bibTotaleMo.bib

@inproceedings{ANXIONNAT:2002:INRIA-00100904:1,
  author = {Anxionnat, Ren{\'e} and Marchal, C. and Cordebar, A. and Buchheit,
	I. and Kerrien, Erwan and Trousset, E. and Berger, Marie-Odile and
	Bey, Pierre and Aletti, Pierre and Bracard, Serge and Coulbois,
	S. and Auque, J. and Picard, Luc},
  title = {Radiosurgery of complex shaped brain arteriovenous malformations
	using multileaf collimator. Interest of 3D X-ray angiography and
	fusion with MRI for the delineation of the target},
  booktitle = {Symposium Neuroradiologicum, 2002},
  year = {2002},
  volume = {29},
  number = {1},
  pages = {1S83},
  address = {Paris, France},
  editor = {Journal of neuroradiology},
  url = {http://hal.inria.fr/inria-00100904/en/}
}
@inproceedings{BERGER:2004:INRIA-00099969:1,
  author = {Berger, Marie-Odile and Anxionnat, Ren{\'e} and Kerrien, Erwan},
  title = {A Methodology for Validating a New Imaging Modality with Respect
	to a Gold Standard Imagery: Example of the Use of 3DRA and MRI for
	AVM Delineation},
  booktitle = {Medical Image Computing and Computer-Assisted Intervention - MICCAI
	2004, 2004},
  year = {2004},
  volume = {3216},
  series = {Lecture Notes in Computer Science},
  pages = {516-524},
  address = {Saint Malo, France},
  publisher = {Springer-Verlag},
  url = {http://www.loria.fr/~berger/PublisAvant2004/bergerMICCAI2004.pdf}
}
@inproceedings{BERGER:2004:INRIA-00107783:1,
  author = {{B}erger, {M}arie-{O}dile and {A}nxionnat, {R}en{\'e} and {K}errien,
	{E}rwan},
  title = {{T}he {U}se of 3{D} {X}ray angiographic {I}mages for {V}olume {D}etermination
	of {C}erebral {A}rteriovenous {M}alformations},
  booktitle = {{SPIE} {M}edical {I}maging 2004 },
  year = {2004},
  pages = {634-643 },
  address = {{S}an {D}iego },
  abstract = {{T}he radiotherapic treatment of cerebral arterious malformations
	({AVM}) requires an accurate estimation of the {AVM} shape. {T}his
	estimation is classically obtained from the delineation of the {AVM}
	in several 2{D} angiographic views. {I}n this paper, a clinical study
	of the inter-observer variability in the {AVM} detection is first
	performed. {I}t proves that the estimated volume varies a lot between
	observers. {F}or these reasons, we propose a framework for {AVM}
	delineation which makes use of 2{D} and 3{D} angiographic images:
	the initial estimate obtained with 2{D} angiographic images is then
	refined within the 3{D} volume using deformable models. {R}esults
	are presented demonstrating shape delineation on various {AVM}s.},
  affiliation = {{ISA} - {INRIA} {L}orraine - {LORIA} - {INRIA} - {CNRS} : {UMR}7503
	- {U}niversit{\'e} {H}enri {P}oincar{\'e} - {N}ancy {I} - {U}niversit{\'e}
	{N}ancy {II} - {I}nstitut {N}ational {P}olytechnique de {L}orraine
	},
  keywords = {medical imaging; reconstruction; statistical model || imagerie medicale;
	reconstruction; modele statistique},
  url = {http://www.loria.fr/~berger/PublisAvant2004/spieBerger2004.pdf}
}
@patent{GORGES:2004:INRIA-00000392:1,
  number = {0453054},
  year = {2004},
  author = {Gorges, S{\'e}bastien and Trousset, Yves and Pescatore, J{\'e}r{\'e}mie
	and Kerrien, Erwan and Berger, Marie-Odile and Vaillant, R{\'e}gis},
  title = {Proc{\'e}d{\'e} pour d{\'e}terminer une g{\'e}om{\'e}trie d'acquisition
	d'un syst{\`e}me m{\'e}dical},
  address = {France},
  url = {http://hal.inria.fr/inria-00000392/en/}
}
@inproceedings{KERRIEN:1999:INRIA-00098777:1,
  author = {Kerrien, Erwan and Berger, Marie-Odile and Maurincomme, Eric and
	Launay, Laurent and Vaillant, R{\'e}gis and Picard, Luc},
  title = {Recalage automatique d'images d'angiographie},
  booktitle = {Journees ORASIS'99, 1999},
  year = {1999},
  pages = {9 p},
  address = {Aussois, France},
  url = {http://hal.inria.fr/inria-00098777/en/}
}
@inproceedings{KERRIEN:1999:INRIA-00108049:1,
  author = {Kerrien, Erwan and Berger, Marie-Odile and Maurincomme, Eric and
	Launay, Laurent and Vaillant, R{\'e}gis and Picard, Luc},
  title = {Fully automatic 3D/2D subtracted angiography registration},
  booktitle = {International Conference for Medical Image Computing \& Computer
	Assisted Intervention - MICCAI'99, 1999},
  year = {1999},
  volume = {1679},
  series = {Lecture Notes in Computer Science},
  pages = {664--671},
  address = {Cambridge, England},
  url = {http:www.loria.fr/~berger/PublisAvant2004/kerrienMICCAI99.pdf}
}
@inproceedings{kerrien97a,
  author = {Kerrien, Erwan and Berger, Marie-Odile and Vaillant, R{\'e}gis},
  title = {{Etude de la pr{\'e}cision de la machine pour le recalage 2D/3D d'images
	d'angiographie soustraite}},
  booktitle = {{Seminaires Orasis, La Colle sur Loup, France}},
  year = {1997},
  pages = {39-48},
  month = oct,
  category = {6},
  crinnumber = {97-R-290},
  equipe = {ISA},
  url = {http://www.loria.fr/publications/1997/97-R-290/97-R-290.ps}
}
@inproceedings{KERRIEN:1998:INRIA-00098697:1,
  author = {Kerrien, Erwan and Vaillant, R{\'e}gis and Launay, Laurent and Berger,
	Marie-Odile and Maurincomme, Eric},
  title = {Machine precision assessment for 3D/2D digital subtracted angiography
	images registration},
  booktitle = {SPIE Medical Imaging'98, 1998},
  year = {1998},
  pages = {11 p},
  address = {San Diego, USA},
  pdf = {http://www.loria.fr/~berger/PublisAvant2004/kerrienSPIE98.pdf}
}
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@incollection{anxionnat:hal-00865726,
  author = {Anxionnat, Ren{\'e} and Berger, Marie-Odile and Kerrien, Erwan},
  title = {{Time to Go Augmented in Vascular Interventional Neuroradiology?}},
  booktitle = {{Augmented Environments for Computer-Assisted Interventions}},
  publisher = {Springer},
  year = {2013},
  editor = {Cristian A. Linte Elvis C.S. Chen Marie-Odile Berger John T. Moore
	David R. Holmes III (Eds.) },
  volume = {7815},
  series = {Lecture Notes in Computer Sciences },
  pages = {3-8},
  abstract = {{This editorial paper reports on our experience in introducing augmented
	reality (AR) in interventional neuroradiology environments. Our expectations
	about the next AR tools, in particular for more advanced visualization,
	are also put forward. For practical reasons, the references will
	be restricted to our contributions. For further information, the
	last recommendations concerning the medical management of aneurysm
	induced hemorrhages can be found in [connolly12]}},
  affiliation = {D{\'e}partement de neuroradiologie diagnostique et th{\'e}rapeutique
	[Nancy] , MAGRIT - INRIA Nancy - Grand Est / LORIA},
  audience = {internationale },
  doi = {10.1007/978-3-642-38085-3\_2 },
  file = {edito.pdf:http\://hal.inria.fr/hal-00865726/PDF/edito.pdf:PDF},
  hal_id = {hal-00865726},
  url = {http://hal.inria.fr/hal-00865726}
}
@misc{anxionnat:inria-00432289,
  author = {Anxionnat, Ren{\'e} and Rocca, Federico and Bracard, Serge and Dequidt,
	J{\'e}r{\'e}mie and Kerrien, Erwan and Duriez, Christian and Berger,
	Marie-Odile and Cotin, St{\'e}phane},
  title = {{Evaluation of a computer-based simulation for the endovascular treatment
	of intracranial aneurysms}},
  howpublished = {{10th congress of the World Federation of Interventional and Therapeutic
	Neuroradiology - WFITN 2009}},
  month = jun,
  year = {2009},
  abstract = {{Purpose: Endovascular treatment (EVT) of intracranial aneurysms requires
	highly trained physicians and careful pre-therapeutic evaluation
	of the aneurysm morphology. A realistic interventional neuroradiology
	simulator would provide procedural and skill training for either
	educational purpose or pre-therapeutic simulation in complex cases.
	This work aims at evaluating the clinical realism of a computer-based
	simulator for the EVT of aneurysms. Material and Methods: A prototype
	computer-based EVT simulation system was developed and implemented.
	A silicon vascular phantom (Elastrat, Geneva, Switzerland) as well
	as two patient data sets were used for the evaluation. A coil adapted
	to the aneurysm was deployed under fluoroscopy. Then, a simulation
	was done with the same, as well as larger and smaller coils under
	the same viewing incidence and was visually assessed and compared
	to fluoroscopic images. The maximum of coil pressure onto the aneurysm
	sac was recorded during all simulations. Results: In all cases, simulation
	with the correct coil showed a realistic coil behaviour and aneurysm
	filling. As expected, full and stable coiling of the aneurysm was
	impossible to simulate with too small coils. Protrusions outside
	the sac were observed with too large coils. In this latter case,
	the pressure onto the aneurysm wall dramatically increased as compared
	with the correct coil. Conclusion: A preliminary evaluation of a
	computer-based EVT simulation system was made on both phantom and
	patient data. Our report emphasizes the clinical realism of the simulated
	deployment of coils, in particular with regard to potential hazards
	related to an inadequate choice of coil.}},
  address = {Montr{\'e}al, Canada},
  affiliation = {MAGRIT - INRIA Lorraine - LORIA , D{\'e}partement de neuroradiologie
	diagnostique et th{\'e}rapeutique [Nancy] , SHACRA - INRIA Lille
	- Nord Europe / INRIA Nancy - Grand Est / LIFL},
  audience = {internationale },
  file = {WFITN\\_poster.pdf:http\://hal.inria.fr/inria-00432289/PDF/WFITN\\_poster.pdf:PDF},
  hal_id = {inria-00432289},
  type = {Poster},
  url = {http://hal.inria.fr/inria-00432289}
}
@inproceedings{ANXIONNAT:2005:INRIA-00000499:1,
  author = {{A}nxionnat, {R}en{\'e} and {K}errien, {E}rwan and {B}erger, {M}arie-{O}dile
	and {B}racard, {S}erge and {P}icard, {L}uc},
  title = {{R}adiosurgical planning of brain arteriovenous malformations ({AVMS}):
	{A} user interface for the delineation of 3{D} target from 2{D} angiographic
	projections},
  booktitle = {{XXX} {C}ongress of the {E}uropean {S}ociety of {N}euroradiology
	{N}euroradiology },
  year = {2005},
  volume = {47 (suppl. 1) },
  pages = {{S}143 },
  address = {{B}arcelona {S}pain },
  month = {09},
  abstract = {{A} precise delination of the target is a critical part of radiosurgical
	treatment planning of brain {AVM}s. {T}his target delineation is
	performed by drawing the contours of the nidus, the active part of
	the {AVM}, on calibrated (using a stereotactic frame) digital subtraction
	angiography ({DSA}) projections assuming that {DSA} remains the imaging
	gold standard. {T}his manual delineation is a difficult and time
	consuming task. {I}nconsistency between the delineations performed
	in the different views, usually {AP} and lateral, may led to a wrong
	target and so on to a poor anatomical result. {T}he aims of this
	study are 1) to describe an original and helpful user interface to
	delineate a 3{D} target by drawing its contours on multiple 2{D}
	projections from {DSA}; 2) to validate the interest of this interface.},
  affiliation = {{D}{\'e}partement de neuroradiologie diagnostique et th{\'e}rapeutique
	- {CHU} {N}ancy - {U}niversit{\'e} {H}enri {P}oincar{\'e} - {N}ancy
	{I} - {MAGRIT} - {INRIA} {L}orraine - {LORIA} - {CNRS} : {UMR}7503
	- {INRIA} - {U}niversit{\'e} {H}enri {P}oincar{\'e} - {N}ancy {I}
	- {U}niversit{\'e} {N}ancy {II} - {I}nstitut {N}ational {P}olytechnique
	de {L}orraine },
  keywords = {medical imaging, interventional neuroradiology, arterio-venous malformations,
	radiosurgery, lesion contouring, user interface},
  url = {http://hal.inria.fr/inria-00000499/en/}
}
@article{berger:inria-00321688,
  author = {Berger, Marie-Odile and Anxionnat, Ren{\'e} and Kerrien, Erwan and
	Picard, Luc and S{\"o}derman, Michael},
  title = {{A methodology for validating a 3D imaging modality for brain AVM
	delineation: Application to 3DRA.}},
  journal = {Computerized Medical Imaging and Graphics},
  year = {2008},
  volume = {32},
  pages = {544-553},
  number = {7 },
  abstract = {{A general methodology is described to validate a 3D imaging modality
	with respect to 2D digital subtracted angiography (DSA) for brain
	AVMs (BAVM) delineation. It relies on the assessment of the statistical
	compatibility of the radiosurgical target delineated in 3D with its
	delineations in 2D. This methodology is demonstrated through a preliminary
	evaluation of rotational 3D angiography (3DRA). Generally speaking,
	BAVM delineation cannot be performed on 3DRA alone. However, in our
	study, 3DRA showed similar performances to DSA for rather easy cases,
	and even better for 3 patients. Conversely, 3 problematic cases are
	identified and discussed.}},
  affiliation = {MAGRIT - INRIA Lorraine - LORIA , D{\'e}partement de neuroradiologie
	diagnostique et th{\'e}rapeutique [Nancy] , UHP , Karolinska Institutet},
  audience = {internationale },
  doi = {10.1016/j.compmedimag.2008.06.003 },
  file = {CMIG08\\_berger\\_etal.pdf:http\://hal.inria.fr/inria-00321688/PDF/CMIG08\\_berger\\_etal.pdf:PDF},
  hal_id = {inria-00321688},
  keywords = {Angiography ; Brain Arteriovenous Malformation ; Radiosurgery ; Validation
	; Principal Component Analysis},
  publisher = {Robert S. Ledley},
  url = {http://hal.inria.fr/inria-00321688}
}
@inproceedings{GORGES:2005:INRIA-00000390:1,
  author = {Gorges, S{\'e}bastien and Kerrien, Erwan and Berger, Marie-Odile
	and Trousset, Yves and Pescatore, J{\'e}r{\'e}mie},
  title = {An effective technique for calibrating the intrinsic parameters of
	a vascular C-arm from a planar target},
  booktitle = {SPIE International Symposium Medical Imaging 2006, 07/02/2006},
  year = {2006},
  address = {San Diego, USA},
  url = {http://hal.inria.fr/inria-00000390/en/}
}
@patent{gorges:inria-00336786,
  number = {EP1986159 },
  year = {2008},
  author = {Gorges, S{\'e}bastien and Trousset, Yves and Pescatore, J{\'e}r{\'e}mie
	and Bismuth, Vincent and Berger, Marie-Odile and Kerrien, Erwan},
  title = {{System and method to improve visibility of an object in an imaged
	subject}},
  address = {Europe},
  month = oct,
  note = {Extension to Europe of US patent US20070740734 published on 2007-04-26
	},
  url = {http://hal.inria.fr/inria-00336786},
  affiliation = {General Electric Medical Systems [Buc] - GE Healthcare , MAGRIT -
	INRIA Lorraine - LORIA},
  hal_id = {inria-00336786},
  howpublished = {patent no. EP1986159 }
}
@patent{GORGES:2005:INRIA-00000388:1,
  number = {0501588},
  year = {2005},
  author = {Gorges, S{\'e}bastien and Trousset, Yves and Pescatore, J{\'e}r{\'e}mie
	and Kerrien, Erwan and Berger, Marie-Odile},
  title = {Proc{\'e}d{\'e} de d{\'e}termination des param{\`e}tres g{\'e}om{\`e}trique
	d'un dispositif par rayon X},
  address = {France},
  url = {http://hal.inria.fr/inria-00000388/en/}
}
@inproceedings{GORGES:2006:INRIA-00000390:1,
  author = {{G}orges, {S}{\'e}bastien and {K}errien, {E}rwan and {B}erger, {M}arie-{O}dile
	and {T}rousset, {Y}ves and {P}escatore, {J}{\'e}r{\'e}mie},
  title = {{A}n effective technique for calibrating the intrinsic parameters
	of a vascular {C}-arm from a planar target},
  booktitle = {{SPIE} {I}nternational {S}ymposium {M}edical {I}maging 2006},
  year = {2006},
  pages = {6141-69 },
  address = {{S}an {D}iego {U}nited {S}tates },
  month = {02},
  abstract = {{T}he real time recovery of the projection geometry is a fundamental
	issue in interventionnal navigation applications (e.g. guide wire
	reconstruction, medical augmented reality). {I}n most works, the
	intrinsic parameters are supposed to be constant and the extrinsic
	parameters ({C}-arm motion) are deduced either from the orientation
	sensors of the {C}-arm or from additional sensors. {H}owever, due
	to the weight of the {X}-ray tube and the {C}-arm, the system is
	undergoing deformations which induces variations of the intrinsic
	parameters as a function of the {C}-arm orientations. {I}n our approach,
	we proposed to measure the effects of the mechanical deformations
	onto the intrinsic parameters in a calibration procedure. {R}obust
	calibration methods exist (the gold standard is the \emph{the multi-image
	calibration}) but they are time consuming and too tedious to set
	up in a clinicalcontext. {F}or these reasons, we developed an original
	and easy to use method, based on a planar calibration target, which
	aims at measuring with a high level of accuracy the variation of
	the intrinsic parameters on a vascular {C}-arm. {T}he precision of
	the planar based method was evaluated with error propagation method
	and its appeared that the precision of intrinsic parameters are very
	good compared to the gold standard method. {T}he method was also
	successfully used to assess to behavior of the {C}-arm with respect
	to the {C}-arm orientations. {R}esults showed a clear variation of
	the principal point when the {LAO}/{RAO} orientation was changed.
	{I}n contrast, the intrinsic parameters do not change during a cranio-caudal
	{C}-arm motion.},
  affiliation = {{GE} {H}ealthcare - {B}uc - {MAGRIT} - {INRIA} {L}orraine - {LORIA}
	- {CNRS} : {UMR}7503 - {INRIA} - {U}niversit{\'e} {H}enri {P}oincar{\'e}
	- {N}ancy {I} - {U}niversit{\'e} {N}ancy {II} - {I}nstitut {N}ational
	{P}olytechnique de {L}orraine },
  day = {07},
  keywords = {{N}euroradiology ; {R}egistration ; {C}alibration ; {C}omputer {V}ision},
  url = {http://hal.inria.fr/inria-00000390/en/}
}
@inproceedings{GORGES:2005:INRIA-00000386:1,
  author = {{G}orges, {S}{\'e}bastien and {K}errien, {E}rwan and {B}erger, {M}arie-{O}dile
	and {T}rousset, {Y}ves and {P}escatore, {J}{\'e}r{\'e}mie and {A}nxionnat,
	{R}en{\'e} and {P}icard, {L}uc},
  title = {{M}odel of a {V}ascular {C}-{A}rm for 3{D} {A}ugmented {F}luoroscopy
	in {I}nterventional {R}adiology},
  booktitle = {{M}edical {I}mage {C}omputing and {C}omputer-{A}ssisted {I}ntervention
	{MICCAI} 2005: 8th {I}nternational {C}onference, {P}alm {S}prings,
	{CA}, {USA}, {O}ctober 26-29.},
  year = {2005},
  volume = {3750 },
  series = {{L}ecture {N}otes in {C}omputer {S}cience },
  pages = {214-222 },
  address = {{P}alm {S}prings {U}nited {S}tates },
  month = {10},
  publisher = {{S}pringer },
  abstract = {{T}his paper deals with the modeling of a vascular {C}-arm to generate
	3{D} augmented fuoroscopic images in an interventional radiology
	context. {A} methodology based on the use of a multi-image calibration
	is proposed to assess the physical behavior of the {C}-arm. {F}rom
	the knowledge of the main characteristics of the {C}-arm, realistic
	models of the acquisition geometry are proposed. {T}heir accuracy
	was evaluated and experiments showed that the {C}-arm geometry can
	be predicted with a mean 2{D} reprojection error of 0.5 mm. {T}he
	interest of 3{D} augmented uoroscopy is also assessed on a clinical
	case.},
  affiliation = {{GE} {H}ealthcare - {B}uc, {F}rance - {MAGRIT} - {INRIA} {L}orraine
	- {LORIA} - {CNRS} : {UMR}7503 - {INRIA} - {U}niversit{\'e} {H}enri
	{P}oincar{\'e} - {N}ancy {I} - {U}niversit{\'e} {N}ancy {II} - {I}nstitut
	{N}ational {P}olytechnique de {L}orraine - {D}{\'e}partement de neuroradiologie
	diagnostique et th{\'e}rapeutique - {CHU} {N}ancy - {U}niversit{\'e}
	{H}enri {P}oincar{\'e} - {N}ancy {I} },
  doi = {10.1007/11566489_27},
  url = {http://hal.inria.fr/inria-00000386/en/}
}
@inproceedings{GORGES:2005:INRIA-00000387:1,
  author = {{G}orges, {S}{\'e}bastien and {K}errien, {E}rwan and {B}erger, {M}arie-{O}dile
	and {T}rousset, {Y}ves and {P}escatore, {J}{\'e}r{\'e}mie and {A}nxionnat,
	{R}en{\'e} and {P}icard, {L}uc},
  title = {{C}alibration of the intrinsic parameters of a vascular c-arm for
	3{D} enhanced fluoroscopy},
  booktitle = {19th {I}nternational {C}ongress and {E}xhibition {C}omputer {A}ssisted
	{R}adiology and {S}urgery - {CARS}'05 -},
  year = {2005},
  pages = {1307 },
  address = {{B}erlin {G}ermany },
  month = {06},
  publisher = {{E}lsevier },
  affiliation = {{GE} {H}ealthcare - {B}uc - {MAGRIT} - {INRIA} {L}orraine - {LORIA}
	- {CNRS} : {UMR}7503 - {INRIA} - {U}niversit{\'e} {H}enri {P}oincar{\'e}
	- {N}ancy {I} - {U}niversit{\'e} {N}ancy {II} - {I}nstitut {N}ational
	{P}olytechnique de {L}orraine - {D}{\'e}partement de neuroradiologie
	diagnostique et th{\'e}rapeutique - {CHU} {N}ancy - {U}niversit{\'e}
	{H}enri {P}oincar{\'e} - {N}ancy {I} },
  keywords = {{N}euroradiology � {R}egistration � {C}alibration � {C}omputer {V}ision},
  url = {http://hal.inria.fr/inria-00000387/en/}
}
@inproceedings{GORGES:2006:INRIA-00110850:1,
  author = {{G}orges, {S}{\'e}bastien and {K}errien, {E}rwan and {B}erger, {M}arie-{O}dile
	and {T}rousset, {Y}ves and {P}escatore, {J}{\'e}r{\'e}mie and {A}nxionnat,
	{R}en{\'e} and {P}icard, {L}uc and {B}racard, {S}erge},
  title = {3{D} {A}ugmented {F}luoroscopy in {I}nterventional {N}euroradiology:
	{P}recision {A}ssessment and {F}irst {E}valuation on {C}linical {C}ases},
  booktitle = {{W}orkshop on {A}ugmented environments for {M}edical {I}maging and
	{C}omputer-aided {S}urgery - {AMI}-{ARCS} 2006 (held in conjunction
	with {MICCAI}'06) },
  year = {2006},
  address = {{C}openhagen {D}enmark },
  month = {11},
  organization = {{W}olfgang {B}irkfellner, {N}assir {N}avab and {S}tephane {N}icolau
	},
  abstract = {{T}o improve the tool (guide wire and catheter) guidance in interventional
	radiology, a new approach is to project 3{D} {X}-ray {A}ngiography
	(3{DXA}) information in real time onto a fluoroscopy image ("\emph{3{D}
	{A}ugmented {F}luoroscopy"} - 3{D} {AF}). {R}ecovering the acquisition
	geometry is a crucial step for such augmented reality application.
	{A}s 3{DXA} and fluoroscopy images are acquired on the same vascular
	{C}-arm, a machine-based 3{D}-2{D} registration is possible. {T}he
	feasibility of such an approach was proved and demonstrated in \cite{gorges05}.
	{A}s a result, a complete {A}ugmented {R}eality ({AR}) system, which
	enables to superimpose the 3{DXA} onto real time fluoroscopy images
	is going to be developed and installed in one of the vascular room
	of our institution. {T}he system promises to help the radiologist
	to guide the tool to the pathology to be treated without the need
	to inject contrast medium. {T}he {X}-ray dose, injected volume of
	contrast agent, procedure time and patient discomfort are expected
	to be reduced. {T}his paper extends our previous work \cite{gorges05}
	in two ways. {F}irst, the study to assess the precision of the machine-based
	registration is completed, including various {C}-arm orientations
	and different focal lengths. {A} mean 2{D} error of 1 mm was observed.
	{S}econdly, a preliminary clinical evaluation of the {AR} system
	is reported and clinical evaluation grid is proposed as a ground
	to an objective and perceptual evaluation of such an {AR} application
	implying many observers and patient cases. {T}his study demonstrates
	the potential of the 3{D} {AF} to improve navigation in interventional
	radiology.},
  affiliation = {{GE} {H}ealthcare - {B}uc, {F}rance - {MAGRIT} - {INRIA} {L}orraine
	- {LORIA} - {CNRS} : {UMR}7503 - {INRIA} - {U}niversit{\'e} {H}enri
	{P}oincar{\'e} - {N}ancy {I} - {U}niversit{\'e} {N}ancy {II} - {I}nstitut
	{N}ational {P}olytechnique de {L}orraine },
  day = {06},
  keywords = {{M}edical {A}ugmented {R}eality, {I}nterventional {R}adiology, 3{D}/2{D}
	{R}egistration, {C}alibration},
  url = {http://hal.inria.fr/inria-00110850/en/}
}
@book{linte:hal-00865724,
  title = {{Augmented Environments for Computer-Assisted Interventions}},
  publisher = {Springer},
  year = {2013},
  editor = {Cristian A. Linte Elvis C.S. Chen Marie-Odile Berger John T. Moore
	David R. Holmes },
  author = {Linte, Christian and Chen, Elvis and Berger, Marie-Odile and Moore,
	John and Holmes, D.},
  volume = {LNCS 7815},
  pages = {180},
  affiliation = {MAGRIT - INRIA Nancy - Grand Est / LORIA},
  audience = {internationale },
  hal_id = {hal-00865724},
  url = {http://hal.inria.fr/hal-00865724}
}
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