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Tadayuki Yoshitake Top-Executive

I am an enthusiastic engineer-scientist focused on optical technologies. I am committed to translating cutting-edge science to real-world applications.

Deep background in optical medical imaging system development, fluorescence imaging of human tissue and histopathological evaluation, clinical study design and management, and grants, regulatory documents, and patent writings. Proficient in coding (python, C, C++) and experienced in hardware control, simulation, image signal processing, and ML applications. Multi-disciplinary team leading experiments.

Headquarters: Japan
Headline: VP of Cavity Engineering | Broad experience at the intersection of research and development. Specialized in optics, imaging, medical and quantum technologies.
Followers: 231
Connections: 221
Company: Nanofiber Quantum Technologies
Company Website: http://www.nano-qt.com
Skills: Production Management, Optical Fiber, Machine Learning, Clinical trial, System development, 3D modeling, Image processing, Device R&D, Python (Programming Language), Optical imaging research, Medical imaging research
Experience: Title: VP of Cavity Engineering Company: Nanofiber Quantum Technologies Location: Tokyo, Japan Start: Jun 2026 End: Present Title: Principal Research Scientist Company: Nanofiber Quantum Technologies Location: Tokyo, Japan Start: Dec 2025 End: Jun 2026 Title: Senior Scientist Company: Verily Location: South San Francisco, California, United States Start: Apr 2022 End: Oct 2025 Title: Clinical research student in pathology Company: Beth Israel Deaconess Medical Center Location: Boston, Massachusetts, United States Start: Aug 2015 End: Feb 2022 Title: Doctoral Student in electrical engineering (medical imaging) Company: Massachusetts Institute of Technology Location: Boston, Massachusetts, United States Start: Sep 2014 End: Feb 2022 Title: Research Scientist Company: Canon, Inc. Location: Start: Apr 2008 End: Aug 2014
Education: School: Massachusetts Institute of Technology Degree: Doctor of Philosophy (Ph.D.) Field: Electrical engineering and computer science (Biomedical/Medical imaging) Period: Sep 2014 - Feb 2022 School: Kyoto University Degree: Master of Science (M.S.) Field: electronic science and engineering Period: Apr 2002 - Mar 2008
Publications: Spectroscopy System for 2S1/2–2D5/2 Clock Transition at 1.76 µm in Trapped Barium Ions Using Diode-Laser-Based Light Sources (Journal of the Physical Society of Japan · Jul 15, 2025) Autofluorescence Virtual Staining System for H&E Histology and Multiplex Immunofluorescence Applied to Immuno-Oncology Biomarkers in Lung Cancer (Cancer Research Communications · Jan 8, 2025) Clinical-Grade Validation of an Autofluorescence Virtual Staining System With Human Experts and a Deep Learning System for Prostate Cancer (Modern Pathology · Nov 1, 2024) Data retrieval from archival renal biopsies using nonlinear microscopy (Plos one · Mar 15, 2024) Rapid histological imaging of bone without microtome sectioning using nonlinear microscopy (Bone · Nov 4, 2021) Real-time diagnosis and Gleason grading of prostate core needle biopsies using nonlinear microscopy (Modern Pathology · Nov 2, 2021) A microneedle platform for buccal macromolecule delivery. (SCIENCE ADVANCES · Jan 22, 2021) Nonlinear microscopy for detection of prostate cancer: analysis of sensitivity and specificity in radical prostatectomies. (Modern Pathology · Nov 19, 2019) A luminal unfolding microneedle injector for oral delivery of macromolecules. (Nature Medicine · Oct 7, 2019) Comparison of nonlinear microscopy and frozen section histology for imaging of Mohs surgical margins. (Biomedical Optics Express · Aug 1, 2019) Comparing histologic evaluation of prostate tissue using nonlinear microscopy and paraffin H&E: a pilot study. (Modern Pathology · Mar 26, 2019) Multiscale nonlinear microscopy and widefield white light imaging enables rapid histological imaging of surgical specimen margins. (Biomedical Optics Express · May 1, 2018) Rapid histopathological imaging of skin and breast cancer surgical specimens using immersion microscopy with ultraviolet surface excitation. (Scientific Reports · Mar 14, 2018) Rapid virtual hematoxylin and eosin histology of breast tissue specimens using a compact fluorescence nonlinear microscope. (laboratory investigation · Nov 13, 2017) Direct comparison between confocal and multiphoton microscopy for rapid histopathological evaluation of unfixed human breast tissue. (Journal of Biomedical Optics · Dec 19, 2016)
Country: Japan