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Medical imaging |
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MRI & neuroimaging |
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- Diffusion-tensor imaging (DTI)
- Functional neuroimaging (fMRI & PET)
- Image registration
- PROPELLER MRI methods
- Post-mortem MRI
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X-ray imaging (phase-based) |
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- Multiple-image radiography (MIR)
- Phase-contrast tomography
- Diffraction tomography
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X-ray imaging (conventional) |
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- Local tomography and megavoltage tomography
- Computer-aided diagnosis / digital mammography
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PET & SPECT |
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EEG/MEG |
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Ultrasound transmission tomography |
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Infrared
ophthalmic imaging |
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Tomography and image reconstruction |
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4D / 5D spatio-temporal image reconstruction |
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Thermoacoustic and reflectivity tomography |
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Local tomography |
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Diffraction tomography |
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Image analysis |
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Image recognition and detection theory |
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Content-based image retrieval |
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Computer-aided diagnosis |
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Functional neuroimage analysis |
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Image & signal processing |
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Image restoration / deconvolution / interpolation |
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Color |
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Watermarking |
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Mesh modeling of images |
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Antenna and diffractive optics design |
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Basic image processing |
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Image quality assessment / Numerical observers |
Books
Miles N. Wernick and John N. Aarsvold, eds., Emission
Tomography: The Engineering and Physics of PET and SPECT,
San Diego: Academic Press, 2004, pp. 596.
H.
Stark and Y. Yang, Vector Space Projections: A Numerical
Approach to Signal and Image Processing, Neural Nets, and
Optics, John Wiley & Sons, Inc., New York, 1998.
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