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: 57
Competence
Additive manufacturing processes (3D printing, SLA rapid prototyping, etc.)
Advanced Therapy Design (epithelial cells)
Advanced Therapy Design (fat cells)
Advanced Therapy Design (nervous cells)
Advanced Therapy Design (skeletal muscle cells)
Analysis by means of molecular biology as well as biochemical, immunoenzymatic, histologic, immunohistochemical, biomechanical, radiographic
Assessment of the requirements by clinical experts
Cladding
Conventional welding processes (arc, TIG, MIG / MAG, resistance, etc.)
Data analysis on 2D,3D and 4D histomorphometric data
Evaluation of the bio-safety of medical devices in vitro
Extensive cellular manipulation
Generation and optimization of the part program
GMP manufacturing (epithelial cells)
GMP manufacturing (fat cells)
GMP manufacturing (skeletal muscle cells)
GMP process and product validation (epithelial cells)
GMP process and product validation (fat cells)
GMP process and product validation (skeletal muscle cells)
GMP-compliant process development (epithelial cells)
GMP-compliant process development (fat cells)
GMP-compliant process development (skeletal muscle cells)
Heat treatments of conventional and not conventional metal alloys
In vitro and in vivo pre-clinical validation (cardiac cells)
In vitro and in vivo pre-clinical validation (epithelial cells)
In vitro and in vivo pre-clinical validation (fat cells)
In vitro and in vivo pre-clinical validation (nervous cells)
In vitro and in vivo pre-clinical validation (skeletal muscle cells)
In vivo functional characterization of the device
Isolation, target carachterisation (fat cells)
Isolation, target carachterisation (nervous cells)
Isolation, target carachterisation (skeletal muscle cells)
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.)
Microscopic/nanoscopic/nanomechanical, mechanical and in vitro functional characterization of the device
Non-conventional machining processes (laser, plasma, waterjet, chemical and electrochemical , ultrasonic, electrical discharge, etc.)
Numerical design of devices
Optimization of energy consumption