National Repository of Grey Literature 6 records found  Search took 0.01 seconds. 
Design of colagen capilary beds phantom for cells accumulation testing and blood vessels blocation
Eichner, Dominik ; Skopalík, Josef (referee) ; Čmiel, Vratislav (advisor)
This bacalor thesis describes the adhesion of cells marked with iron nanoparticles to the capillary wall which is exposed to magnetic force. First, it characterize the bloodstream and speed of flowing blood. It also discusses the general characteristic of the nanoparticles useful in medicine, description of used microscopes and lastly proper methods of cultivation cells in vitro. The practical part tests the adhesion of the cells at different speeds, in different sized capillaries using magnetic forces.
Fluorescence of organic dye in free form or bound on metal nanoparticles analysis using confocal microscopy
Mocko, Štefan ; Chmelíková, Larisa (referee) ; Čmiel, Vratislav (advisor)
This bachelor`s thesis deals with the long-term analysis of the fluorescence of rhodamine dye, which is linked to the ferric SPIO nanoparticles. The first part introduces the necessary scientific basis for understanding the physical phenomenon of fluorescence. It also focuses on the hardware and software for the development of long-term analysis of fluorescence for mesenchymal stem cells.Finally, there is described an analytical software to work with measured data, which was developed for this work.
Ferrous nanoparts localization in inner organelles
Solař, Jan ; Janoušek, Oto (referee) ; Čmiel, Vratislav (advisor)
This bachelor‘s thesis describes a behavior of iron nanoparticles in human mesenchymal stem cells. First section deals with methods of fluorescent labelling of organelles and nanoparticles and settings of confocal microscope for their detection. Next section describes the iron nanoparticles metabolism and accumulation in cells. Finally, there is a section about the developement of the software utility for the localization and for the quantitative analysis of the fluorescence organelles and nanoparticles inside the living cells.
Design of colagen capilary beds phantom for cells accumulation testing and blood vessels blocation
Eichner, Dominik ; Skopalík, Josef (referee) ; Čmiel, Vratislav (advisor)
This bacalor thesis describes the adhesion of cells marked with iron nanoparticles to the capillary wall which is exposed to magnetic force. First, it characterize the bloodstream and speed of flowing blood. It also discusses the general characteristic of the nanoparticles useful in medicine, description of used microscopes and lastly proper methods of cultivation cells in vitro. The practical part tests the adhesion of the cells at different speeds, in different sized capillaries using magnetic forces.
Fluorescence of organic dye in free form or bound on metal nanoparticles analysis using confocal microscopy
Mocko, Štefan ; Chmelíková, Larisa (referee) ; Čmiel, Vratislav (advisor)
This bachelor`s thesis deals with the long-term analysis of the fluorescence of rhodamine dye, which is linked to the ferric SPIO nanoparticles. The first part introduces the necessary scientific basis for understanding the physical phenomenon of fluorescence. It also focuses on the hardware and software for the development of long-term analysis of fluorescence for mesenchymal stem cells.Finally, there is described an analytical software to work with measured data, which was developed for this work.
Ferrous nanoparts localization in inner organelles
Solař, Jan ; Janoušek, Oto (referee) ; Čmiel, Vratislav (advisor)
This bachelor‘s thesis describes a behavior of iron nanoparticles in human mesenchymal stem cells. First section deals with methods of fluorescent labelling of organelles and nanoparticles and settings of confocal microscope for their detection. Next section describes the iron nanoparticles metabolism and accumulation in cells. Finally, there is a section about the developement of the software utility for the localization and for the quantitative analysis of the fluorescence organelles and nanoparticles inside the living cells.

Interested in being notified about new results for this query?
Subscribe to the RSS feed.