Title :
Frequency-based nonrigid motion analysis: application to four dimensional medical images
Author :
Nastar, Chahab ; Ayache, Nicholas
Author_Institution :
Inst. Nat. de Recherche en Inf. et Autom., Le Chesnay, France
fDate :
11/1/1996 12:00:00 AM
Abstract :
We present a method for nonrigid motion analysis in time sequences of volume images (4D data). In this method, nonrigid motion of the deforming object contour is dynamically approximated by a physically-based deformable surface. In order to reduce the number of parameters describing the deformation, we make use of a modal analysis which provides a spatial smoothing of the surface. The deformation spectrum, which outlines the main excited modes, can be efficiently used for deformation comparison. Fourier analysis on time signals of the main deformation spectrum components provides a temporal smoothing of the data. Thus a complex nonrigid deformation is described by only a few parameters: the main excited modes and the main Fourier harmonics. Therefore, 4D data can be analyzed in a very concise manner. The power and robustness of the approach is illustrated by various results on medical data. We believe that our method has important applications in automatic diagnosis of heart diseases and in motion compression
Keywords :
Fourier analysis; harmonics; image sequences; medical image processing; motion estimation; Fourier harmonics; automatic diagnosis; deformation spectrum; deforming object contour; four dimensional medical images; frequency-based nonrigid motion analysis; heart diseases; modal analysis; motion compression; spatial smoothing; time sequences; volume images; Biomedical imaging; Cardiac disease; Data analysis; Frequency; Medical diagnostic imaging; Modal analysis; Motion analysis; Robustness; Signal analysis; Smoothing methods;
Journal_Title :
Pattern Analysis and Machine Intelligence, IEEE Transactions on