2019年第80回応用物理学会秋季学術講演会

講演情報

一般セッション(口頭講演)

3 光・フォトニクス » 3.4 生体・医用光学

[20a-E313-1~10] 3.4 生体・医用光学

2019年9月20日(金) 09:00 〜 11:45 E313 (E313)

松浦 祐司(東北大)、崔 森悦(新潟大)

11:15 〜 11:30

[20a-E313-9] Volumetric data restoration of inner ear sensory epithelia based on sparse modeling with multifrequency swept optical coherence microscope

〇(PC)Samuel Choi1,3、Shogo Muramatsu1,3、Takeru Ota2,3、Fumiaki Nin2,3、Takamasa Suzuki1、Hiroshi Hibino2,3 (1.Faculty of Eng., Niigata Univ.、2.School of Medicine, Niigata Univ.、3.AMED-CREST, AMED)

キーワード:Optical coherence microscope, Sparse Modeling, optical comb

A multifrequency swept optical coherence microscope was developed to visualize the vibrational distribution and structure of the inner ear sensory epithelium of living animals in a wide field of view. This system obtains a three-dimensional tomographic image by capturing en-face interference images along the depth direction. However, the resulting data includes diffused reflections such as speckles, motion artifacts due to the living sample, and wavelength aberrations in the microscope. In this research, to remove these noise components efficiently, a sparse model assuming a latent refractive index distribution and non-separable oversampled lapped transform were applied as a synthesis dictionary to the measured in-vivo data. Three-dimensional data restoration was successfully demonstrated by this approach.