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A Virtual Reality Visualization Tool for Three-Dimensional Biomedical Nanostructures

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    SYSNO ASEP0499616
    Document TypeC - Proceedings Paper (int. conf.)
    R&D Document TypeConference Paper
    TitleA Virtual Reality Visualization Tool for Three-Dimensional Biomedical Nanostructures
    Author(s) Pajorová, E. (SK)
    Hluchý, L. (SK)
    Kostič, I. (SK)
    Pajorová, Julia (FGU-C)
    Bačáková, Markéta (FGU-C)
    Zatloukal, M. (CZ)
    Article number012001
    Source TitleJournal of Physics: Conference Series, 1098. - Bristol : IOP Publishing, 2018 - ISSN 1742-6588
    Number of pages7 s.
    Publication formOnline - E
    ActionInternational Conference on Computer Graphics and Digital Image Processing /2./
    Event date27.07.2018 - 29.07.2018
    VEvent locationBangkok
    CountryTH - Thailand
    Event typeWRD
    Languageeng - English
    CountryGB - United Kingdom
    Keywordsnanofibrous membrane ; SEM images ; digital 3D model ; filter structure model ; virtual reality
    Subject RIVJJ - Other Materials
    OECD categoryNano-processes (applications on nano-scale)
    R&D ProjectsGA17-02448S GA ČR - Czech Science Foundation (CSF)
    Institutional supportFGU-C - RVO:67985823
    EID SCOPUS85056455649
    DOI10.1088/1742-6596/1098/1/012001
    AnnotationNanoscience is the source of many advanced techniques and applications, the areas of life sciences and materials sciences included. In the field of materials, the latest technological developments have enabled the emergence of innovative materials. There are numerous of nanomaterials in the field of healthcare (nano-, bio- electronic, tools for medical diagnostics, theragnostics, etc.). It also can be noted that the involvement of nanotechnology to problems of medicine and health care is causing a revolution in the biomedical field, including nanomedicine with the emergence of new disciplines such as nanobiomechanics and nano-biology (mechanics of cells, cancer, microbiology, virology, etc.). The paper describes our new approach to creating 3D nanostructures on the SEM frame base. The impact of our research is demonstrated on the 3D digital model of nanostructures which includes 3D coordinates of nanostructures and is ready for the next research simulation process and also for virtual reality (VR) of the research results.
    WorkplaceInstitute of Physiology
    ContactLucie Trajhanová, lucie.trajhanova@fgu.cas.cz, Tel.: 241 062 400
    Year of Publishing2019
Number of the records: 1  

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