References


[CAF10]    
A. Carpentier, D.H. Adams, and F. Filsoufi. Carpentier’s
Reconstructive Valve Surgery E-Book. Elsevier Health
Sciences, 2010.


[DLT+16]    
Alperen Degirmenci, Paul M.
Loschak, Cory M. Tschabrunn, Elad Anter, and Robert D.
Howe. Compensation for unconstrained catheter shaft motion
in cardiac catheters. In IEEE International Conference on
Robotics and Automation (ICRA), pages 4436 – 4442, 2016.


[dNVF16]    
P.J. del Nido, N.V. Vasilyev, and F. Freudenthal. Tissue
clip, 2016. US Patent 9,307,984.


[GAMO16]    
Simon Gilles, Fond Antoine, and Berger Marie-Odile. A
Simple and Effective Method to Detect Orthogonal Vanishing
Points in Uncalibrated Images of Man-Made Environments. In
Eurographics 2016, Lisbon, Portugal, 2016.


[HPHdN14]    
Peter E. Hammer, Christina A. Pacak, Robert D. Howe,
and Pedro J. del Nido. Straightening of curved pattern of
collagen fibers under load controls aortic valve shape. Journal
of Biomechanics, 47(2):341 – 346, 2014.


[L+13]    
C.H. Lee et al. A high-fidelity and micro-anatomically
accurate 3d finite element model for simulations of functional
mitral valve. In Functional Imaging and Modeling of the Heart,
volume 7945 of LNCS, pages 416–424. Springer, 2013.


[LAB+16]    
Paul M. Loschak, Degirmenci Alperen, Laura J. Brattain,
Cory M. Tschabrunn, Elad Anter, and Robert D. Howe.
Robotic control of ultrasound catheters for intra-cardiac
visualization. In Proceedings of the 9th Hamlyn Symposium
on Medical Robotics, 9th Hamlyn Symposium on Medical
Robotics, London, UK, 2016.


[MPFMO14]   
Loosvelt Matthieu, Villard Pierre-Frédéric, and Berger
Marie-Odile. Using a biomechanical model for tongue
tracking in ultrasound images. In ISBMS – 6th International
Symposium on Biomedical Simulation, Strasbourg, France,
2014.


[NSI+15]    
Haouchine Nazim, Cotin Stephane, Peterlik Igor, Dequidt
Jeremie, Sanz-Lopez Mario, Kerrien Erwan, and Berger
Marie-Odile. Impact of Soft Tissue Heterogeneity on
Augmented Reality for Liver Surgery. IEEE Transactions on
Visualization and Computer Graphics, 21(5):584 – 597, 2015.


[PHS09]    
V. Prot, R. Haaverstad, and B. Skallerud. Finite element
analysis of the mitral apparatus: annulus shape effect and
chordal force distribution. Biomechanics and Modeling in
Mechanobiology, 8(1):43–55, 2009.


[PMOF15]    
Rolin Pierre, Berger Marie-Odile, and Sur Frédéric.
Viewpoint simulation for camera pose estimation from an
unstructured scene model. In International Conference on
Robotics and Automation, Seattle, United States, 2015.


[PVPF16]    
Franck P. Vidal and Villard Pierre-Frédéric. Development
and Validation of Real-time Simulation of X-ray Imaging

with Respiratory Motion. Computerized Medical Imaging and
Graphics, 49:15, 2016.


[TJE+15]    
Milan Toma, Morten Ø Jensen, Daniel R. Einstein,
Ajit P. Yoganathan, Richard P. Cochran, and Karyn S.
Kunzelman. Fluid–structure interaction analysis of papillary
muscle forces using a comprehensive mitral valve model with
3d chordal structure. Annals of Biomedical Engineering, 2015.


[VHP+15]    

Pierre-Frédéric Villard, Peter E. Hammer, Douglas P. Perrin,
Pedro J. del Nido, and Robert D. Howe. Individual-based
mitral valve finite-element model. In Innovation, Design, and
Emerging Alliances in Surgery, Boston, United States, Mar
2015.


[WAH16]    
Qian Wan, Ryan P. Adams, and Robert D. Howe.
Variability and predictability in tactile sensing during
grasping. In IEEE International Conference on Robotics and
Automation, ICRA, pages 158–164, 2016.


[WS13]    
Qian Wang and Wei Sun. Finite element modeling
of mitral valve dynamic deformation using patient-specific
multi-slices computed tomography scans. Annals of
Biomedical Engineering, 41(1):142–153, 2013.

Comments are closed.