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: 59
Competence
"Transient and stable" cellular bio-sensors design, construction and validation
2D, 3D and 4D imaging and quantification
Additive manufacturing processes (3D printing, SLA rapid prototyping, etc.)
Cell based high content imaging and screening
Cladding
Clinical requirements analysis
Comparative numerical analysis
Conventional welding processes (arc, TIG, MIG / MAG, resistance, etc.)
Design and production of transfelable nano-structures and nano-metric biosensors
Design, production and validation of bio-funcionalized surfaces for biosensing application
Design, production and validation of chemo- and opto- electronic biosensors for nucleic acids detection
Design, production and validation of molecular biosensors
Design, production and validation of molecular biosensors (based on bistable plasmid) for RNA and peptides fluorescence detection
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
Generation and optimization of the part program
Heat treatments of conventional and not conventional metal alloys
Machining processes for metal removal (turning, milling, drilling, reaming, broaching, grinding, etc.)
Massive deformation processes (forging, pressing, rolling mill, extrusion, drawing, etc.)
Melting processes (in sand, in shell, die casting, investment casting, etc.)
Microprocessing (micro-milling, -drilling, -laser, -waterjet, etc.)
Microscopy and nano -scopy, nanomechanics characterization in vitro with AFM technology
Molecular screening based on bio-sensors
Nanoparticles and surfaces microscopy characterization and bio-chemical derivatization
Non-conventional machining processes (laser, plasma, waterjet, chemical and electrochemical , ultrasonic, electrical discharge, etc.)
Numerical optimization of biomedical instrumentation
Optimization of energy consumption
Plasmid production
Processes of ceramic materials production / machining (massive, dense / porous, thick films, etc.)
Processes of powder sintering
Processes of production / machining of products in glass