To develop and test a four-dimensional (4D) motion model capable of accurately extracting respiratory motion on voxel-by-voxel basis using 4D-CT imaging and deformable image registration (DIR).
Author profile
Imad M. Ali, PhD
University of Oklahoma Health Sciences Center
To evaluate dosimetric uncertainties associated with the small proton fields using spot-scanning beams used in intensity-modulated proton therapy (IMPT).
To design and test a three-dimensional detector for proton radiography and CT imaging using a volumetric plastic scintillator irradiated with therapeutic high energy proton beams.
To develop a 3D dose reconstruction algorithm capable of generating volumetric dose distributions measured with large plastic scintillation detectors irradiated with photon, electron, and proton beams used in radiation therapy.
To evaluate a multi-antenna microwave imaging system capable of producing high-resolution three-dimensional images of different phantom models representing abdominal, thoracic, and brain tissues.
To develop and characterize plastic scintillator sheets for in-vivo dosimetry to measure entrance dose distributions for therapeutic photon, electron, and proton beams.