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Artikel 1 A Nanoparticle Ink Allowing the High Precision Visualization of Tissue Engineered Scaffolds by MRI (Small 30/2023)
Enthalten in Small Bd. 19, 2023, Nr. 30. 1 S.
Online Ressource
Artikel 2 A Nanoparticle Ink Allowing the High Precision Visualization of Tissue Engineered Scaffolds by MRI
Enthalten in Small 25.03.2023. 16 S.
Online Ressource
Artikel 3 Ferritin Protein Regulates the Degradation of Iron Oxide Nanoparticles
Enthalten in Small Bd. 13, 2017, Nr. 2. 13 S.
Online Ressource
Artikel 4 Biodegradation Mechanisms of Iron Oxide Monocrystalline Nanoflowers and Tunable Shield Effect of Gold Coating
Enthalten in Small Bd. 10, 2014, Nr. 16: 3325-3337. 13 S.
Online Ressource
Artikel 5 High Relaxivities and Strong Vascular Signal Enhancement for NaGdF 4 Nanoparticles Designed for Dual MR/Optical Imaging
Enthalten in Advanced healthcare materials Bd. 2, 2013, Nr. 11: 1478-1488. 11 S.
Online Ressource
Artikel 6 Imaging: High Relaxivities and Strong Vascular Signal Enhancement for NaGdF 4 Nanoparticles Designed for Dual MR/Optical Imaging (Adv. Healthcare Mater. 11/2013)
Enthalten in Advanced healthcare materials Bd. 2, 2013, Nr. 11: 1477-1477. 1 S.
Online Ressource
Artikel 7 A Universal Scaling Law to Predict the Efficiency of Magnetic Nanoparticles as MRI T2‐Contrast Agents
Enthalten in Advanced healthcare materials Bd. 1, 2012, Nr. 4: 502-512. 11 S.
Online Ressource
Artikel 8 Monte Carlo simulations of the magnetic behaviour of iron oxide nanoparticle ensembles: taking size dispersion, particle anisotropy, and dipolar interactions into account
Enthalten in The European physical journal / B / Condensed matter and complex systems Bd. 95, 21.12.2022, Nr. 12, date:12.2022: 1-17
Online Ressource
Artikel 9 Sample Shuttling Relaxometry of Contrast Agents: NMRD Profiles above 1 T with a Single Device
In: Applied magnetic resonance Bd. 47, 30.1.2016, Nr. 3, date:3.2016: 237-246
Online Ressource


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