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Plane Wave Imaging) [61, 62, 63] ouvrent des perspectives de focalisation adaptative, de post-traitement et d'analyse évolués des données ultrasonores à explorer. Cependant, ces possibilités sont tempérées par les capacités et l'efficacité de tels traitements, tant en terme de stockage qu'en terme de vitesse. L'imagerie ultrasonore via un transducteur multiéléments constitue donc un outil de diagnostic et de caractérisation dont les performances et traitements sont ,
, à l'efficacité et à l'ouverture des logiciels (trop souvent propriétaires) et aux capacités de traitement (processeurs) et de stockage (mémoires) des données ainsi générées. Les aspects technologiques (sondes, systèmes d'émission-réception et stockage des données) en font un secteur de développement intimement lié aux domaines de la microélectronique, Les limitations actuelles sont liées à la fois à la rapidité des systèmes de traitement de données (électronique)
, Les évolutions récentes ouvrent des perspectives en temps-réel tant dans le suivi de propriétés (monitoring), qu'en imagerie 2D, 3D ou 3D dynamique, Les potentiels de R&D intéressent donc autant les électroniciens et informaticiens, industriels et académiques. Les domaines d'application sont nombreux et variés dans les secteurs biomédical (échographie, thérapie) ou industriel (END, CND)
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