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Image Guided Intervention Lab

Molecular Imaging Probe Laboratory (MIPL)

Molecular Biophotonics and Imaging Laboratory

Nuclear Medicine Research Lab

Imaging Radiobiology Laboratory

Molecular Imaging of Musculoskeletal Illnesses (MIMI)

Noninvasive Cardiac Imaging Lab

Magnetic Resonance Systems Research Lab (MRSRL)

Imaging and Therapeutic Platforms for Translational Medicine

Cardiovascular Gene and Cell Therapy

In Vivo Optical Imaging of the Nervous System Lab

Cellular and Molecular Imaging Lab (CMIL)

Research and Diagnosis of Disease States Using Magnetic Resonance Lab

Multimodality Molecular Imaging Lab

Cancer Molecular Imaging Chemistry Laboratory (CMICL)

Computational Cancer Research Laboratory (CCRL)

Translational Molecular Imaging Lab

Signal Transduction Imaging and Engineering (STIE)

Molecular Imaging Instrumentation Laboratory (MIIL)

Cellular Pathway Imaging Laboratory (CPIL)

Advanced Pediatric MR Imaging Laboratory


Blau Lab

Radiological Science Lab

Scott Lab

3D Medical Imaging Laboratory

Brown Lab

Nolan Lab

Clinical Molecular Imaging Research Group (CMIRG)

Interventional Radiology Translational Therapies Lab


Imaging Radiobiology Laboratory
Ted Graves


Imaging Radiobiology Laboratory

I am interested in applications of emerging functional and molecular imaging techniques in radiation therapy of cancer. In order to integrate these novel imaging procedures with state-of-the-art radiation therapy, a number of issues must be addressed. First, what are the molecular targets that hold the most promise for targeting and monitoring response to radiation therapy, and how can they best be visualized in vivo? Second, what are the limitations of novel imaging techniques that may bear on their application in radiation oncology? Third, how can one display, analyze, and segment multiple three-dimensional datasets to generate target volumes for radiotherapy? And finally, how will the information contained in imaging results of different modalities be integrated into the selection of a treatment course for a patient and subsequently, where appropriate, the specification of an optimized radiation target? These questions comprise my research. Projects that address these topics include the implementation and evaluation of clinical PET/CT imaging for radiation treatment planning, development and validation of novel PET tracers for preclinical and clinical imaging of tumor radiosensitivity and radiation response, development of software for multimodal image analysis, and study of tumor hypoxia and radioresistance in small animal models using a multimodality molecular imaging approach.


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