Wykaz publikacji wybranego autora

Agnieszka Dróżdż, dr inż.

poprzednio: Skoczeń

adiunkt

Wydział Fizyki i Informatyki Stosowanej
WFiIS-kfmb, Katedra Fizyki Medycznej i Biofizyki


  • 2021

    [dyscyplina 1] dziedzina nauk ścisłych i przyrodniczych / nauki fizyczne

    [dyscyplina 2] dziedzina nauk inżynieryjno-technicznych / inżynieria biomedyczna (50%)


  • 2019

    [dyscyplina 1] dziedzina nauk ścisłych i przyrodniczych / nauki fizyczne


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0002-4604-4557 orcid iD

ResearcherID: AAR-2015-2020

Scopus: 23036951000

PBN: 5e709298878c28a047398b14

OPI Nauka Polska

System Informacyjny AGH (SkOs)





Liczba pozycji spełniających powyższe kryteria selekcji: 60, z ogólnej liczby 60 publikacji Autora


1
  • Assessment of the biodistribution and potential side effects of \emph {in vivo} exposition to iron oxides nanoparticles by means of total X-ray fluorescence spectroscopy
2
  • Assessment of the impact of the measurement mode on the results of spectral and biochemical analysis carried out by means of fourier transform infrared microspectroscopy
3
  • Assessment of the toxicity and possible therapeutic effects of iron oxide nanoparticles in \emph{in vitro} cellular models
4
  • Atomic and molecular biospectroscopy in the research of glioblastoma multiforme pathogenesis
5
  • Badania toksyczności magnetycznych nanocząstek tlenku żelaza \emph{in vivo} i \emph{in vitro}
6
  • Badanie długofalowych zmian pierwiastkowych powstałych w wątrobie i nerkach po podaniu nanocząstek tlenku żelaza w otoczce z D-Mannitolu z zastosowaniem metody TXRF i $\mu$XRF
7
  • Biochemical anomalies of nervous tissue resulting from mechanical brain injury can be characterized using the techniques of vibrational microspectroscopy
8
  • Biochemical changes indicate developmental stage in the hippocampal formation
9
  • Biochemical changes occurring in the liver and kidneys of rat after intravenous injection of the D-mannitol coated superparamagnetic iron oxide nanoparticles
10
  • Biochemical changes of macrophages and U87MG cells occurring as a result of the exposure to iron oxide nanoparticles detected with the Raman microspectroscopy
11
  • Biomolecular topography of glioblastoma multiforme developed in the rat brain – a FTIR study
12
  • Comparison of elemental anomalies following implantation of different cell lines of glioblastoma multiforme in the rat brain: a total reflection X-ray fluorescence spectroscopy study
13
  • Comparison of ultrasmall IONPs and Fe salts biocompatibility and activity in multi-cellular in vitro models
14
15
  • Elemental changes occurring in selected rat organs after iron oxide nanoparticles administration studied by TXRF and synchrotron XRF techniques
16
  • Elemental changes of brain accompanying the glioblastoma multiforme development – the study using the total reflection x-ray fluorescence
17
18
  • Evaluation of biological response to iron oxide nanoparticles in in vitro cellular models by Raman spectroscopy
19
  • Even low doses of iron oxides nanoparticles may disturb the elemental composition of selected body organs - preliminary results obtained for rats using TXRF spectroscopy
20
  • FTIR and Raman microspectroscopy supported with multivariate methods as valuable tools in the studies of mechanisms and diagnostics of various pathologies
21
  • FTIR microspectroscopy revealed biochemical changes in liver and kidneys as a result of exposure to low dose of iron oxide nanoparticles
22
  • Generation of lipid droplets in the heart after administration of iron oxide nanoparticles in a D-mannitol coating
23
  • In vitro and in vivo studies of iron oxide nanoparticles toxicity with theranostic potential
24
  • Influence of measurement mode on the results of glioblastoma multiforme analysis with the FTIR microspectroscopy
25
  • Influence of the measurement mode on the results of spectral and biochemical analysis carried out with FTIR microspectroscopy