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Proceedings Paper

Quantitative spectroscopic comparison of the optical properties of the mouse cochlear microstructures using optical coherence tomography at 1.3 µm and 1 µm wavelength regimes (Conference Presentation)

Paper Abstract

The inner ear is a small and sophisticated organ, mainly comprising of the vestibular system and cochlea, responsible for hearing function and plays a crucial role in the life wellness.There have been several studies of investigating the cochlear structures with OCT, and most of these studies used OCT systems with a central wavelength of 1.3 µm. However, the utility of 1 µm OCT system for cochlear imaging application has yet been explored albeit the capability of providing OCT images with a higher axial resolution. Therefore, in this study, we have developed a 1.3 µm and a 1 µm OCT system allowing quantitative and spectroscopic comparison of the cochlear microstructures.

Paper Details

Date Published: 6 March 2020
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Proc. SPIE 11213, Imaging, Therapeutics, and Advanced Technology in Head and Neck Surgery and Otolaryngology 2020, 1121304 (6 March 2020); doi: 10.1117/12.2546252
Show Author Affiliations
Ting-Yen Tsai, National Taiwan Univ. (Taiwan)
Ting Hao Chen, National Taiwan Univ. (Taiwan)
Hsin-Chien Chen, Tri-Service General Hospital (Taiwan)
National Defense Medical Ctr. (Taiwan)
Hao Wang, Tri-Service General Hospital (Taiwan)
National Defense Medical Ctr. (Taiwan)
Yin-Peng Huang, National Taiwan Univ. (Taiwan)
Teng-Chieh Chang, National Taiwan Univ. (Taiwan)
Yu-Wei Chang, National Taiwan Univ. (Taiwan)
Yi-Ping Hung, National Taiwan Univ. (Taiwan)
Meng-Tsan Tsai, Chang Gung Univ. (Taiwan)
Chih-Hung Wang, Taichung Armed Forces General Hospital (Taiwan)
National Defense Medical Ctr. (Taiwan)
Hsiang-Chieh Lee, National Taiwan Univ. (Taiwan)


Published in SPIE Proceedings Vol. 11213:
Imaging, Therapeutics, and Advanced Technology in Head and Neck Surgery and Otolaryngology 2020
Brian J. F. Wong M.D.; Justus F. Ilgner M.D., Editor(s)

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