Gabor waveletGabor wavelets are wavelets invented by Dennis Gabor using complex functions constructed to serve as a basis for Fourier transforms in information theory applications. They are very similar to Morlet wavelets. They are also closely related to Gabor filters. The important property of the wavelet is that it minimizes the product of its standard deviations in the time and frequency domain. Put another way, the uncertainty in information carried by this wavelet is minimized.
Analyse d'imageL'analyse d'image est la reconnaissance des éléments et des informations contenus dans une . Elle peut être automatisée lorsque l'image est enregistrée sous forme numérique, au moyen d'outils informatiques. Les tâches relevant de l'analyse d'image sont multiples, depuis la lecture de codes-barres, jusqu'à la reconnaissance faciale. L'analyse d'image intervient également dans le domaine de l'art et du graphisme, pour l'interprétation des compositions et signifiants.
Discrete-time Fourier transformIn mathematics, the discrete-time Fourier transform (DTFT), also called the finite Fourier transform, is a form of Fourier analysis that is applicable to a sequence of values. The DTFT is often used to analyze samples of a continuous function. The term discrete-time refers to the fact that the transform operates on discrete data, often samples whose interval has units of time. From uniformly spaced samples it produces a function of frequency that is a periodic summation of the continuous Fourier transform of the original continuous function.
Transformation de Fourier rapideLa transformation de Fourier rapide (sigle anglais : FFT ou fast Fourier transform) est un algorithme de calcul de la transformation de Fourier discrète (TFD). Sa complexité varie en O(n log n) avec le nombre n de points, alors que la complexité de l’algorithme « naïf » s'exprime en O(n). Ainsi, pour n = , le temps de calcul de l'algorithme rapide peut être 100 fois plus court que le calcul utilisant la formule de définition de la TFD.
Fractional Fourier transformIn mathematics, in the area of harmonic analysis, the fractional Fourier transform (FRFT) is a family of linear transformations generalizing the Fourier transform. It can be thought of as the Fourier transform to the n-th power, where n need not be an integer — thus, it can transform a function to any intermediate domain between time and frequency. Its applications range from filter design and signal analysis to phase retrieval and pattern recognition.
Continuous wavelet transformIn mathematics, the continuous wavelet transform (CWT) is a formal (i.e., non-numerical) tool that provides an overcomplete representation of a signal by letting the translation and scale parameter of the wavelets vary continuously. The continuous wavelet transform of a function at a scale (a>0) and translational value is expressed by the following integral where is a continuous function in both the time domain and the frequency domain called the mother wavelet and the overline represents operation of complex conjugate.
Blob detectionIn computer vision, blob detection methods are aimed at detecting regions in a that differ in properties, such as brightness or color, compared to surrounding regions. Informally, a blob is a region of an image in which some properties are constant or approximately constant; all the points in a blob can be considered in some sense to be similar to each other. The most common method for blob detection is convolution.
Medical image computingMedical image computing (MIC) is an interdisciplinary field at the intersection of computer science, information engineering, electrical engineering, physics, mathematics and medicine. This field develops computational and mathematical methods for solving problems pertaining to medical images and their use for biomedical research and clinical care. The main goal of MIC is to extract clinically relevant information or knowledge from medical images.
JPEG 2000JPEG 2000 ou ISO/CEI 15444-1, abrégé JP2 (quelquefois J2K), est une norme de compression d’ commune à l’ISO, la CEI et l’UIT-T, développée entre 1997 et 2000, et créée par le groupe de travail Joint Photographic Experts Group. Depuis mai 2015, il est officiellement reconnu par l'ISO / CEI et l'UIT-T sous le code ISO/IEC CD 15444. JPEG 2000 peut travailler avec ou sans perte, en utilisant des transformées en ondelettes (méthode d’analyse mathématique du signal), dont la décomposition est similaire à la transformée de Fourier à court terme.
Filter bankIn signal processing, a filter bank (or filterbank) is an array of bandpass filters that separates the input signal into multiple components, each one carrying a single frequency sub-band of the original signal. One application of a filter bank is a graphic equalizer, which can attenuate the components differently and recombine them into a modified version of the original signal.