Publications
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Medical Robotics workshop–MRWS.
Journal of Computer Aided Surgery. 9, 167–171.
Cleary2004.pdf (94.14 KB)
(2004). 
Mechanically-Controlled Spectroscopic Imaging for Tissue Classification.
SPIE Medical Imaging 2019: Image-Guided Procedures, Robotic Interventions, and Modeling. 10951,
Connolly2019a.pdf (877.7 KB)
(2019). 
Matching and reconstruction of brachytherapy seeds using the Hungarian algorithm (MARSHAL).
Journal of Medical Physics. 32, 3475–3492.
(2005). Matching and reconstruction of brachytherapy seeds using the Hungarian algorithm (MARSHAL).
SPIE Medical Imaging. 5744, 810-821.
Jain2005d.pdf (372.73 KB)
(2005). 
Lung deformation estimation and four-dimensional CT lung reconstruction.
Journal of Academic Radiology. 13, 1082–1092.
Xu2006a.pdf (808.23 KB)
(2006). 
Lung deformation estimation and four-dimensional CT lung reconstruction.
Medical image computing and computer-assisted intervention (MICCAI). 8, 312–319.
Xu2005b.pdf (540.62 KB)
(2005). 
Localization of pelvic anatomical coordinate system using US/atlas registration for total hip replacement.
Medical image computing and computer-assisted intervention (MICCAI). 11, 871–879.
Foroughi2008.pdf (851.52 KB)
(2008). 
Investigation of daily deformable image registration for adaptive radiation therapy in head and neck cancer.
CARO COMP 2013 – Innovations in Imaging.
(2013). Intra-operative Seed Reconstruction from C-arm Images for Prostate Brachytherapy.
Annual Convention of the Radiology Society of North America (RSNA).
(2004). Intra-operative Localization of Brachytherapy Implants Using Intensity-based Registration.
7th Imaging Symposium of the Imaging Network of Ontario.
(2008). Intraoperative localization of brachytherapy implants using intensity-based registration.
SPIE Medical Imaging. 7261,
Karim-Aghaloo2009.pdf (584.14 KB)
(2009). 
Intra-operative dosimetry optimization of TRUS-guided prostate brachytherapy requires localization of seeds relative to the prostate.
Innovative Minds in Prostate Cancer Today - IMPaCT.
(2007). Intra-operative 3D guidance in prostate brachytherapy using a non-isocentric C-arm.
Medical image computing and computer-assisted intervention (MICCAI). 10, 9–17.
Jain2007.pdf (3.49 MB)
(2007). 
An Interventional MRI Technique for the Molecular Characterization of Intra-Prostatic Dynamic Contrast Enhancement.
Molecular Imaging. 4 No 1, 63-66.
(2005). An Interventional MRI Technique for the Molecular Characterization of Intra-Prostatic Dynamic Contrast Enhancement.
Molecular Imaging. 4 No 1, 63-66.
(2005). An Interventional MRI Technique for the Molecular Characterization of Intra-Prostatic Dynamic Contrast Enhancement.
Molecular Imaging. 4 No 1, 63-66.
(2005). An Interventional MRI Technique for the Molecular Characterization of Intra-Prostatic Dynamic Contrast Enhancement.
Molecular Imaging. 4 No 1, 63-66.
(2005). Interfraction Variation in Dose and Position During the Treatment of Pancreatic Cancer Using Tomotherapy.
ImNO 2014. 70.
(2014). Interfraction Variation in Dose and Position During the Treatment of Pancreatic Cancer Using Tomotherapy.
ImNO 2014. 70.
(2014). Interfraction Variation in Dose and Position During the Treatment of Pancreatic Cancer Using Tomotherapy.
ImNO 2014. 70.
(2014). Integration of SlicerRT into the Radiation Therapy Clinical Workflow.
ImNO2013 - Imaging Network Ontario Symposium.
Chin2013.pdf (73.58 KB)
(2013).
(2014).
(2014). 
Integrating Diagnostic and Interventional MRI for the Molecular Characterization of Prostate Cancer.
5th Interventional MRI Symposium.
Menard2004.pdf (266 KB)
(2004). 
Integrating Diagnostic and Interventional MRI for the Molecular Characterization of Prostate Cancer.
5th Interventional MRI Symposium.
Menard2004.pdf (266 KB)
(2004). 