Database providing access to the High Technology Network's industrial research offering: research competences, type of analyses and tests available at the Laboratories. Companies can consult the Catalogue to find Laboratories and researchers that match their needs.

Results: 35
Competence
Acquisition and pre-processing of signals for model identification
Clinical requirements analysis
Comparative numerical analysis
Continuous-time and discrete-time mathematical modeling of systems and processes
Diagnostic biomedical equipments: "selection of the conditioning"
Diagnostic biomedical equipments: 2D and 3D alignment of Radiological Data
Diagnostic biomedical equipments: calibration and performance verification
Diagnostic biomedical equipments: cross-validation, repeatability and reliability studies
Diagnostic biomedical equipments: design of communication protocols and integration between components and instrumentations
Diagnostic biomedical equipments: design of experimental protocols and clinical trials
Diagnostic biomedical equipments: field evaluation
Diagnostic biomedical equipments: hardware and sensors design, for analysis, storage and transmission
Diagnostic biomedical equipments: Segmentation of fluoroscopy data
Diagnostic biomedical equipments: software design for signals elaboration
Diagnostic biomedical equipments:design of recognition and classification algorithms
Discrete events mathematical modeling of systems and processes
Finite element simulation (FEM)
Formal languages for systems modeling (Unified Modeling Language-UML and SysML-System Modeling Language)
Identification of models and parameters estimation
Infinite-dimensional mathematical modeling of systems
Modeling of the collision of bodies in mechanical systems
Non-parametric modeling (neural networks, etc.)
Numerical optimization of biomedical instrumentation
Simulation for discrete events models
Simulation for dynamic continuous-time and discrete-time models
Therapeutic biomedical equipments: analysis of the electrical safety
Therapeutic biomedical equipments: design of control and / or adaptation algorithms
Therapeutic biomedical equipments: design of the storage and transmission systems
Therapeutic biomedical equipments: electromechanical and regulation devices design
Therapeutic biomedical equipments: ergonomics
Therapeutic biomedical equipments: evaluation and optimization of therapeutic treatments through quantitative methods (Evidence-based Medicine)
Therapeutic biomedical equipments: geometric measurements on 3D and 4D images
Therapeutic biomedical equipments: interfaces and alarms design
Therapeutic biomedical equipments: selection and interconnection of sensors and actuators
Validation of models and X-In-The-Loop (software in the loop and hardware in the loop)