DocumentCode :
1089474
Title :
A surface registration method for quantification of intraoperative brain deformations in image-guided neurosurgery
Author :
Paul, P. ; Morandi, X. ; Jannin, P.
Author_Institution :
Inst. Nat. de la Sante et de la Rech. Medicale (INSERM), Rennes, France
Volume :
13
Issue :
6
fYear :
2009
Firstpage :
976
Lastpage :
983
Abstract :
Intraoperative brain deformations decrease accuracy in image-guided neurosurgery. Approaches to quantify these deformations based on 3-D reconstruction of cortectomy surfaces have been described and have shown promising results regarding the extrapolation to the whole brain volume using additional prior knowledge or sparse volume modalities. Quantification of brain deformations from surface measurement requires the registration of surfaces at different times along the surgical procedure, with different challenges according to the patient and surgical step. In this paper, we propose a new flexible surface registration approach for any textured point cloud computed by stereoscopic or laser range approach. This method includes three terms: the first term is related to image intensities, the second to Euclidean distance, and the third to anatomical landmarks automatically extracted and continuously tracked in the 2-D video flow. Performance evaluation was performed on both phantom and clinical cases. The global method, including textured point cloud reconstruction, had accuracy within 2 mm, which is the usual rigid registration error of neuronavigation systems before deformations. Its main advantage is to consider all the available data, including the microscope video flow with higher temporal resolution than previously published methods.
Keywords :
biomechanics; biomedical optical imaging; brain; extrapolation; image reconstruction; image registration; image resolution; image texture; medical image processing; neurophysiology; stereo image processing; surgery; video signal processing; 2D video flow; 3D reconstruction; Euclidean distance; cortectomy surface; extrapolation; image intensity; image-guided neurosurgery; intraoperative brain deformation; neuronavigation system; stereovision system; surface measurement; surface registration method; temporal resolution; textured point cloud reconstruction; Laser surgery; Neurosurgery; Surface emitting lasers; Surface reconstruction; Surface texture; Three dimensional displays; Three-dimensional displays; Image-guided neurosurgery (IGNS); intraoperative brain surface deformation; surface registration; video analysis; Brain; Female; Humans; Image Processing, Computer-Assisted; Magnetic Resonance Imaging; Male; Models, Neurological; Neurosurgical Procedures; Phantoms, Imaging; Surgery, Computer-Assisted; Video Recording;
fLanguage :
English
Journal_Title :
Information Technology in Biomedicine, IEEE Transactions on
Publisher :
ieee
ISSN :
1089-7771
Type :
jour
DOI :
10.1109/TITB.2009.2025373
Filename :
5089454
Link To Document :
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