3D scanning3D scanner is the process of analyzing a real-world object or environment to collect three dimensional data of its shape and possibly its appearance (e.g. color). The collected data can then be used to construct digital 3D models. A 3D scanner can be based on many different technologies, each with its own limitations, advantages and costs. Many limitations in the kind of objects that can be digitised are still present. For example, optical technology may encounter many difficulties with dark, shiny, reflective or transparent objects.
Finger trackingIn the field of gesture recognition and , finger tracking is a high-resolution technique developed in 1969 that is employed to know the consecutive position of the fingers of the user and hence represent objects in 3D. In addition to that, the finger tracking technique is used as a tool of the computer, acting as an external device in our computer, similar to a keyboard and a mouse. The finger tracking system is focused on user-data interaction, where the user interacts with virtual data, by handling through the fingers the volumetric of a 3D object that we want to represent.
Segmentation d'imageLa segmentation d'image est une opération de s consistant à détecter et rassembler les pixels suivant des critères, notamment d'intensité ou spatiaux, l'image apparaissant ainsi formée de régions uniformes. La segmentation peut par exemple montrer les objets en les distinguant du fond avec netteté. Dans les cas où les critères divisent les pixels en deux ensembles, le traitement est une binarisation. Des algorithmes sont écrits comme substitut aux connaissances de haut niveau que l'homme mobilise dans son identification des objets et structures.
Vision par ordinateurLa vision par ordinateur est un domaine scientifique et une branche de l’intelligence artificielle qui traite de la façon dont les ordinateurs peuvent acquérir une compréhension de haut niveau à partir d's ou de vidéos numériques. Du point de vue de l'ingénierie, il cherche à comprendre et à automatiser les tâches que le système visuel humain peut effectuer. Les tâches de vision par ordinateur comprennent des procédés pour acquérir, traiter, et « comprendre » des images numériques, et extraire des données afin de produire des informations numériques ou symboliques, par ex.
TrackingVideo tracking is the process of locating a moving object (or multiple objects) over time using a camera. It has a variety of uses, some of which are: human-computer interaction, security and surveillance, video communication and compression, augmented reality, traffic control, medical imaging and video editing. Video tracking can be a time-consuming process due to the amount of data that is contained in video. Adding further to the complexity is the possible need to use object recognition techniques for tracking, a challenging problem in its own right.
Activity recognitionActivity recognition aims to recognize the actions and goals of one or more agents from a series of observations on the agents' actions and the environmental conditions. Since the 1980s, this research field has captured the attention of several computer science communities due to its strength in providing personalized support for many different applications and its connection to many different fields of study such as medicine, human-computer interaction, or sociology.
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.
Deformation (engineering)In engineering, deformation refers to the change in size or shape of an object. Displacements are the absolute change in position of a point on the object. Deflection is the relative change in external displacements on an object. Strain is the relative internal change in shape of an infinitesimally small cube of material and can be expressed as a non-dimensional change in length or angle of distortion of the cube. Strains are related to the forces acting on the cube, which are known as stress, by a stress-strain curve.
Geometry processingGeometry processing, or mesh processing, is an area of research that uses concepts from applied mathematics, computer science and engineering to design efficient algorithms for the acquisition, reconstruction, analysis, manipulation, simulation and transmission of complex 3D models. As the name implies, many of the concepts, data structures, and algorithms are directly analogous to signal processing and .
Système de coordonnées curvilignesUn système de coordonnées curvilignes est une façon d'attribuer à chaque point du plan ou de l'espace un ensemble de nombres. Soit un point de l'espace dont les coordonnées sont notées . Un système de coordonnées quelconques est obtenu en se donnant trois fonctions arbitraires des paramètres , telles que ; ces fonctions sont choisies le plus souvent continues, et même différentiables. Les points correspondant à deux des trois coordonnées constantes décrivent une ligne de coordonnées.