Academic Curriculum

Imaging Technology Tracks

Rigorous training in diagnostic imaging physics, equipment operation, and clinical safety standards for medical professionals.

RAD-101Core Imaging
MRI Physics
Study of nuclear magnetic resonance, pulse sequences, and spatial encoding techniques for high-resolution diagnostic imaging.

Core Modules

  • Larmor frequency & spin dynamics
  • T1 & T2 relaxation mechanisms
  • Gradient coil field interactions
  • K-space data acquisition theory

Lab Equipment

3T MRI PhantomSignal Analysis SoftwareRF Coil Arrays
RAD-204Clinical Modality
CT Technology
Advanced computed tomography architecture, detector arrays, reconstruction algorithms, and dose management protocols.

Core Modules

  • X-ray tube physics & filtration
  • Filtered back-projection math
  • Iterative reconstruction methods
  • Radiation dose optimization

Lab Equipment

CT Gantry SimulatorDose Monitoring ToolsReconstruction Workstations
RAD-302Real-time Imaging
Ultrasound Physics
Principles of acoustic wave propagation, transducer design, Doppler shifts, and real-time image formation.

Core Modules

  • Piezoelectric effect & transducers
  • Acoustic impedance & reflection
  • Color & spectral Doppler analysis
  • Beamforming & focusing logic

Lab Equipment

Ultrasound PhantomsTransducer ArraysDiagnostic Displays
RAD-405Hands-on Training
Clinical Lab
Practical application of imaging modalities, patient positioning, equipment calibration, and clinical workflow management.

Core Modules

  • Patient safety & positioning
  • Equipment calibration routines
  • DICOM network integration
  • Quality assurance testing

Lab Equipment

Calibration PhantomsDICOM WorkstationsSafety Interlocks
Radiology & Imaging Technology Department
Clinical Excellence Standards
Academic Progression

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.

Year 1PHASE 01 // FOUNDATION

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

Clinical Safety Focus
Year 2PHASE 02 // MODALITY

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

Hands-on Calibration
Year 3PHASE 03 // RESEARCH

Clinical Translation

Collaborate on peer-reviewed research projects, integrating innovative imaging solutions into hospital workflows and diagnostic protocols.

Active Researchers

280+ Students

Peer-Reviewed Output
Year 4PHASE 04 // RESIDENCYActive Now

Clinical Excellence

Prepare for professional practice with rigorous residency simulations, focusing on diagnostic accuracy and advanced biomedical engineering integration.

Placement Rate

98% Success

Clinical Ready
Research Opportunities Available

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.

Peer-Reviewed MentorshipClinical Hospital AccessAdvanced Lab Facilities