Publications

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Fichtinger, G., Wu T., KW J., Yorke E., & O’Malley S. (1996).  Three Dimensional Image and Volume Fusion for Stereotactic Radiosurgery and Neurosurgery. Proceedings of Conference of American Association of Physicists in Medicine (AAPM), Medical Physics. 23, 1492.
Moult, E., Ungi T., Pinter C., Welch M., Lasso A., & Fichtinger G. (2013).  Temporal calibration of tracked ultrasound. ImNO2013 - Imaging Network Ontario Symposium. PDF icon Moult2013b.pdf (100.25 KB)PDF icon Moult2013b-poster.pdf (202.31 KB)
Coleman, J., Susil R., Krieger A., Choyke P., Wise B., Thomasson D., et al. (2004).  Technique and Accuracy of a Clinical System for Transrectal Intraprostatic Needle Placement in a Standard 1 5T MRI Scanner. American Urological Association. PDF icon Coleman2004.pdf (332.69 KB)
U-Thainual, P., Iordachita I., Vikal S., & Fichtinger G. (2009).  Teaching Aid for Computer-Assisted Surgery. Eastern Ontario Symposium for Educational Technology. PDF icon EOSET2009_The Perk Station abstract.pdf (303.71 KB)
Lasso, A., Avni S., & Fichtinger G. (2010).  Targeting Error Simulator for Image-guided Prostate Needle Placement. EMBC2010 - 32nd Annual International Conference of the IEEE Engineering in Medicine and Biology Society. 5424-5427.PDF icon Lasso2010b.pdf (723.33 KB)
Zhan, Y., Shen D., Zeng J., Sun L., Fichtinger G., Moul J., et al. (2007).  Targeted Prostate Biopsy Using Statistical Image Analysis. IEEE transactions on medical imaging. 26, 779–788.PDF icon Zhan2007.pdf (1.47 MB)
Wu, T., Der L., Harisiadis L., Fichtinger G., Yorke E., KW J., et al. (1995).  Target Point Verification of Frameless Fractionated Stereotactic Radiotherapy. Proceedings of Conference of American Association of Physicists in Medicine (AAPM). 22, 966.
Tadayyon, H., Lasso A., Kaushal A., Guion P., & Fichtinger G. (2011).  Target Motion Tracking in MRI-guided Transrectal Robotic Prostate Biopsy. IEEE Transactions on Biomedical Engineering. 58, 3135-42.PDF icon Tadayyon2011.pdf (729.61 KB)
Tadayyon, H., Lasso A., Gill S., Kaushal A., Guion P., & Fichtinger G. (2010).  Target Motion Compensation in MRI-guided Prostate Biopsy with Static Images. EMBC2010 - 32nd Annual International Conference of the IEEE Engineering in Medicine and Biology Society. 5416-5419.PDF icon Tadayyon2010b.pdf (563.06 KB)
Xu, H., Lasso A., Fedorov A., Tempany C. M., & Fichtinger G. (2014).  Target Localization in MRI-guided Transperineal Prostate Biopsy using Multi-Slice-to-Volume Registration. ImNO 2014. 44.
Ilina, A., Pinter C., Lasso A., Lai I., Joshi C., Alexander K., et al. (2018).  Target Definition with 3D Surface Scanning for Orthovoltage Radiation Therapy Planning. CARS. PDF icon Ilina2018b.pdf (153.33 KB)
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Masamune, K., Fichtinger G., Patriciu A., Susil R., Taylor R., Kavoussi L., et al. (2001).  System for robotically assisted percutaneous procedures with computed tomography guidance. Journal of Computer Aided Surgery. 6, 370–383.PDF icon Masamune2001.pdf (2.09 MB)
Ahmidi, N., U-Thainual P., Vikal S., Mousavi P., Iordachita I., & Fichtinger G. (2008).  A System for Performance Analysis of Surgeon Dexterity in Percutaneous Needle-based Interventions. 7th Imaging Symposium of the Imaging Network of Ontario.
MacNeil, K., Wang C., Holden M. S., Ungi T., Fichtinger G., & Hookey L. (2016).  System for objectively evaluating colonoscopy procedural skills using motion analysis. 14th Annual Imaging Network Ontario Symposium (ImNO).
DiMaio, S., Fischer G., Maker S. J., Hata N., Iordachita I., Tempany C. M., et al. (2006).  A System for MRI-guided Prostate Interventions. Procedings First IEEE/RAS-EMBS International Conference on Biomedical Robotics and Biomechatronics BioRob 2006. 68–73.PDF icon DiMaio2006a.pdf (918.65 KB)
Susil, R., Krieger A., Derbyshire A., Tanacs A., Whitcomb L. L., Fichtinger G., et al. (2003).  System for MR image-guided prostate interventions: canine study. Radiology. 228, 886–894.PDF icon Susil2003.pdf (821.59 KB)
Susil, R., Krieger A., Derbyshire A., Tanacs A., McVeigh E., Whitcomb L. L., et al. (2002).  A system for guidance and monitoring of transrectal prostate biopsy in a 1 5 T closed MR scanner. European Radiology. 12(9),
Susil, R., Krieger A., Derbyshire A., Tanacs A., McVeigh E., Whitcomb L. L., et al. (2002).  A System for Guidance and Monitoring of Transrectal Prostate Biopsy in a 1 5 T Closed MR Scanner. International Symposium of IVMRI.
Lasso, A., & Fichtinger G. (2011).  System design of adaptive image-guided percutaneous needle intervention software using open source components. ImNO2011 - Imaging Network Ontario Symposium. 45.PDF icon Lasso2011a.pdf (116.73 KB)
Kazanzides, P., DiMaio S., Cleary K., Fichtinger G., & Taylor R. (2006).  System Architecture and Toolkits for Image-Guided Intervention Systems. Medicine Meets Virtual Reality 14. PDF icon Kazanzides2006a.pdf (143.31 KB)PDF icon Kazanzides2006a2.pdf (116.52 KB)
Ahmidi, N., Hager G. D., Ishii L., Fichtinger G., Gallia G. L., & Ishii M. (2010).  Surgical Task and Skill Classification from Eye Tracking and Tool Motion in Minimally Invasive Surgery. Medical Image Computing and Computer-Assisted Intervention (MICCAI) 2010. 295-302.PDF icon Ahmidi2010a.pdf (229.65 KB)
Holden, M. S., Ungi T., Sargent D., McGraw R. C., & Fichtinger G. (2012).  Surgical Motion Characterization in Simulated Needle-Insertion Procedures. SPIE Medical Imaging 2012. 8316-31.PDF icon Holden2012a.pdf (173.03 KB)
Fichtinger, G., Stoianovici D., & Taylor R. (2001).  The surgical CAD/CAM paradigm and an implementation for robotically-assisted percutaneous local therapy. Procedings AIPR 2001 30th Applied Imagery Pattern Recognition Workshop. 3–8.PDF icon Fichtinger2001.pdf (910.42 KB)
Hager, G. D., Okamura A., Kazanzides P., Whitcomb L. L., Fichtinger G., & Taylor R. (2008).  Surgical and interventional robotics: part III [Tutorial]. IEEE Robotics & Automation Magazine. 15, 84–93.PDF icon Hager2008.pdf (2.12 MB)
Fichtinger, G., Kazanzides P., Okamura A., Hager G. D., Whitcomb L. L., & Taylor R. (2008).  Surgical and interventional robotics: Part II. IEEE Robotics & Automation Magazine. 15, 94–102.PDF icon Fichtinger2008.pdf (2.83 MB)

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