Comparative validation of single-shot optical techniques for laparoscopic 3-D surface reconstruction

Intra-operative imaging techniques for obtaining the shape and morphology of soft-tissue surfaces in vivo are a key enabling technology for advanced surgical systems. Different optical techniques for 3-D surface reconstruction in laparoscopy have been proposed, however, so far no quantitative and co...

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Hauptverfasser: Maier-Hein, Lena (VerfasserIn) , Groch, A. (VerfasserIn) , Bartoli, A. (VerfasserIn) , Bodenstedt, S. (VerfasserIn) , Boissonnat, G. (VerfasserIn) , Chang, P.-L. (VerfasserIn) , Clancy, N. T. (VerfasserIn) , Elson, D. S. (VerfasserIn) , Haase, S. (VerfasserIn) , Heim, Eric (VerfasserIn) , Hornegger, J. (VerfasserIn) , Jannin, P. (VerfasserIn) , Kenngott, Hannes Götz (VerfasserIn) , Kilgus, Thomas (VerfasserIn) , Müller, Beat P. (VerfasserIn) , Oladokun, D. (VerfasserIn) , Röhl, S. (VerfasserIn) , dos Santos, T. R. (VerfasserIn) , Schlemmer, Heinz-Peter (VerfasserIn) , Seitel, Alexander (VerfasserIn) , Speidel, S. (VerfasserIn) , Wagner, Martin (VerfasserIn) , Stoyanov, D. (VerfasserIn)
Dokumenttyp: Article (Journal)
Sprache:Englisch
Veröffentlicht: September 29, 2014
In: IEEE transactions on medical imaging
Year: 2014, Jahrgang: 33, Heft: 10, Pages: 1913-1930
ISSN:1558-254X
DOI:10.1109/TMI.2014.2325607
Online-Zugang:Verlag, lizenzpflichtig, Volltext: https://doi.org/10.1109/TMI.2014.2325607
Verlag, lizenzpflichtig, Volltext: https://ieeexplore.ieee.org/document/6820756/authors#authors
Volltext
Verfasserangaben:L. Maier-Hein, A. Groch, A. Bartoli, S. Bodenstedt, G. Boissonnat, P.-L. Chang, N.T. Clancy, D.S. Elson, S. Haase, E. Heim, J. Hornegger, P. Jannin, H. Kenngott, T. Kilgus, B. Müller-Stich, D. Oladokun, S. Röhl, T.R. dos Santos, H.-P. Schlemmer, A. Seitel, S. Speidel, M. Wagner, and D. Stoyanov

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520 |a Intra-operative imaging techniques for obtaining the shape and morphology of soft-tissue surfaces in vivo are a key enabling technology for advanced surgical systems. Different optical techniques for 3-D surface reconstruction in laparoscopy have been proposed, however, so far no quantitative and comparative validation has been performed. Furthermore, robustness of the methods to clinically important factors like smoke or bleeding has not yet been assessed. To address these issues, we have formed a joint international initiative with the aim of validating different state-of-the-art passive and active reconstruction methods in a comparative manner. In this comprehensive in vitro study, we investigated reconstruction accuracy using different organs with various shape and texture and also tested reconstruction robustness with respect to a number of factors like the pose of the endoscope as well as the amount of blood or smoke present in the scene. The study suggests complementary advantages of the different techniques with respect to accuracy, robustness, point density, hardware complexity and computation time. While reconstruction accuracy under ideal conditions was generally high, robustness is a remaining issue to be addressed. Future work should include sensor fusion and in vivo validation studies in a specific clinical context. To trigger further research in surface reconstruction, stereoscopic data of the study will be made publically available at www.open-CAS.com upon publication of the paper. 
650 4 |a active reconstruction methods 
650 4 |a Animals 
650 4 |a biological tissues 
650 4 |a Biomedical imaging 
650 4 |a biomedical optical imaging 
650 4 |a blood 
650 4 |a computation time 
650 4 |a endoscope 
650 4 |a endoscopes 
650 4 |a Endoscopes 
650 4 |a hardware complexity 
650 4 |a image reconstruction 
650 4 |a Image reconstruction 
650 4 |a image texture 
650 4 |a Imaging, Three-Dimensional 
650 4 |a in vivo soft-tissue surface morphology 
650 4 |a intraoperative imaging 
650 4 |a Kidney 
650 4 |a laparoscopic 3-D surface reconstruction 
650 4 |a Laparoscopy 
650 4 |a Liver 
650 4 |a medical image processing 
650 4 |a Models, Biological 
650 4 |a optical imaging 
650 4 |a passive reconstruction methods 
650 4 |a point density 
650 4 |a Reconstruction algorithms 
650 4 |a Reproducibility of Results 
650 4 |a Robustness 
650 4 |a sensor fusion 
650 4 |a single-shot optical techniques 
650 4 |a specific clinical context 
650 4 |a stereo image processing 
650 4 |a stereo vision 
650 4 |a stereoscopic data 
650 4 |a surface morphology 
650 4 |a surface reconstruction 
650 4 |a Surface reconstruction 
650 4 |a surgery 
650 4 |a Surgery 
650 4 |a Surgery, Computer-Assisted 
650 4 |a surgical systems 
650 4 |a Swine 
650 4 |a texture 
650 4 |a Three-dimensional displays 
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