Technologies

In this section it is possible to view, also through targeted research, the technologies inserted in the PROMO-TT Database. For further information on the technologies and to contact the CNR Research Teams who developed them, it is necessary to contact the Project Manager (see the references at the bottom of each record card).

Displaying results 1 - 6 of 6

# Record card
69
Description

The aim of the present invention is to develop a modular scintigraphic device, with high spatial resolution, capable of creating investigation areas of various shapes and sizes, of compact form and of being used in different types of applications.

Thematic areas
Health & Biotech / Bio-medicals
Health & Biotech / Medical imaging & equipment
Health & Biotech / Diagnostic, Medical imaging & advanced bioimaging
Health & Biotech / Medical Device
# Record card
42
Description

The present invention relates to a gamma camera for intracavitary use, which is widely used in the field of radio-guided surgery (intra-operative and laparoscopic and robotic-assisted) for the localisation of lymph nodes and tumours and/or other pathologies. The aim of the present invention is to make available an intraoperative tool able to overcome the drawbacks of the present known art.

Thematic areas
Health & Biotech / Bio-medicals
Health & Biotech / Medical imaging & equipment
Health & Biotech / Diagnostic, Medical imaging & advanced bioimaging
Health & Biotech / Medical Device
# Record card
160
Description

At IFN-CNR, in collaboration with Politecnico di Milano-Department of Physics, we have developed Raman microscopy approaches compatible with the study and characterization of biological and industrial samples. In detail, our facility houses a self-built spontaneous confocal Raman microscope with the following characteristics: two excitation lasers (660nm and 785nm), inverted microscope (Olympus IX-73) and Princeton spectrometer / CCD.

Thematic areas
Chemicals & Physics
Chemicals & Physics / Imaging & image processing
Chemicals & Physics / Atomic and molecular spectroscopy
Health & Biotech
Health & Biotech / Diagnostic, Medical imaging & advanced bioimaging
Health & Biotech / Biosensors
# Record card
258
Description

The development of new materials with near-infrared emission (NIR, 700 – 1000 nm) represent an important target in the technological progress of innovative active components for OLED devices (including flexible ones), surveillance systems, autonomous driving, night vision sensors, fiber optic telecommunications and medical systems. In all these fields it still lacks a commercial NIR-OLED technology.

Thematic areas
Chemicals & Physics
Chemicals & Physics / Micro and nanotechnology related to physical, chemical and exact sciences
Health & Biotech
Health & Biotech / Diagnostic, Medical imaging & advanced bioimaging
ICT & Electronics
ICT & Electronics / Optoacustic sensors, Optoelectronic devices
Health & Biotech / Medical Device
Energy and environmental sustainability
Energy and environmental sustainability / Environmental engineering/technologies
Chemicals & Physics / Inorganic substances
Energy and environmental sustainability / Sensory
Chemicals & Physics / Organic substances
Chemicals & Physics / Colours & dyes
Materials
# Record card
76
Description

The platform allows acquisition of data from commercial and custom sensors. By now, the system has been embedded in a wearable wristband where elastomeric based strain gauge have been integrated to detect fine hand/wrist/arm movements. The platform integrates inertial sensors (accelerometers, gyroscopes) to acquire more details about the subject movements. A sensor-fusion algorithm enables advanced movement recognition (gesture, 3D orientation). A machine-learning algorithm is in development to increase the performance of the platform.

Thematic areas
Health & Biotech / Smart Devices for Health and Wellness
ICT & Electronics / Internet of Things
ICT & Electronics / Electronics and microelectronics
ICT & Electronics / Information processing, information system, workflow management
# Record card
256
Description

Environmental monitoring is a rapidly growing field, both in academia and industry. The use of wearables for environmental monitoring is a promising technique, as it allows data to be collected continuously and comprehensively. The main problem with using wearables for environmental monitoring is the size and weight of the system, as well as the high degree of specialization required to develop a fully functional device.

Thematic areas
ICT & Electronics
ICT & Electronics / Sensor/multi-sensor technology, instrumentation
Energy and environmental sustainability
Energy and environmental sustainability / Sensory
Energy and environmental sustainability / Wearable technologies
Health & Biotech
Health & Biotech / Smart Devices for Health and Wellness
ICT & Electronics / Internet of Things
Tourism, social sciences and cultural heritage / Safety and security