DocumentCode
1818543
Title
Wires segmentation in fluoroscopic images during cerebral aneurysm endovascular intervention
Author
Lessard, Simon ; Lau, Caroline ; Roy, Daniel ; Soulez, Gilles ; De Guise, Jacques A.
Author_Institution
Lab. de Rech. en imagerie et orthopedie (LIO), Ecole de Technol. Super. (ETS), Montreal, QC
fYear
2008
fDate
14-17 May 2008
Firstpage
193
Lastpage
196
Abstract
Endovascular intervention is currently considered the treatment of choice for cerebral aneurysms. Nowadays imaging technology for real-time endovascular tool navigation consists of digital fluoroscopy detectors mounted on C-shaped arms with multiple orientations capability. In theory, a 3D representation of interventional devices (guide wire, coils) can be done using biplane fluoroscopic acquisitions. This approach opens the door to a real 3D road-map guidance of endovascular procedure. However, it is important that the tool be precisely identified during an intervention on the low contrast and low resolution fluoroscopic images. Therefore, a new method for segmenting guide wires and coils on fluoroscopic images is presented. A line enhancement algorithm based on Hessian matrix is applied and line candidates are marked by simple thresholding. Line artifacts are suppressed according to geometric criterion. The remaining line segments are linked when appropriately aligned to assemble continuous tools regardless of crossing from the projection of a planar view. This identifying method is evaluated on in vivo fluoroscopic sequences acquired during endovascular interventions on patients with cerebral aneurysm.
Keywords
Hessian matrices; brain; diagnostic radiography; diseases; image segmentation; medical image processing; neurophysiology; patient treatment; Hessian matrix; cerebral aneurysm endovascular intervention; fluoroscopic images; guide wire segmentation; line enhancement algorithm; neuroradiology; vessel enhancement techniques; Aneurysm; Arm; Assembly; Coils; Detectors; Image resolution; Image segmentation; Navigation; Transmission line matrix methods; Wires; Guide wire segmentation; cerebral aneurysm; fluoroscopic image; interventional neuroradiology; line enhancement;
fLanguage
English
Publisher
ieee
Conference_Titel
Biomedical Imaging: From Nano to Macro, 2008. ISBI 2008. 5th IEEE International Symposium on
Conference_Location
Paris
Print_ISBN
978-1-4244-2002-5
Electronic_ISBN
978-1-4244-2003-2
Type
conf
DOI
10.1109/ISBI.2008.4540965
Filename
4540965
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