Research

Integrated telemedical system for early detection of peripheral perfusion disorders, monitoring and personalized application of non-invasive therapies with a specific focus on patients with chronic diseases

The aim of the current project is to prepare (by industrial research and experimental development) an integrated telemedical solution for selected patient groups suffering from chronic diseases. This solution will enable the early detection, application of personalized therapies including monitoring of patients in their natural environment with the support of adherence to the proposed therapies.

English

Artificial Intelligence for Autonomous ECG Classification in Online Telemedicine Platform

The main goal of the proposed project is to build an autonomous software tool to diagnose both benignant and malignant cardiologic diseases. The proposed project is based on advanced methods of artificial intelligence; it will allow timely and affordable diagnosis for wide spectra of customers. Therefore, the implementation of the proposed project will enhance the attractivity and flexibility of MDT portfolio of products and services. This enhancement will improve MDT´s economic growth and boost its global competitiveness.

 

English

Use of laser and hybrid technologies in energy plants

The main objective of the project “Utilization of laser and hybrid technologies in power facilities” is to develop and apply laser and hybrid technologies for power facilities within the collaborative research and development project. The outputs of the project are three laser and hybrid technologies (verified technologies) those will be used in production processes of small turbines by Siemens company. Particular deliverables of the project are also technical reports and WPQR/WPS according to prescribed standards.

English

Nonlinear diffraction fiber elements for sensor systems

The research and the development in the field of fiber optic diffractive structures with non-linear change of period and their use in realization of new optical measurement system for measurement of fast changes with frequency up to tens of kHz is the main objective of the project. The design of this system can be divided into three partial goals/parts. The design of diffractive structures with non-linear change of period as nonlinear fiber Bragg gratings (NFBG) and the design of the phase mask structures and their production technology are the first goal.

English
Research
On 19.December.2019 professor Peter Jonas from Institute of Science and Technology Austria, Head of Research Group dealing with Synaptic Communication in Hippocampal Microcircuits gave a public lecture entitled “Nanophysiology of central synapses”in the lecture hall of Institute of Scientific Instruments of the CAS. The lecture is realized within the project European Structural and Investment Funds Operational Programme Research, Development and Education. continue

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