Imaging Technology Tracks
Rigorous training in diagnostic imaging physics, equipment operation, and clinical safety standards for medical professionals.
Core Modules
- Larmor frequency & spin dynamics
- T1 & T2 relaxation mechanisms
- Gradient coil field interactions
- K-space data acquisition theory
Lab Equipment
Core Modules
- X-ray tube physics & filtration
- Filtered back-projection math
- Iterative reconstruction methods
- Radiation dose optimization
Lab Equipment
Core Modules
- Piezoelectric effect & transducers
- Acoustic impedance & reflection
- Color & spectral Doppler analysis
- Beamforming & focusing logic
Lab Equipment
Core Modules
- Patient safety & positioning
- Equipment calibration routines
- DICOM network integration
- Quality assurance testing
Lab Equipment
From Foundational Physics to Clinical Mastery
Our curriculum bridges theoretical medical physics with hands-on laboratory experience, preparing the next generation of radiologists and engineers for clinical excellence.
Radiology Fundamentals
Master the core physics of medical imaging, covering X-ray production, radiation safety, and the basic principles of diagnostic image formation.
Core Modules
12 Units
Advanced Imaging Tech
Deep dive into complex modalities including MRI pulse sequences, CT reconstruction algorithms, and ultrasound beam physics for clinical diagnostics.
Lab Hours
450+ Hours
Clinical Translation
Collaborate on peer-reviewed research projects, integrating innovative imaging solutions into hospital workflows and diagnostic protocols.
Active Researchers
280+ Students
Clinical Excellence
Prepare for professional practice with rigorous residency simulations, focusing on diagnostic accuracy and advanced biomedical engineering integration.
Placement Rate
98% Success
Advance Your Career in Medical Imaging
Join our research group to explore cutting-edge diagnostic techniques, mentor undergraduate students, and collaborate on clinical imaging solutions.