的光源结合双光子显微镜和光学相干断层扫描技术。

Combined two-photon microscopy and optical coherence tomography using individually optimized sources.

作者信息

Jeong Bosu, Lee Byunghak, Jang Min Seong, Nam Hyoseok, Yoon Sang June, Wang Taejun, Doh Junsang, Yang Bo-Gie, Jang Myoung Ho, Kim Ki Hean

机构信息

School of Interdisciplinary Bioscience and Bioengineering, Pohang University of Science and Technology, Pohang, Gyeongbuk, South Korea.

出版信息

Opt Express. 2011 Jul 4;19(14):13089-96. doi: 10.1364/OE.19.013089.

DOI:10.1364/OE.19.013089
PMID:21747461
Abstract

The combination of two-photon microscopy (TPM) and optical coherence tomography (OCT) is useful in conducting in-vivo tissue studies, because they provide complementary information regarding tissues. In the present study, we developed a new combined system using separate light sources and scanners for individually optimal imaging conditions. TPM used a Ti-Sapphire laser and provided molecular and cellular information in microscopic tissue regions. Meanwhile, OCT used a wavelength-swept source centered at 1300 nm and provided structural information in larger tissue regions than TPM. The system was designed to do simultaneous imaging by combining light from both sources. TPM and OCT had the field of view values of 300 μm and 800 μm on one side respectively with a 20x objective. TPM had resolutions of 0.47 μm and 2.5 μm in the lateral and axial directions respectively, and an imaging speed of 40 frames/s. OCT had resolutions of 5 μm and 8 μm in lateral and axial directions respectively, a sensitivity of 97dB, and an imaging speed of 0.8 volumes per second. This combined system was tested with simple microsphere specimens, and was then applied to image small intestine and ear tissues of mouse models ex-vivo. Molecular, cellular, and structural information of the tissues were visualized using the proposed combined system.

摘要

双光子显微镜(TPM)与光学相干断层扫描(OCT)相结合,在进行体内组织研究时非常有用,因为它们能提供关于组织的互补信息。在本研究中,我们开发了一种新的组合系统,该系统使用独立的光源和扫描仪以实现各自的最佳成像条件。TPM使用钛宝石激光器,可在微观组织区域提供分子和细胞信息。同时,OCT使用中心波长为1300nm的扫频光源,能在比TPM更大的组织区域提供结构信息。该系统设计为通过组合来自两个光源的光进行同步成像。使用20倍物镜时,TPM和OCT在一侧的视野值分别为300μm和800μm。TPM在横向和轴向的分辨率分别为0.47μm和2.5μm,成像速度为40帧/秒。OCT在横向和轴向的分辨率分别为5μm和8μm,灵敏度为97dB,成像速度为每秒0.8体素。该组合系统用简单的微球标本进行了测试,然后应用于对小鼠模型的小肠和耳部组织进行离体成像。使用所提出的组合系统可将组织的分子、细胞和结构信息可视化。

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