Search Field
2014
Liebig, Kay N.; Maslehaty, Homajoun; Petridis, Athanasios K.; Konen, Wolfgang; Scholz, Martin
Comparison of two algorithms for the application of real time image mosaicking in neuroendoscopy Artikel
In: Journal of Neurosurgery, Bd. 121, Nr. 3, S. 688 – 699, 2014.
@article{Lieb14,
title = {Comparison of two algorithms for the application of real time image mosaicking in neuroendoscopy},
author = {Kay N. Liebig and Homajoun Maslehaty and Athanasios K. Petridis and Wolfgang Konen and Martin Scholz},
year = {2014},
date = {2014-01-01},
journal = {Journal of Neurosurgery},
volume = {121},
number = {3},
pages = {688 -- 699},
abstract = {OBJECT: Neuroendoscopy is used more and more frequently in neurosurgical procedures and has become an important tool in the neurosurgical armamentarium. However, the main restriction of neuroendoscopy is the limited field of view. A better overview of the area of interest would increase surgical safety and decrease procedure-related morbidity rates. In the present study, the authors aimed to improve this restriction by using and comparing two algorithms to create endoscopic panoramic images, which increase the field of view during neuroendoscopic procedures. METHODS: Different endoscopic methods with or without a stand and with linear or circular endoscope movements were performed in cadaveric ventricles. Video of the endoscopy was used to create image mosaics of the lateral ventricle with the help of the Kourogi or LogSearch (LS) algorithm. In the LS algorithm, different template sizes were used. Three observers graded the quality of the image mosaic in terms of usefulness in surgery. The fastest frame rate was 3-4 frames/second. RESULTS: The LS algorithm with a larger template size showed significantly better results for the creation of image mosaics than the Kourogi algorithm in linear endoscopic movement with or without a stand. In circular endoscopic movements, the results seemed to be better with the LS algorithm but were not significantly different from those obtained with the Kourogi algorithm. In summary, image quality in the experimental paradigms was satisfying. CONCLUSIONS: Results in the study showed that the creation of image mosaics is possible and reliable with the featured algorithms. Image mosaicking is an applicable device for neuroendoscopy and can increase the field of view during endoscopic procedures. Its use can increase the safety and the field of application of neuroendoscopy. However, faster frame rates will be required to create a smooth image for practical use during surgery.},
keywords = {BV-3D-Endo, computer vision, image mosaic, LogSearch algorithm, neuroendoscopy},
pubstate = {published},
tppubtype = {article}
}
OBJECT: Neuroendoscopy is used more and more frequently in neurosurgical procedures and has become an important tool in the neurosurgical armamentarium. However, the main restriction of neuroendoscopy is the limited field of view. A better overview of the area of interest would increase surgical safety and decrease procedure-related morbidity rates. In the present study, the authors aimed to improve this restriction by using and comparing two algorithms to create endoscopic panoramic images, which increase the field of view during neuroendoscopic procedures. METHODS: Different endoscopic methods with or without a stand and with linear or circular endoscope movements were performed in cadaveric ventricles. Video of the endoscopy was used to create image mosaics of the lateral ventricle with the help of the Kourogi or LogSearch (LS) algorithm. In the LS algorithm, different template sizes were used. Three observers graded the quality of the image mosaic in terms of usefulness in surgery. The fastest frame rate was 3-4 frames/second. RESULTS: The LS algorithm with a larger template size showed significantly better results for the creation of image mosaics than the Kourogi algorithm in linear endoscopic movement with or without a stand. In circular endoscopic movements, the results seemed to be better with the LS algorithm but were not significantly different from those obtained with the Kourogi algorithm. In summary, image quality in the experimental paradigms was satisfying. CONCLUSIONS: Results in the study showed that the creation of image mosaics is possible and reliable with the featured algorithms. Image mosaicking is an applicable device for neuroendoscopy and can increase the field of view during endoscopic procedures. Its use can increase the safety and the field of application of neuroendoscopy. However, faster frame rates will be required to create a smooth image for practical use during surgery.
2007
Breiderhoff, Beate; Konen, Wolfgang; Scholz, Martin
Ein automatisiertes Verfahren zum Image-Mosaicing bei endoskopischen Videoaufnahmen Forschungsbericht
Cologne University of Applied Sciences 2007.
@techreport{BreKon07,
title = {Ein automatisiertes Verfahren zum Image-Mosaicing bei endoskopischen Videoaufnahmen},
author = {Beate Breiderhoff and Wolfgang Konen and Martin Scholz},
url = {http://www.gm.fh-koeln.de/~konen/Publikationen/bvm2007_paper1_final.pdf},
year = {2007},
date = {2007-01-01},
institution = {Cologne University of Applied Sciences},
keywords = {BV-3D-Endo, computer vision, image mosaic},
pubstate = {published},
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Konen, Wolfgang
3D-Navigation und Bildverarbeitung in der medizinischen Endoskopie Forschungsbericht
Cologne University of Applied Sciences 2007.
@techreport{Kone07b,
title = {3D-Navigation und Bildverarbeitung in der medizinischen Endoskopie},
author = {Wolfgang Konen},
url = {http://www.gm.fh-koeln.de/~konen/Publikationen/FBericht2007-Kg2.pdf},
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Konen, Wolfgang; Breiderhoff, Beate; Naderi, Martin
Image Mosaicing in der medizinischen Endoskopie Forschungsbericht
Cologne University of Applied Sciences 2007.
@techreport{KonBre07a,
title = {Image Mosaicing in der medizinischen Endoskopie},
author = {Wolfgang Konen and Beate Breiderhoff and Martin Naderi},
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Konen, Wolfgang; Breiderhoff, Beate; Scholz, Martin
Real-time image mosaic for endoscopic video sequences Proceedings Article
In: Horsch, A (Hrsg.): Bildverarbeitung für die Medizin (BVM2007, München), Springer-Verlag, Berlin, 2007.
@inproceedings{KonBre07b,
title = {Real-time image mosaic for endoscopic video sequences},
author = {Wolfgang Konen and Beate Breiderhoff and Martin Scholz},
editor = {A Horsch},
url = {http://www.gm.fh-koeln.de/~konen/Publikationen/bvm2007_paper2_final.pdf},
year = {2007},
date = {2007-01-01},
booktitle = {Bildverarbeitung für die Medizin (BVM2007, München)},
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Konen, Wolfgang; Naderi, Martin; Scholz, Martin
Endoscopic image mosaics for real-time color video sequences Proceedings Article
In: Lemke, H. U. (Hrsg.): Computer Assisted Radiology and Surgery (CARS2007, Berlin), Elsevier, Amsterdam, 2007.
@inproceedings{KonNad07,
title = {Endoscopic image mosaics for real-time color video sequences},
author = {Wolfgang Konen and Martin Naderi and Martin Scholz},
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url = {http://www.gm.fh-koeln.de/~konen/Publikationen/CARS2007_EndoMosaic-paper.pdf},
year = {2007},
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Konen, Wolfgang; Scholz, Martin; Tombrock, Stephan
Robust registration procedures for endoscopic imaging Artikel
In: Medical Image Analysis, Bd. 11, Nr. 6, S. 526-539, 2007.
@article{KonSch07,
title = {Robust registration procedures for endoscopic imaging},
author = {Wolfgang Konen and Martin Scholz and Stephan Tombrock},
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volume = {11},
number = {6},
pages = {526-539},
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2006
Konen, Wolfgang
Optischer Fluss und Echtzeit-Videobearbeitung Forschungsbericht
Cologne University of Applied Sciences 2006.
@techreport{Kone06a,
title = {Optischer Fluss und Echtzeit-Videobearbeitung},
author = {Wolfgang Konen},
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year = {2006},
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2005
Scholz, Martin; Tombrock, Stephan; Konen, Wolfgang; Fricke, B.; others,
Application of a newly developed visual navigation system in humans first results Artikel
In: Minimal Invasive Neurosurgery, Bd. 48, S. 1-6, 2005.
@article{SchTK05,
title = {Application of a newly developed visual navigation system in humans first results},
author = {Martin Scholz and Stephan Tombrock and Wolfgang Konen and B. Fricke and others},
url = {http://www.gm.fh-koeln.de/~konen/Publikationen/scholz-mins-2005.pdf},
year = {2005},
date = {2005-01-01},
journal = {Minimal Invasive Neurosurgery},
volume = {48},
pages = {1-6},
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Scholz, Martin; Dick, S.; Fricke, B.; Engelhardt, M.; StephanTombrock,; Pechlivanis, I.; Harders, A.; Konen, Wolfgang
Consideration of ergonomic aspects in the development of a new endoscopic navigation system Artikel
In: British Journal of Neurosurgery, Bd. 19, Nr. 5, S. 402-408, 2005.
@article{SchDF05,
title = {Consideration of ergonomic aspects in the development of a new endoscopic navigation system},
author = { Martin Scholz and S. Dick and B. Fricke and M. Engelhardt and StephanTombrock and I. Pechlivanis and A. Harders and Wolfgang Konen},
year = {2005},
date = {2005-01-01},
journal = {British Journal of Neurosurgery},
volume = {19},
number = {5},
pages = {402-408},
keywords = {BV-3D-Endo, computer vision, image mosaic},
pubstate = {published},
tppubtype = {article}
}
2000
Scholz, Martin; Fricke, Britta; Tombrock, Stephan; Hardenack, Markus; Schmieder, Kirsten; von Düring, Monika; Konen, Wolfgang; Harders, Albrecht
Virtual image navigation: a new method to control intraoperative bleeding in neuroendoscopic surgery: Case Reports And Technical Notes Artikel
In: Journal of Neurosurgery, Bd. 93, S. 342-350, 2000.
@article{SchFT00a,
title = {Virtual image navigation: a new method to control intraoperative bleeding in neuroendoscopic surgery: Case Reports And Technical Notes},
author = {Martin Scholz and Britta Fricke and Stephan Tombrock and Markus Hardenack and Kirsten Schmieder and Monika von Düring and Wolfgang Konen and Albrecht Harders},
year = {2000},
date = {2000-01-01},
journal = {Journal of Neurosurgery},
volume = {93},
pages = {342-350},
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Scholz, Martin; Fricke, Britta; Tombrock, Stephan; Hardenack, Markus; Schmieder, Kirsten; von Düring, Monika; Konen, Wolfgang; Harders, Albrecht
Virtual image navigation: a new method to control intraoperative bleeding in neuroendoscopic surgery Artikel
In: Neurosurgical Focus, JNS Preview Article, Bd. 8, Nr. 6, S. 342-350, 2000.
@article{SchFT00b,
title = {Virtual image navigation: a new method to control intraoperative bleeding in neuroendoscopic surgery},
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1999
Konen, Wolfgang; Scholz, Martin; Tombrock, Stephan
Endoscopic navigation and real-time image processing Proceedings Article
In: 4th International Symposium on Computer Aided Orthopedic Surgery (CAOS); Davos, 1999.
@inproceedings{KonST99,
title = {Endoscopic navigation and real-time image processing},
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1998
Konen, Wolfgang; Scholz, Martin; Tombrock, Stephan
The VN-project : Endoscopic image processing for neurosurgery Artikel
In: Computer Aided Surgery, Bd. 3, Nr. 3, S. 144-148, 1998.
@article{KonST98a,
title = {The VN-project : Endoscopic image processing for neurosurgery},
author = {Wolfgang Konen and Martin Scholz and Stephan Tombrock},
url = {http://www.gm.fh-koeln.de/~konen/Publikationen/konen-CAS_Harder98.pdf},
year = {1998},
date = {1998-01-01},
journal = {Computer Aided Surgery},
volume = {3},
number = {3},
pages = {144-148},
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pubstate = {published},
tppubtype = {article}
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Konen, Wolfgang; Scholz, Martin; Tombrock, Stephan
Bildverarbeitung in der Neuroendoskopie Proceedings Article
In: 1. Bochumer Workshop : Bildgeführtes Operieren Quo vadis ? Perspektiven in der Neurochirurgie, 14.3.98, 1998.
@inproceedings{KonST98b,
title = {Bildverarbeitung in der Neuroendoskopie},
author = {Wolfgang Konen and Martin Scholz and Stephan Tombrock},
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}
Scholz, Martin; Konen, Wolfgang; Tombrock, Stephan; Fricke, Britta; Adams, L.; von Düring, Monika; others,
Development of an endoscopic navigation system based on digital image processing Artikel
In: Computer Aided Surgery, Bd. 2, Nr. 6, S. 1-6, 1998.
@article{SchKT98e,
title = {Development of an endoscopic navigation system based on digital image processing},
author = {Martin Scholz and Wolfgang Konen and Stephan Tombrock and Britta Fricke and L. Adams and Monika von Düring and others},
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Scholz, Martin; Konen, Wolfgang; Tombrock, Stephan; Fricke, Britta; von Düring, Monika; Harders, Albrecht
Das VN-Projekt : Entwicklung eines visuell geführten endoskopischen Navigationssystems Proceedings Article
In: 1. Bochumer Workshop : Bildgeführtes Operieren Quo vadis ? Perspektiven in der Neurochirurgie, 14.3.98, 1998.
@inproceedings{SchKT98a,
title = {Das VN-Projekt : Entwicklung eines visuell geführten endoskopischen Navigationssystems},
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Scholz, Martin; Konen, Wolfgang; Tombrock, Stephan; Hardenack, Markus; Fricke, Britta; von Düring, Monika; Harders, Albrecht
Development of a visual guided navigation system for neuroendoscopy Proceedings Article
In: 49. Jahrestagung der Deutschen Gesellschaft für Neurochirurgie,13.6.98, 1998.
@inproceedings{SchKT98d,
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Scholz, Martin; Konen, Wolfgang; Tombrock, Stephan; Harders, Albrecht; others,
Digital image processing in neuroendoscopy : the development of a new navigation system Proceedings Article
In: 1. Congress of Endoscopic Assisted Microsurgery. Joint Meeting of the German and Japanese Societies of Neuroendoscopy. 10.6.98, Frankfurt., 1998.
@inproceedings{SchKT98b,
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Scholz, Martin; Konen, Wolfgang; Tombrock,; Harders, Albrecht; others,
Digitale Bildverarbeitung in der endoskopischen Neurochirurgie Proceedings Article
In: Aachener Workshop "Navigierte Hirnchirurgie", 4.-5.9.1998, 1998.
@inproceedings{SchKT98c,
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Scholz, Martin; Tombrock, Stephan; Fricke, Britta; Wildförster, Ulrich; Konen, Wolfgang; von Düring, Monika; Harders, Albrecht
Computergestützte neuroendoskopische Koagulation: Blutstillung bei Bildverlust Proceedings Article
In: 5. Tag der Biomedizinischen Technik an der Ruhr-Universität Bochum, 1998.
@inproceedings{SchTF98,
title = {Computergestützte neuroendoskopische Koagulation: Blutstillung bei Bildverlust},
author = {Martin Scholz and Stephan Tombrock and Britta Fricke and Ulrich Wildförster and Wolfgang Konen and Monika von Düring and Albrecht Harders },
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Scholz, Martin; Konen, Wolfgang; Tombrock, Stephan; Schwarz, Andreas; Fricke, Britta; von Düring, Monika; Harders, Albrecht
Computergestützte endoskopische Neuronavigation Proceedings Article
In: Fuzzy Neuroinitiative NRW, Neue Produkte und Anwendungen, S. 8592, 1998.
@inproceedings{SchKT98f,
title = {Computergestützte endoskopische Neuronavigation},
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Scholz, Martin; Neumann, D.; Wildförster, Ulrich; Fricke, Britta; Konen, Wolfgang; others,
Variations of topographic anatomy at the floor of the third ventricle Proceedings Article
In: 1. Congress of Endoscopic Assisted Microsurgery. Joint Meeting of the German and Japanese Societies of Neuroendoscopy. 10.6.98, Frankfurt., 1998.
@inproceedings{SchNW98,
title = {Variations of topographic anatomy at the floor of the third ventricle},
author = {Martin Scholz and D. Neumann and Ulrich Wildförster and Britta Fricke and Wolfgang Konen and others},
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}
Search Field
23 Einträge « ‹ 1 von 3
› » 1.
Liebig, Kay N.; Maslehaty, Homajoun; Petridis, Athanasios K.; Konen, Wolfgang; Scholz, Martin
Comparison of two algorithms for the application of real time image mosaicking in neuroendoscopy Artikel
In: Journal of Neurosurgery, Bd. 121, Nr. 3, S. 688 – 699, 2014.
@article{Lieb14,
title = {Comparison of two algorithms for the application of real time image mosaicking in neuroendoscopy},
author = {Kay N. Liebig and Homajoun Maslehaty and Athanasios K. Petridis and Wolfgang Konen and Martin Scholz},
year = {2014},
date = {2014-01-01},
journal = {Journal of Neurosurgery},
volume = {121},
number = {3},
pages = {688 -- 699},
abstract = {OBJECT: Neuroendoscopy is used more and more frequently in neurosurgical procedures and has become an important tool in the neurosurgical armamentarium. However, the main restriction of neuroendoscopy is the limited field of view. A better overview of the area of interest would increase surgical safety and decrease procedure-related morbidity rates. In the present study, the authors aimed to improve this restriction by using and comparing two algorithms to create endoscopic panoramic images, which increase the field of view during neuroendoscopic procedures. METHODS: Different endoscopic methods with or without a stand and with linear or circular endoscope movements were performed in cadaveric ventricles. Video of the endoscopy was used to create image mosaics of the lateral ventricle with the help of the Kourogi or LogSearch (LS) algorithm. In the LS algorithm, different template sizes were used. Three observers graded the quality of the image mosaic in terms of usefulness in surgery. The fastest frame rate was 3-4 frames/second. RESULTS: The LS algorithm with a larger template size showed significantly better results for the creation of image mosaics than the Kourogi algorithm in linear endoscopic movement with or without a stand. In circular endoscopic movements, the results seemed to be better with the LS algorithm but were not significantly different from those obtained with the Kourogi algorithm. In summary, image quality in the experimental paradigms was satisfying. CONCLUSIONS: Results in the study showed that the creation of image mosaics is possible and reliable with the featured algorithms. Image mosaicking is an applicable device for neuroendoscopy and can increase the field of view during endoscopic procedures. Its use can increase the safety and the field of application of neuroendoscopy. However, faster frame rates will be required to create a smooth image for practical use during surgery.},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
OBJECT: Neuroendoscopy is used more and more frequently in neurosurgical procedures and has become an important tool in the neurosurgical armamentarium. However, the main restriction of neuroendoscopy is the limited field of view. A better overview of the area of interest would increase surgical safety and decrease procedure-related morbidity rates. In the present study, the authors aimed to improve this restriction by using and comparing two algorithms to create endoscopic panoramic images, which increase the field of view during neuroendoscopic procedures. METHODS: Different endoscopic methods with or without a stand and with linear or circular endoscope movements were performed in cadaveric ventricles. Video of the endoscopy was used to create image mosaics of the lateral ventricle with the help of the Kourogi or LogSearch (LS) algorithm. In the LS algorithm, different template sizes were used. Three observers graded the quality of the image mosaic in terms of usefulness in surgery. The fastest frame rate was 3-4 frames/second. RESULTS: The LS algorithm with a larger template size showed significantly better results for the creation of image mosaics than the Kourogi algorithm in linear endoscopic movement with or without a stand. In circular endoscopic movements, the results seemed to be better with the LS algorithm but were not significantly different from those obtained with the Kourogi algorithm. In summary, image quality in the experimental paradigms was satisfying. CONCLUSIONS: Results in the study showed that the creation of image mosaics is possible and reliable with the featured algorithms. Image mosaicking is an applicable device for neuroendoscopy and can increase the field of view during endoscopic procedures. Its use can increase the safety and the field of application of neuroendoscopy. However, faster frame rates will be required to create a smooth image for practical use during surgery.
2.
Breiderhoff, Beate; Konen, Wolfgang; Scholz, Martin
Ein automatisiertes Verfahren zum Image-Mosaicing bei endoskopischen Videoaufnahmen Forschungsbericht
Cologne University of Applied Sciences 2007.
@techreport{BreKon07,
title = {Ein automatisiertes Verfahren zum Image-Mosaicing bei endoskopischen Videoaufnahmen},
author = {Beate Breiderhoff and Wolfgang Konen and Martin Scholz},
url = {http://www.gm.fh-koeln.de/~konen/Publikationen/bvm2007_paper1_final.pdf},
year = {2007},
date = {2007-01-01},
institution = {Cologne University of Applied Sciences},
keywords = {},
pubstate = {published},
tppubtype = {techreport}
}
3.
Konen, Wolfgang
3D-Navigation und Bildverarbeitung in der medizinischen Endoskopie Forschungsbericht
Cologne University of Applied Sciences 2007.
@techreport{Kone07b,
title = {3D-Navigation und Bildverarbeitung in der medizinischen Endoskopie},
author = {Wolfgang Konen},
url = {http://www.gm.fh-koeln.de/~konen/Publikationen/FBericht2007-Kg2.pdf},
year = {2007},
date = {2007-01-01},
institution = {Cologne University of Applied Sciences},
keywords = {},
pubstate = {published},
tppubtype = {techreport}
}
4.
Konen, Wolfgang; Breiderhoff, Beate; Naderi, Martin
Image Mosaicing in der medizinischen Endoskopie Forschungsbericht
Cologne University of Applied Sciences 2007.
@techreport{KonBre07a,
title = {Image Mosaicing in der medizinischen Endoskopie},
author = {Wolfgang Konen and Beate Breiderhoff and Martin Naderi},
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year = {2007},
date = {2007-01-01},
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pubstate = {published},
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5.
Konen, Wolfgang; Breiderhoff, Beate; Scholz, Martin
Real-time image mosaic for endoscopic video sequences Proceedings Article
In: Horsch, A (Hrsg.): Bildverarbeitung für die Medizin (BVM2007, München), Springer-Verlag, Berlin, 2007.
@inproceedings{KonBre07b,
title = {Real-time image mosaic for endoscopic video sequences},
author = {Wolfgang Konen and Beate Breiderhoff and Martin Scholz},
editor = {A Horsch},
url = {http://www.gm.fh-koeln.de/~konen/Publikationen/bvm2007_paper2_final.pdf},
year = {2007},
date = {2007-01-01},
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publisher = {Springer-Verlag, Berlin},
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6.
Konen, Wolfgang; Naderi, Martin; Scholz, Martin
Endoscopic image mosaics for real-time color video sequences Proceedings Article
In: Lemke, H. U. (Hrsg.): Computer Assisted Radiology and Surgery (CARS2007, Berlin), Elsevier, Amsterdam, 2007.
@inproceedings{KonNad07,
title = {Endoscopic image mosaics for real-time color video sequences},
author = {Wolfgang Konen and Martin Naderi and Martin Scholz},
editor = {Lemke, H.U.},
url = {http://www.gm.fh-koeln.de/~konen/Publikationen/CARS2007_EndoMosaic-paper.pdf},
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7.
Konen, Wolfgang; Scholz, Martin; Tombrock, Stephan
Robust registration procedures for endoscopic imaging Artikel
In: Medical Image Analysis, Bd. 11, Nr. 6, S. 526-539, 2007.
@article{KonSch07,
title = {Robust registration procedures for endoscopic imaging},
author = {Wolfgang Konen and Martin Scholz and Stephan Tombrock},
url = {http://www.gm.fh-koeln.de/~konen/Publikationen/KonenTombrockScholz2007-rev2.pdf},
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journal = {Medical Image Analysis},
volume = {11},
number = {6},
pages = {526-539},
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}
8.
Konen, Wolfgang
Optischer Fluss und Echtzeit-Videobearbeitung Forschungsbericht
Cologne University of Applied Sciences 2006.
@techreport{Kone06a,
title = {Optischer Fluss und Echtzeit-Videobearbeitung},
author = {Wolfgang Konen},
url = {http://www.gm.fh-koeln.de/%7Ekonen/WPF-BV/TR-OpticalFlow-ImaMos.pdf},
year = {2006},
date = {2006-01-01},
institution = {Cologne University of Applied Sciences},
keywords = {},
pubstate = {published},
tppubtype = {techreport}
}
9.
Scholz, Martin; Tombrock, Stephan; Konen, Wolfgang; Fricke, B.; others,
Application of a newly developed visual navigation system in humans first results Artikel
In: Minimal Invasive Neurosurgery, Bd. 48, S. 1-6, 2005.
@article{SchTK05,
title = {Application of a newly developed visual navigation system in humans first results},
author = {Martin Scholz and Stephan Tombrock and Wolfgang Konen and B. Fricke and others},
url = {http://www.gm.fh-koeln.de/~konen/Publikationen/scholz-mins-2005.pdf},
year = {2005},
date = {2005-01-01},
journal = {Minimal Invasive Neurosurgery},
volume = {48},
pages = {1-6},
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pubstate = {published},
tppubtype = {article}
}
10.
Scholz, Martin; Dick, S.; Fricke, B.; Engelhardt, M.; StephanTombrock,; Pechlivanis, I.; Harders, A.; Konen, Wolfgang
Consideration of ergonomic aspects in the development of a new endoscopic navigation system Artikel
In: British Journal of Neurosurgery, Bd. 19, Nr. 5, S. 402-408, 2005.
@article{SchDF05,
title = {Consideration of ergonomic aspects in the development of a new endoscopic navigation system},
author = { Martin Scholz and S. Dick and B. Fricke and M. Engelhardt and StephanTombrock and I. Pechlivanis and A. Harders and Wolfgang Konen},
year = {2005},
date = {2005-01-01},
journal = {British Journal of Neurosurgery},
volume = {19},
number = {5},
pages = {402-408},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
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