@inproceedings{92185a270f8f44b7905f310462e23204,
title = "All-fiber common-path Fourier-domain optical coherence tomography moving 2-axis based on active surface tracking algorithm",
abstract = "Conventional optical coherence tomography (OCT) systems generally have a limited imaging range within a depth of only 1-2 mm and suffers from unwanted noise such as speckle, ghost or mirror noise. To overcome these limitations, we developed a motorized-stage-based OCT system with an extended imaging range, using a common-path Fourier-domain optical coherence tomography (CP-FD-OCT) configuration. Using this OCT systems, OCT image was obtained from an onion, and their subsurface structure were observed. The result showed that the OCT images obtained using our motorized-stage-based system had a significantly extended imaging range due to its real-time accurate depth tracking. Consequently, the devised CP-FD-OCT systems and algorithms have good potential for the further development of endoscopic OCT for microsurgery.",
keywords = "Common-path OCT, FD-OCT, OCT, Tracking algorithm",
author = "Song, \{C. G.\} and Kim, \{K. S.\} and Kim, \{M. H.\} and Ryu, \{S. H.\} and Seo, \{J. H.\} and Kang, \{J. U.\}",
year = "2011",
doi = "10.1109/ICAwST.2011.6163102",
language = "English",
isbn = "9781457708879",
series = "Proceedings of 2011 3rd International Conference on Awareness Science and Technology, iCAST 2011",
pages = "370--375",
booktitle = "Proceedings of 2011 3rd International Conference on Awareness Science and Technology, iCAST 2011",
note = "2011 3rd International Conference on Awareness Science and Technology, iCAST 2011 ; Conference date: 27-09-2011 Through 30-09-2011",
}