I3A - Instituto de Investigación en Ingeniería de Aragón

Technology
Technology
Technology
Technology
Technology
Health

Key Technologies

Characterization of erbium or ytterbium-doped optical fibers and waveguides and of lasers or amplifiers based on them.

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Software for simulation of optical systems, implementing volume holographic elements.

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Complete lab to record, process (chemical and physical) and characterize holograms and holographic optical elements, equipped with long coherence lasers (150mW@418nm, 6W@532nm, 30mW@633nm and...

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Shape measurement system.

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Complete system for the analysis of biological flows.

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High speed system (including a double cavity high speed laser and 5 high speed cameras).

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Design and manufacture of an external fixator for the consolidation of long bone fractures. Medicine - Prototype.

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Design of biaxial parameter control for tissue testing system incorporating linear actuators with the accuracy of nanometers, equipped with load cell and temperature control of the hydrant....

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Design and manufacture of control system of cellular stimulation parameters through control of nutrient flow depending on the peristaltic pump speed. Medicine - Prototype.

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Design and manufacture of control system of uniaxial stimulation parameters for a cellular bioreactor, with electronic control of cellular stimulation in force-position for bones and cartilage....

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Different techniques for manual embedding of optic fiber sensors on composite materials. Any sector - Prototype.

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Wireless sensor networks with latest generation and low consumption technologies, such as 802.11.15 (ZIGBEE), introducing the SMART SENSOR WIRELESS concept. Any sector - Commercial.

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Onboard monitoring system (RACING BRAVO). Any sector - Commercial.

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TECNODISCAP is developing an assessment tool based on "User Centered Design" (UCD) methodology (based on Donald Norman model). This assessment tool involving methodology aims at designing and...

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TECNODISCAP has developed ICT devices for therapeutic leisure activities for elderly people, based on popular leisure devices such as those which are Wii-like. This research line has two purposes...

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TECNODISCAP has developed an osgi4ami-tdc consisting on an open and standard communication protocol based on open, modular and interoperable middleware platform linked to different devices (...

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TECNODISCAP develop, test and validate further technology based on an innovative cost effective intelligent open platform for enhanced multisensory stimulation of people with intellectual...

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Arrhythmia risk marker extraction form ECG to quantify arrhythmia risk.  Targeting sector: Biomedical Engineering companies.

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Signal processing software for automatic ECG detection and delineation. Target sector: Biomedical Engineering companies

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Software for EGM signal processing including activation detection/delineation and computation of indices of organization, synchronization and delays. Targeting sector: Biomedical engineering...

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Analysis and interpretation of the dynamics and interactions of cardiovascular variability signals. Targeting sector: Biomedical Engineering companies, Companies developing monitoring equipment in...

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Robust estimation of cardiovascular variability signals (HRV, BPV, PTT). Targeting sector: Biomedical Engineering companies, Companies developing monitoring equipment in sports and psychology...

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Respiratory rate estimation system from PPG signal. Targeting sector: Biomedical Engineering companies.

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Signal processing software for apnea detection. Targeting sector: Biomedical Engineering companies.

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Markers for guiding the development of new agents to treat atrial fibrillation. Targeting sector: Pharmaceutical companies.

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Computational modeling and simulation tools to predict cardio-toxicity of drug compounds. Targeting sector: Pharmaceutical companies.

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Numerical simulation of human organs compartment to deferent levels (macro and micro) via own software and / or commercial software as ABAQUS, ADINA, ANSYS, etc.

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Implementation of software to evaluate the biomechanics behaviour of different kinds of prostheses, including wear of them.

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Cell/scaffold/tissue mechanical stimulation (Shear stress, traction/compression, etc).

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Mechanical characterization of tissues and biomaterials (stiffness, biodegradation, microstructure).

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Cell-biomaterial interaction (cell adhesion, proliferation, differentiation, in vivo models)

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Design and fabrication of microfuidic chips and fluidic control elements (microvales, micropumps, microflow sensors, etc.).

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The technology developed by this research line corresponds to the electrophysiology simulation codes for multi-core, mpi-based, platforms (freeware), as well as the codes for GPU platforms (under...

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Structural analysis of complex mechanical components by means of advanced finite element simulation. Study of complex problems: non-linear behaviour, advanced materials, dynamic analysis,...

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Study of the friction coefficient and rate wear in bearing materials by means of baal-on disc and pin-on-disc tribometers at different lubricants and controlled temperatures.

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