Publications

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Journal Article
Herz, C., Fillion-Robin J-C., Onken M., Riesmeier J., Lasso A., Pinter C., et al. (2017).  dcmqi: An Open Source Library for Standardized Communication of Quantitative Image Analysis Results Using DICOM. Cancer Research. 77, e87–e90.PDF icon Herz2017.pdf (459.73 KB)
Krieger, A., Csoma C., Iordachita I., Guion P., Singh A. K., Fichtinger G., et al. (2007).  Design and preliminary accuracy studies of an MRI-guided transrectal prostate intervention system. Medical image computing and computer-assisted intervention (MICCAI). 10, 59–67.PDF icon Krieger2007a.pdf (1.41 MB)
Krieger, A., Susil R., Menard C., Coleman J., Fichtinger G., Atalar E., et al. (2005).  Design of a novel MRI compatible manipulator for image guided prostate interventions. IEEE Transactions on Biomedical Engineering. 52, 306–313.
Kazanzides, P., Chang J., Iordachita I., Li J., Ling C., & Fichtinger G. (2006).  Design, validation of an image-guided robot for small animal research. Medical image computing and computer-assisted intervention (MICCAI). 9, 50–57.PDF icon Kazanzides2006.pdf (1.24 MB)
McGraw, R. C., Chaplin T., McKaigney C., Rang L., Jaeger M., Redfearn D., et al. (2016).  Development and evaluation of a simulation-based curriculum for ultrasound guided central venous catheterization. Canadian Journal of Emergency Medicine. 18, 405-413.
Krieger, A., Song S. Sang- Eun, Cho N. Bongjoon, Iordachita I., Guion P., Fichtinger G., et al. (2011).  Development and Evaluation of an Actuated MRI-Compatible Robotic System for MRI-Guided Prostate Intervention. IEEE/ASME Transactions on Mechatronics. PP.PDF icon Krieger2011b.pdf (1001.69 KB)
Clinkard, D., Holden M. S., Ungi T., Messenger D., Fichtinger G., & McGraw R. C. (2015).  The Development and Validation of Hand Motion Analysis to Evaluate Competency in Central Line Catheterization. Academic Emergency Medicine. 22, 212-218.
Kazanzides, P., Chang J., Iordachita I., Li J., Ling C., & Fichtinger G. (2007).  Development of an image-guided robot for small animal research. Journal of Computer Aided Surgery. 12, 357–365.PDF icon Kazanzides2007.pdf (816.37 KB)
DiMaio, S., Samset E., Fischer G., Iordachita I., Fichtinger G., Jolesz F., et al. (2007).  Dynamic MRI scan plane control for passive tracking of instruments and devices. Medical image computing and computer-assisted intervention (MICCAI). 10, 50–58.PDF icon DiMaio2007.pdf (3.16 MB)
Nguyen, A. V., Lasso A., Nam H. H., Faerber J., Aly A. H., Pouch A. M., et al. (2019).  Dynamic Three-Dimensional Geometry of the Tricuspid Valve Annulus in Hypoplastic Left Heart Syndrome with a Fontan Circulation. Journal of the American Society of Echocardiography.
Yeo, C. T., Ungi T., U-Thainual P., Lasso A., McGraw R. C., & Fichtinger G. (2011).  The Effect of Augmented Reality Training on Percutaneous Needle Placement in Spinal Facet Joint Injections. IEEE Transactions on Biomedical Engineering. 58, 2031-7.PDF icon Yeo2011.pdf (692.74 KB)
Lugez, E., Sadjadi H., Pichora D. R., Ellis R. E., Akl S. G., & Fichtinger G. (2014).  Electromagnetic tracking in surgical and interventional environments: usability study. Int J CARS. PDF icon art%3A10.1007%2Fs11548-014-1110-0.pdf (1.05 MB)
Fichtinger, G. (1988).  Evolving Standards in Computer Graphics. Hungarian Journal of Automation. 10, 30-36.
Yeo, C. T., Davison C., Ungi T., Holden M. S., Fichtinger G., & McGraw R. C. (2015).  Examination of learning trajectories for simulated lumbar puncture training using hand motion analysis. Academic Emergency Medicine. 22, 1187-1195.
Holden, M. S., Ungi T., Sargent D., McGraw R. C., Chen E. C. S., Ganapathy S., et al. (2014).  Feasibility of Real-Time Workflow Segmentation for Tracked Needle Interventions. IEEE Transactions on Biomedical Engineering. 61, 1720-1728.PDF icon Holden2014a-Manuscript.pdf (631.07 KB)
Tang, T., Ellis R., & Fichtinger G. (2000).  Fiducial registration from a single X-ray image: a new technique for fluoroscopy guidance and radiotherapy. Lecture Notes in Computer Science Medical Image Computing and Computer-Assisted Intervention (MICCAI). 1935, 27-41.PDF icon Tang2000.pdf (128.97 KB)
Jain, A. K., Mustufa T., Zhou Y., E. Burdette C., Chirikjian G., & Fichtinger G. (2005).  FTRAC. Journal of Medical Physics. 32, 3185–3198.PDF icon Jain2005a.pdf (737.95 KB)
Sadjadi, H., Hashtrudi-Zaad K., & Fichtinger G. (2013).  Fusion of Electromagnetic Trackers to Improve Needle Deflection Estimation: Simulation Study. IEEE Transactions on Biomedical Engineering. 60, 2706 - 2715.
Kaufmann, M., Vaysse P-M., Savage A., Amgheib A., Marton A., Manoli E., et al. (2022).  Harmonization of Rapid Evaporative Ionization Mass Spectrometry Workflows across Four Sites and Testing Using Reference Material and Local Food-Grade Meats. Metabolites.
Vaughan, T., Lasso A., Ungi T., & Fichtinger G. (2015).  Hole filling with oriented sticks in ultrasound volume reconstruction. J. Med. Imag.. 2, PDF icon Vaughan2015_Manuscript.pdf (3.91 MB)
Fichtinger, G., Deguet A., Fischer G., Iordachita I., Balogh E., Masamune K., et al. (2005).  Image overlay for CT-guided needle insertions. Journal of Computer Aided Surgery. 10, 241–255.PDF icon Fichtinger_JCAS2005.pdf (447.92 KB)
Fichtinger, G., Deguet A., Masamune K., Balogh E., Fischer G., Mathieu H., et al. (2005).  Image overlay guidance for needle insertion in CT scanner. IEEE transactions on biomedical engineering. 52, 1415–1424.PDF icon Fichtinger2005a.pdf (731.23 KB)
Masamune, K., Fichtinger G., Deguet A., Matsuka D., & Taylor R. (2002).  An Image Overlay System with Enhanced Reality for Percutaneous Therapy Performed Inside CT Scanner. Lecture Notes in Computer Science Medical Image Computing and Computer-Assisted Intervention (MICCAI). 2489, 77-84.PDF icon Masamune2002.pdf (200.13 KB)
Li, Y., E. Burdette C., Prince J. L., Fichtinger G., Lee J., Song D. Y., et al. (2014).  An image-guidance system for dynamic dose calculation in prostate brachytherapy using ultrasound and fluoroscopy. Medical Physics. 41(9), PDF icon Kuo_MedPhys2014.pdf (1.16 MB)
Viswanathan, A., Boctor E., Taylor R., Hager G. D., & Fichtinger G. (2004).  Immediate Ultrasound Calibration from Three Poses and Minimal Image Processing. Proceedings in Lecture Notes in Computer Science Medical Image Computing and Computer-Assisted Intervention (MICCAI). 3217, 446-454.PDF icon Viswanathan2004.pdf (526.25 KB)

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