MITK-ToF—Range data within MITK

Author:

Seitel Alexander,Yung Kwong,Mersmann Sven,Kilgus Thomas,Groch Anja,dos Santos Thiago R.,Franz Alfred M.,Nolden Marco,Meinzer Hans-Peter,Maier-Hein Lena

Publisher

Springer Science and Business Media LLC

Subject

Health Informatics,Radiology, Nuclear Medicine and imaging,General Medicine,Surgery,Computer Graphics and Computer-Aided Design,Computer Science Applications,Computer Vision and Pattern Recognition,Biomedical Engineering

Reference26 articles.

1. Yaniv Z, Cleary K (2006) Image-guided procedures: a review. Georgetown University, Imaging Science and Information Systems Center, Computer Aided Interventions and Medical Robotics

2. Peters T (2006) Image-guidance for surgical procedures. Phys Med Biol 51(14): R505–R540

3. Kolb A, Barth E, Koch R, Larsen R (2009) Time-of-flight sensors in computer graphics. In: Pauly M, Greiner G (eds) Eurographics, Wiley online library, pp 119–134

4. Lange R (2000) 3D time-of-flight distance measurement with custom solid-state image sensors in CMOS/CCD-technology, PhD Thesis. University of Siegen, Germany

5. Schaller C, Penne J, Hornegger J (2008) Time-of-flight sensor for respiratory motion gating. Med Phys 35(7): 3090–3093

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1. Software based medical/dental analysis;Advances in Computers;2024

2. Artificial Intelligence in Biomedical Image Processing;Machine Learning and Systems Biology in Genomics and Health;2022

3. Computer tomographic analysis of organ motion caused by respiration and intraoperative pneumoperitoneum in a porcine model for navigated minimally invasive esophagectomy;Surgical Endoscopy;2018-03-30

4. MITK-OpenIGTLink for combining open-source toolkits in real-time computer-assisted interventions;International Journal of Computer Assisted Radiology and Surgery;2016-09-29

5. Towards markerless navigation for percutaneous needle insertions;International Journal of Computer Assisted Radiology and Surgery;2015-05-28

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