Prof. James G. Fujimoto
Elihu Thomson Professor of Electrical Engineering at Massachusetts Institute of Technology
SPIE Involvement:
| Board of Directors | Symposia Committee | Fellow status | Symposium Chair | Conference Chair | Conference Program Committee | Conference Co-Chair | Journal Editorial Board Member | Author | Editor | Instructor
Publications (119)

SPIE Journal Paper | July 6, 2017
JBO Vol. 22 Issue 07
KEYWORDS: Radiofrequency ablation, Optical coherence tomography, Tissue optics, Esophagus, Real time imaging, System identification, Tumor growth modeling, Quantitative analysis, Tissues, Visualization

SPIE Journal Paper | January 5, 2017
JBO Vol. 22 Issue 01
KEYWORDS: Blood circulation, Eye, Optical coherence tomography, Magnesium, Blood pressure, Doppler tomography, Doppler effect, Heart, Magnetic resonance imaging, Tissues

SPIE Journal Paper | December 29, 2016
JBO Vol. 21 Issue 12
KEYWORDS: Tissues, Breast, Confocal microscopy, Multiphoton microscopy, Tissue optics, Natural surfaces, Luminescence, Microscopy, Image quality, Pathology

Proc. SPIE. 9712, Multiphoton Microscopy in the Biomedical Sciences XVI
KEYWORDS: Breast, Microscopes, Femtosecond phenomena, Real time imaging, Multiphoton microscopy, Breast cancer, Tissues, Imaging systems, Image processing, Pathology, Luminescence, Collagen, Computer aided design, Tissue optics

Showing 5 of 119 publications
Conference Committee Involvement (51)
Optical Coherence Tomography and Coherence Domain Optical Methods in Biomedicine XXII
29 January 2018 | San Francisco, California, United States
27 January 2018 | San Francisco, United States
Optical Coherence Imaging Techniques and Imaging in Scattering Media II
25 June 2017 | Munich, Germany
Optical Coherence Tomography and Coherence Domain Optical Methods in Biomedicine XXI
30 January 2017 | San Francisco, California, United States
28 January 2017 | San Francisco, United States
Showing 5 of 51 published special sections
Course Instructor
SC312: Principles and Applications of Optical Coherence Tomography
Optical coherence tomography (OCT) is a new imaging modality, which is the optical analog of ultrasound. OCT can perform high resolution cross sectional imaging of the internal structure of biological tissues and materials. OCT is promising for biomedical imaging because it functions as a type of optical biopsy, enabling tissue pathology to be imaged in suit and in real time. This technology also has numerous applications in other fields ranging from nondestructive evaluation of materials to optical data storage. This course describes OCT and the integrated disciplines including fiber optics, interferometry, high-speed optical detection, biomedical imaging, in vitro and in vivo studies, and clinical medicine
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