Meno a priezvisko:
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RNDr. Andrej Krafčík, PhD.
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Typ dokumentu:
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Vedecko/umelecko-pedagogická charakteristika osoby
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Názov vysokej školy:
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Univerzita Komenského v Bratislave
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Sídlo vysokej školy:
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Šafárikovo námestie 6, 818 06 Bratislava
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III.a - Zamestnanie-pracovné zaradenie | III.b - Inštitúcia | III.c - Časové vymedzenie |
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Asistent pre matematiku a fyziku | Strojnícka fakulta, Slovenská technická univerzita | 09.2012-11.2012 |
Vedecký pracovník | Ústav merania, Slovenská Akadémia Vied | 12.2012-doteraz |
IV.a - Popis aktivity, názov kurzu (ak išlo o kurz), iné | IV.b - Názov inštitúcie | IV.c - Rok |
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Moderná mikroskopia, digitálne spracovanie obrazu a správna laboratórna prax | Fakulta matematiky, fyziky a informatiky, Univerzita Komenského | 2007 |
Krafcik, A., Babinec, P., Strbak, O., Frollo, I. A theoretical analysis of magnetic particle alignment in external magnetic fields affected by viscosity and brownian motion (2021) Applied Sciences (Switzerland), 11 (20), art. no. 9651, . Cited 1 time. DOI: 10.3390/app11209651
Krafcik, A., Babinec, P., Babincova, M., Frollo, I. High gradient magnetic separation with involved Basset history force: Configuration with single axial wire (2019) Powder Technology, 347, pp. 50-58. Cited 11 times. DOI: 10.1016/j.powtec.2019.02.044
Krafcik, A., Babinec, P., Frollo, I. Computational analysis of magnetic field induced deposition of magnetic particles in lung alveolus in comparison to deposition produced with viscous drag and gravitational force (2015) Journal of Magnetism and Magnetic Materials, 380, pp. 46-53. Cited 14 times. DOI: 10.1016/j.jmmm.2014.10.018
Durdík, S., Krafčík, A., Babincová, M., Babinec, P. Conceptual design of integrated microfluidic system for magnetic cell separation, electroporation, and transfection (2013) Physica Medica, 29 (5), pp. 562-567. Cited 7 times. DOI: 10.1016/j.ejmp.2012.11.003
Babinec, P., Krafčík, A., Babincová, M., Rosenecker, J. Dynamics of magnetic particles in cylindrical Halbach array: Implications for magnetic cell separation and drug targeting (2010) Medical and Biological Engineering and Computing, 48 (8), pp. 745-753. Cited 26 times. DOI: 10.1007/s11517-010-0636-8
Krafcik, A., Babinec, P., Strbak, O., Frollo, I. A theoretical analysis of magnetic particle alignment in external magnetic fields affected by viscosity and brownian motion (2021) Applied Sciences (Switzerland), 11 (20), art. no. 9651, . Cited 1 time. DOI: 10.3390/app11209651
Krafcik, A., Babinec, P., Babincova, M., Frollo, I. Importance of basset history force for the description of magnetically driven motion of magnetic particles in air (2020) Measurement Science Review, 20 (2), pp. 50-58. Cited 2 times. DOI: 10.2478/msr-2020-0007
Krafcik, A., Stein, G.J., Frollo, I. FEM Model of Oscillating Ferromagnetic Yoke in the Magnetic Field of a Permanent Magnet with and without a Short-Circuited Coil (2020) IEEE Transactions on Magnetics, 56 (3), art. no. 8959361. DOI: 10.1109/TMAG.2019.2961310
Krafcik, A., Babinec, P., Babincova, M., Frollo, I. High gradient magnetic separation with involved Basset history force: Configuration with single axial wire
(2019) Powder Technology, 347, pp. 50-58. Cited 9 times. DOI: 10.1016/j.powtec.2019.02.044
Krafcik, A., Babinec, P., Frollo, I. Stokes versus Basset: Comparison of forces governing motion of small bodies with high acceleration
(2018) European Journal of Physics, 39 (3), art. no. 035805, . Cited 1 time. DOI: 10.1088/1361-6404/aaabc7
Krafcik, A., Babinec, P., Babincova, M., Frollo, I. Importance of basset history force for the description of magnetically driven motion of magnetic particles in air (2020) Measurement Science Review, 20 (2), pp. 50-58. Cited 2 times. DOI: 10.2478/msr-2020-0007
Citácia:
Premlata, A.R., Wei, H.-H. Atypical non-Basset particle dynamics due to hydrodynamic slip (2020) Physics of Fluids, 32 (9), art. no. 097109, . Cited 3 times. DOI: 10.1063/5.0021986
Krafcik, A., Babinec, P., Babincova, M., Frollo, I. High gradient magnetic separation with involved Basset history force: Configuration with single axial wire (2019) Powder Technology, 347, pp. 50-58. Cited 9 times. DOI: 10.1016/j.powtec.2019.02.044
Citácia:
Cao, Q., Fan, Q., Chen, J., Ding, A., Li, H., Han, X. Magnetically tunable distribution pattern of magnetic particles in a micro-particle sedimentation system (2020) Powder Technology, 370, pp. 147-158. Cited 3 times. DOI: 10.1016/j.powtec.2020.05.017
Krafcik, A., Babinec, P., Babincova, M., Frollo, I. High gradient magnetic separation with involved Basset history force: Configuration with single axial wire (2019) Powder Technology, 347, pp. 50-58. Cited 9 times. DOI: 10.1016/j.powtec.2019.02.044
Citácia:
Xue, Z., Wang, Y., Zheng, X., Lu, D., Li, X. Particle capture of special cross-section matrices in axial high gradient magnetic separation: A 3D simulation (2020) Separation and Purification Technology, 237, art. no. 116375, . Cited 18 times. DOI: 10.1016/j.seppur.2019.116375
Krafcik, A., Babinec, P., Frollo, I. Computational analysis of magnetic field induced deposition of magnetic particles in lung alveolus in comparison to deposition produced with viscous drag and gravitational force (2015) Journal of Magnetism and Magnetic Materials, 380, pp. 46-53. Cited 13 times. DOI: 10.1016/j.jmmm.2014.10.018
Citácia:
Saadat, M., Manshadi, M.K.D., Mohammadi, M., Zare, M.J., Zarei, M., Kamali, R., Sanati-Nezhad, A. Magnetic particle targeting for diagnosis and therapy of lung cancers (2020) Journal of Controlled Release, 328, pp. 776-791. Cited 21 times. DOI: 10.1016/j.jconrel.2020.09.017
Krafcik, A., Babinec, P., Frollo, I. Computational analysis of magnetic field induced deposition of magnetic particles in lung alveolus in comparison to deposition produced with viscous drag and gravitational force (2015) Journal of Magnetism and Magnetic Materials, 380, pp. 46-53. Cited 13 times. DOI: 10.1016/j.jmmm.2014.10.018
Citácia:
Miranda, M.S., Rodrigues, M.T., Domingues, R.M.A., Costa, R.R., Paz, E., Rodríguez-Abreu, C., Freitas, P., Almeida, B.G., Carvalho, M.A., Gonçalves, C., Ferreira, C.M., Torrado, E., Reis, R.L., Pedrosa, J., Gomes, M.E. Development of Inhalable Superparamagnetic Iron Oxide Nanoparticles (SPIONs) in Microparticulate System for Antituberculosis Drug Delivery (2018) Advanced Healthcare Materials, 7 (15), art. no. 1800124, . Cited 22 times. DOI: 10.1002/adhm.201800124
APVV, MRCartilage - Automatický nástroj na vyhodnocovanie kvantitatívnych MRI štúdií kĺbovej chrupavky v čase / Automatic data evaluation tool from the longitudinal quantitative MRI studies of articular cartilage (investigator)
APVV, ETMP – Vývoj a realizácia etalónu statického magnetického poľa na báze magnetickej rezonancie (spoluriešiteľ) / Development and realisation of the standard of the static magnetic field based on a magnetic resonance (investigator)
APVV, KompMag – Výskum komparatívnych zobrazovacích metód na báze magnetickej rezonancie na diagnostiku neurologických a muskuloskeletálnych ochorení (spoluriešiteľ) / Research of comparative imaging methods based on magnetic resonance for diagnostics of neurological and musculoskeletal diseases (investigator)
APVV, FerroQuant – Vývoj diagnostického nástroja pre kvantitatívne MRI zobrazovanie biogénneho železa v klinickej praxi (spoluriešiteľ) / Development of a diagnostic tool for quantitative MRI imaging of biogenic iron in clinical practice (investigator)
VII.a - Aktivita, funkcia | VII.b - Názov inštitúcie, grémia | VII.c - Časové vymedzenia pôsobenia |
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Asistent pre matematiku a fyziku | Strojnícka fakulta, Slovenská technická univerzita | 09.2012-11.2012 |
Oponentúry záverečných prác / Opponents of final theses:
A) Bakalárske / Bachelor‘s:
2010 Stehlík P., FMFI UK: Separácia bunkových populácií nádorových buniek pomocou prietokovej cytometrie / Separation of tumor cell populations using flow cytometry.
2012 Olas A., FMFI UK: Magnetické nanočastice ako mediátory v elektromagnetickej hypertermii / Magnetic nanoparticles as mediators in electromagnetic hyperthermia.
2013 Stančiakova K., FMFI UK: Vplyvy špecifických faktorov na crustacea genus Artemia / Effects of specific physical factors on crustacean of genus Artemia.
2017 Hausner M., FEI STU: Modelovanie šírenia elektrickej aktivity v srdcovom tkanive / Simulation of evolution of electric activity in heart tissue.
2019 Budaj M., FEI STU: Modelovanie vplyvu anizotropie na elektrickú aktivitu srdcového tkaniva / Modeling of influence of anisotropy on electric activity of heart tissue.
2021 Egressy S., FEI STU: Návrh gradientných cievok pre spektrometer MiniSpec / Design of gradient coils for MiniSpec spectrometer.
2021 Tánczos I., FEI STU: Návrh a implementácia software-ových rozšírení na riadenie celotelového MRI tomografu / Design and implementation of software extensions to control a whole-body MRI tomograph.
2022 Labovský A., Fakulta zdravotníctva, Katolícka Univerzita v Ružomberku: Funkčná magnetická rezonancia a jej využitie / Functional magnetic resonance and its use.
B) Diplomové / Diploma:
2014 Olas A., FMFI UK: Využitie magnetozómov v terapii mozgových nádorov / Using of magnetosoms in brain tumor therapy.
2015 Hollý S., FMFI UK: Aplikácia termosenzitívnych magnetozómov v terapii nádorov / Application of thermosensitive magnetosoms in tumor therapy.
2017 Palenčár J., FEI STU: Model elektrickej aktivity srdca / Model of heart electric activity.
C) Dizertačné / Dissertation:
2018 Vrbovská H., FMFI UK: Funkcionálne nanoštruktúry ako cielené prenášače liečiv v terapii / Functional nanostructures as target carriers in therapy.