The Computer Aided Surgery and Medical Image Processing laboratory (CASMIP Lab), founded in 1996 by Prof. Leo Joskowicz, conducts groundbreaking interdisciplinary research to develop innovative computer-based methods for assisting clinicians in the diagnosis, planning, execution, and evaluation of medical and surgical procedures. We follow a synergistic methodology, which consists of developing the basic building blocks for computer-aided radiology and surgery while simultaneously developing solutions for specific clinical applications. The CASMIP Lab conducts basic and applied interdisciplinary research in close collaboration with leading hospitals, universities, and companies in Israel and abroad. It has an established record of industrial collaboration and technology transfer. The clinical areas of research include Diagnostic and Interventional Radiology, Medical Imaging, Neurosurgery, Neuroradiology, Orthopaedics, and Intensive Care, among others. The technical areas include Deep Learning, Machine Learning, Medical Image Analysis, Anatomy and Pathology Segmentation, Medical Robotics, Multimodal Registration, and Patient-Specific Medical Modeling.
Leo Joskowicz Lab
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Elsevier (2020)
J Xray Sci Technol. (2020)
World Scientific Press (2024)
World Scientific Press, ISBN 978-9-811-25383-6 (2022)
The MIT Press, ISBN 978-0-262-01389-5 (2010)
Handbook of Medical Image Computing and Computer Aided Interventions, K. Zhou, G. Fichtinger, S. Rueckert eds, Academic Press, pp 795-816 (2020)
Intelligent Orthopaedics, G. Zheng and W. Tan Eds, Springer Nature series in Advances in Experimental Medicine and Biology, pp 21-30 (2018)
Book chapter in: CComputer assisted orthopaedic surgery for hip and knee, Sugano N. (Eds), Springer, pp 199-206 (2018)
European Radiology (2023)
Int. J. Computer Assisted Radiology and Surgery (2023)
J. of Imaging (2023)
Medical Image Analysis (2023)
Medical Image Analysis (2021)
J. of Critical Care (2022)
Int. J. Computer Assisted Radiology and Surgery (2021)
IEEE Trans. Medical Imaging (2019)
Current Eye Research 44:7, 790-795 (2019)
Medical Image Analysis, Volume 57, Pages 165-175 (2019)
International Journal of Computer Assisted Radiology and Surgery, Volume 14, Issue 6, pp 1039–1047 (2019)
International Journal of Computer Assisted Radiology and Surgery, 14, 1577–1588 (2019)
arXiv preprint (2019)
International Journal of Computer Assisted Radiology and Surgery, January 2018, Volume 13, Issue 1, pp 165–174 (2018)
Fetal diagnosis and therapy, February 2018, Vol.43, No. 2, 113–122 (2018)
Medical Image Analysis, Volume 50, December 2018, Pages 54-64 (2018)
Intelligent Orthopaedics pp 21-30 (2018)
International Journal of Computer Assisted Radiology and Surgery February 2018, Volume 13, Issue 2, pp 215–228 (2018)
International Conference on Medical Image Computing and Computer-Assisted Intervention (2018)
Computer Assisted Orthopaedic Surgery for Hip and Knee pp 199-206 (2018)
European Radiology, March 2019, Volume 29, Issue 3, pp 1391–1399 (2018)
Medical & Biological Engineering & Computing, September 2018, Volume 56, Issue 9, pp 1699–1713 (2018)
Computer Methods in Biomechanics and Biomedical Engineering: Imaging & Visualization, Volume 6, 2018 - Issue 5 (2018)
International Journal of Computer Assisted Radiology and Surgery, Volume 12, Issue 3, pp 471–484 (2017)
Journal of Bone and Joint Surgery 99-A(8):e39(1-8) (2017)
International Journal of Computer Assisted Radiology and Surgery, Volume 12, Issue 11, pp 1945–1957 (2017)
EPMA Journal, Volume 8, Issue 1, pp 1–4 (2017)
IEEE Transactions on Medical Imaging, Volume: 36 , Issue: 12 (2017)
IEEE Trans. Medical Imaging 36(12):2449-2456 (2017)
IEEE Transactions on Medical Imaging, Volume 36 , Issue 2 (2017)
Journal of Bone and Joint Surgery, Volume 99 - Issue 2 - p 141-149 (2017)
International Journal of Computer Assisted Radiology and Surgery, Volume 11, Issue 3, pp 369–380 (2016)
Int J Ophthalmol ;9(1):119-123 (2016)
Knee Surgery, Sports Traumatology, Arthroscopy, Volume 24, Issue 11, pp 3482–3495 (2016)
Graefe's Archive for Clinical and Experimental Ophthalmology, Volume 254, Issue 5, pp 971–976 (2016)
International Journal of Computer Assisted Radiology and Surgery, Volume 10, Issue 9, pp 1505–1514 (2015)
International Journal of Computer Assisted Radiology and Surgery, Volume 10, Issue 10, pp 1535–1546 (2015)
Pediatric Blood & Cancer, Volume 62, Issue 8, Pages 1353-1359 (2015)
International Journal of Computer Assisted Radiology and Surgery, Volume 10, Issue 7, pp 1127–1140 (2015)
Acta Neurochirurgica, Volume 157, Issue 5, pp 855–861 (2015)
The Knee Volume 21, Issue 6, Pages 1069-1071 (2014)
MR assisted Vascular and Volumetric Imaging (MAVVI) for objective findings in schizophrenia
Journal of molecular neuroscience, Vol.53, p.S119 (2014)
International Journal of Computer Assisted Radiology and Surgery, Volume 9, Issue 4, pp 683–693 (2014)
Journal of Magnetic Resonance Imaging, Volume 39, Issue 5, Pages 1246-1253 (2014)
Medical Physics, Volume 41, Issue 5, 052303 (2014)
Medical Physics, Volume 41, Issue 11, 113502 (2014)
Computer-Aided Design, Volume 45, Issue 2, Pages 556-561 (2013)
Medical Image Analysis, Volume 16, Issue 1, Pages 177-188 (2012)
Journal Computer Methods in Biomechanics and Biomedical Engineering, Volume 17, Issue 3, Pages 204-209 (2012)
International Journal of Computer Assisted Radiology and Surgery, Volume 7, Issue 5, pp 799–812 (2012)
IEEE Transactions on Medical Imaging, Volume: 31 , Issue: 3, Pages: 725 - 737 (2012)
Insights into Volumetric and Sub Segmentation Long-term Analysis of Treated OPG Patients Receiving Chemotherapy
Neuro-Oncology 14:71-73 (2012)
Medical & Biological Engineering & Computing, Volume 50, Issue 8, pp 877–884 (2012)
Stereotactic and Functional Neurosurgery 90(5):325-335 (2012)
Orthopaedic Proceedings, 94-B:SUPP_XLIV, 37-37 (2012)
International Journal of Computational Geometry & Applications, Vol. 22, No. 06, pp. 517-541 (2012)
Medical Physics, Volume 39, Issue 5, Pages 2885-2895 (2012)
Medical Image Analysis, Volume 15, Issue 1, Pages 125-132 (2011)
International Journal of Computer Assisted Radiology and Surgery, Volume 6, Issue 5, pp 685–692 (2011)
Current Orthopaedic Practice, Volume 22, Issue 1, p 109–115 (2011)
Medical Image Analysis, Volume 15, Issue 4, Pages 477-488 (2011)
IEEE Transactions on Biomedical Engineering, Volume: 58 , Issue: 9, Pages: 2574 - 2581 (2011)
Medical Image Analysis, Volume 15, Issue 1, Pages 85-95 (2011)
International Journal of Computer Assisted Radiology and Surgery, Volume 6, Issue 2, pp 247–255 (2011)
Child's Nervous System, Volume 27, Issue 8, pp 1265–1272 (2011)
Operative Neurosurgery, Volume 68, Issue suppl_1, Pages ons95–ons102 (2011)
Journal of Orthopaedic Trauma. 24(7):452-456 (2010)
International Journal of Computer Assisted Radiology and Surgery, Volume 5, Issue 5, pp 449–454 (2010)
Precision Engineering, Volume 34, Issue 1, Pages 2-6 (2010)
Journal of Biomechanics, Volume 43, Issue 14, Pages 2684-2688 (2010)
International Journal of Computer Assisted Radiology and Surgery, 4:45 (2009)
Journal of Neurosurgery, Volume 111, Issue 6, Pages 1201-1206 (2009)
International Journal of Computer Assisted Radiology and Surgery, 3:439 (2008)
Navigated total knee replacement – a comprehensive clinical state of the art study
Orthopaedic Proceedings, 90-B:SUPP_III, 514-515 (2008)
International Journal of Computer Assisted Radiology and Surgery, 3:493 (2008)
Advances in image-guided targeting for keyhole neurosurgery: a survey paper
Touch Briefings Reports, Future Directions in Surgery 2006, vol II (2007)
Computer Aided Surgery, Volume 12, Issue 2, Pages 125-130 (2007)
Computer Aided Surgery, Volume 12, Issue 2, Pages 105-115 (2007)
Journal of Biomechanical Engineering, Volume 129, Issue 3, Pages 297-309 (2006)
Computer Aided Surgery, Volume 11, Issue 4, Pages 181-193 (2006)
The International Journal of Robotics Research, Volume 25, issue 2, pages 147-170 (2006)
IEEE Transactions on Medical Imaging, Volume 24 , Issue 5, Pages 624 - 635 (2005)
Computer-Aided Design, Volume 37, Issue 5, Pages 531-544 (2005)
IEEE Transactions on Medical Imaging, Volume 23, Issue 1, Pages 26 - 35 (2004)
IEEE Transactions on Robotics and Automation, Volume 19, Issue 5, Pages 893 - 901 (2003)
Techniques in Orthopaedics, Volume 18, Issue 2, p 191-200 (2003)
IEEE Transactions on Medical Imaging, Volume 22, Issue 11, Pages 1395 - 1406 (2003)
Computer-Aided Design, Volume 35, Issue 3, Pages 279-291 (2003)
Computer Aided Surgery, Volume 7, Issue 4, Pages 223-236 (2002)
Computer Aided Surgery, Volume 7, Issue 6, Pages 332-341 (2002)
Computing in Science & Engineering, Volume 3 , Issue 5, Pages 65 - 72 (2001)
The International Journal of Robotics Research, Volume 19, issue 9, pages 817-834 (2000)
IEEE Fellow
ASME Fellow
MICCAI Fellow
President of the MICCAI Society -- Medical Image Processing and Computer Aided Interventions
Lab Website: Link
See Publications in Google Scholar: Link
Short Biography
Leo Joskowicz is a Professor at the School of Computer Science and Engineering at the Hebrew University of Jerusalem, Israel since 1995. He is the founder and director of the Computer-Aided Surgery and Medical Image Processing Laboratory (CASMIP Lab). Prof. Joskowicz is a Fellow of the IEEE (Institute of Electrical and Electronics Engineers), ASME (Association of Mechanical Engineers), and MICCAI (Medical Image Processing and Computer Aided Intervention) Societies. He is the past President of the MICCAI Society, was the Secretary General of CAOS International (International Society of Computer Aided Orthopaedic Surgery) and ISCAS (International Society for Computer Assisted Surgery). He is the recipient of the 2010 Maurice E. Muller Award for Excellence in Computer Assisted Surgery by CAOS International and the 2007 Kaye Innovation Award. He has published two books and over 300 technical works including books, book chapters, conference and journal papers and editorials and has 15 issued patents. He is on the Editorial Boards of several journals, including Medical Image Analysis, Int. J. of Computer Aided Surgery, and Computer Aided Surgery and has served on numerous related program committees.
Leo Joskowicz
Professor
The Computer Aided Surgery and Medical Image Processing laboratory (CASMIP Lab), founded in 1996 by Prof. Leo Joskowicz, conducts groundbreaking interdisciplinary research to develop innovative computer-based methods for assisting clinicians in the diagnosis, planning, execution, and evaluation of medical and surgical procedures. We follow a synergistic methodology, which consists of developing the basic building blocks for computer-aided radiology and surgery while simultaneously developing solutions for specific clinical applications. The CASMIP Lab conducts basic and applied interdisciplinary research in close collaboration with leading hospitals, universities, and companies in Israel and abroad. It has an established record of industrial collaboration and technology transfer. The clinical areas of research include Diagnostic and Interventional Radiology, Medical Imaging, Neurosurgery, Neuroradiology, Orthopaedics, and Intensive Care, among others. The technical areas include Deep Learning, Machine Learning, Medical Image Analysis, Anatomy and Pathology Segmentation, Medical Robotics, Multimodal Registration, and Patient-Specific Medical Modeling.
For more information on the CASMIP Lab, see
https://www.cs.huji.ac.il/~josko/casmip-lab/
Commun Biol. (2020)
J Neurochem (2020)
PLoS Biology (2020)
PLoS Biology (2020)
Journal of Neuroscience, JN-RM-1470-21 (2021)
Neuron, ISSN 0896-6273 (2021)
bioRxiv preprint first posted online May. 31, 2019 (2019)
bioRxiv preprint first posted online Apr. 18, 2019; (2019)
Cell reports 23 (4), 1034-1044 (2018)
Cell, Volume 174, Issue 1, 28 June 2018, Pages 59-71 (2018)
Scientific Reports, volume 8, Article number: 4311 (2018)
Molecular autism 9 (1), 57 (2018)
Cytotherapy 20 (5), S23 (2018)
US Patent App. 15/755,138 (2018)
Behavioural Brain Research Volume 331, Pages 254-260 (2017)
Nature Neuroscience, VOLUME 20 | NUMBER 7 | JULY 2017 (2017)
Scientific Reports volume 6, Article number: 29080 (2016)
Frontiers in Behavioral Neuroscience, 10:236 (2016)
Nat Neurosci. 2002 Apr;5(4):332-40. (2002)
J Comput Neurosci. 2000 Sep-Oct;9(2):133-48. (2000)
Science. 2000 Oct 27;290(5492):744-50 (2000)
Journal of Neuroscience 1 October 1999, 19 (19) 8219-8233 (1999)
Michael London
Associate Professor
The Suzanne and Charles Goodman Brain Sciences Building,
Level 1, Room 2103, Edmond J. Safra Campus,
The Hebrew University of Jerusalem, 9190401