DocumentCode :
2966965
Title :
Respiratory motion correction for geometrically correct three-dimensional reconstructions of coronary arteries
Author :
Klingensmith, JD ; Vince, DG
Author_Institution :
Cleveland Clinic Found., OH, USA
fYear :
2002
fDate :
22-25 Sept. 2002
Firstpage :
545
Lastpage :
548
Abstract :
By fusing intravascular ultrasound (IVUS) with biplane angiography, geometrically correct three-dimensional (3D) reconstructions of coronary arteries can be produced. Spatio-temporal localization of the IVUS transducer is challenging due to cardiac and respiratory motion. Since cardiac motion can be eliminated via ECG-gating, the aim of this project was to develop a scheme for respiratory motion correction of the 3D transducer path. A model-based technique was used to eliminate respiratory motion in transducer paths reconstructed from biplane angiography in three pullbacks. Although biplane angiography is the current standard, alternate technology for spatio-temporal localization, will potentially allow inexpensive, real-time 3D reconstruction with no ionizing radiation. The model-based respiratory motion correction has the potential to aid in real-time clinical 3D reconstruction of coronary artery anatomy.
Keywords :
angiocardiography; biomedical ultrasonics; blood vessels; cardiovascular system; image motion analysis; image reconstruction; medical image processing; pneumodynamics; real-time systems; stereo image processing; 3D transducer path; biplane angiography; coronary arteries; geometrically correct 3D reconstructions; intravascular ultrasound; model-based technique; pullbacks; real-time clinical 3D reconstruction; respiratory motion correction; spatio-temporal localization; Anatomy; Angiography; Arteries; Catheters; Image reconstruction; Image segmentation; In vivo; Ionizing radiation; Ultrasonic imaging; Ultrasonic transducers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computers in Cardiology, 2002
ISSN :
0276-6547
Print_ISBN :
0-7803-7735-4
Type :
conf
DOI :
10.1109/CIC.2002.1166830
Filename :
1166830
Link To Document :
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