Magnus Röding

Visar 41 publikationer

2023

Controlling the structure of spin-coated multilayer ethylcellulose/hydroxypropylcellulose films for drug release

Pierre Carmona, Jens Poulsen, Jan Westergren et al
International Journal of Pharmaceutics. Vol. 644
Artikel i vetenskaplig tidskrift
2023

Convolution Neural Networks and Position Averaged Convergent Beam Electron Diffraction for Determining the Structure of 2D Materials

Andrew Yankovich, Magnus Röding, Victor Wåhlstrand Skärström et al
Microscopy and Microanalysis. Vol. 29 (1), p. 691-693
Artikel i vetenskaplig tidskrift
2023

Structural formation during bread baking in a combined microwave-convective oven determined by sub-second in-situ synchrotron X-ray microtomography

Florian Schott, Sven Isaksson, Emanuel Larsson et al
Food Research International. Vol. 173
Artikel i vetenskaplig tidskrift
2022

Together is Better: mRNA Co-Encapsulation in Lipoplexes is Required to Obtain Ratiometric Co-Delivery and Protein Expression on the Single Cell Level

Heyang Zhang, Jeroen Bussmann, Florian H. Huhnke et al
Advanced Science. Vol. 9 (4)
Artikel i vetenskaplig tidskrift
2022

Machine learning-accelerated small-angle X-ray scattering analysis of disordered two- and three-phase materials

Magnus Röding, Piotr Tomaszewski, Shun Yu et al
Frontiers in Materials. Vol. 9
Artikel i vetenskaplig tidskrift
2022

Structure formation and coarsening kinetics of phase-separated spin-coated ethylcellulose/hydroxypropylcellulose films

Pierre Carmona, Magnus Röding, Aila Särkkä et al
Soft Matter. Vol. 18 (16), p. 3206-3217
Artikel i vetenskaplig tidskrift
2022

Inverse design of anisotropic spinodoid materials with prescribed diffusivity

Magnus Röding, Victor Wåhlstrand Skärström, Niklas Lorén
Scientific Reports. Vol. 12 (1)
Artikel i vetenskaplig tidskrift
2022

Visualisation of individual dopants in a conjugated polymer: sub-nanometre 3D spatial distribution and correlation with electrical properties

Gustav Persson, Emmy Järsvall, Magnus Röding et al
Nanoscale. Vol. 14 (41), p. 15404-15413
Artikel i vetenskaplig tidskrift
2021

Tessellation-based stochastic modelling of 3D coating structures imaged with FIB-SEM tomography

Philip Townsend, Torben Nilsson Pingel, Niklas Lorén et al
Computational Materials Science. Vol. 197
Artikel i vetenskaplig tidskrift
2021

Structure evolution during phase separation in spin-coated ethylcellulose/ hydroxypropylcellulose films

Pierre Carmona, Magnus Röding, Aila Särkkä et al
Soft Matter. Vol. 17 (14), p. 3913-3922
Artikel i vetenskaplig tidskrift
2021

Stochastic modelling of 3D fiber structures imaged with X-ray microtomography

Philip Townsend, Emanuel Larsson, Tomas Karlson et al
Computational Materials Science. Vol. 194
Artikel i vetenskaplig tidskrift
2021

Three-dimensional reconstruction of porous polymer films from FIB-SEM nanotomography data using random forests

Magnus Röding, Cecilia Fager, A. Olsson et al
Journal of Microscopy. Vol. 281 (1), p. 76-86
Artikel i vetenskaplig tidskrift
2021

Correlating 3D porous structure in polymer films with mass transport properties using FIB-SEM tomography

Cecilia Fager, Tobias Gebäck, Johan Hjärtstam et al
Chemical Engineering Science: X. Vol. 12
Artikel i vetenskaplig tidskrift
2021

New characterization measures of pore shape and connectivity applied to coatings used for controlled drug release

Sandra Eriksson Barman, Cecilia Fager, Magnus Röding et al
Journal of Pharmaceutical Sciences. Vol. 110 (7), p. 2753-2764
Artikel i vetenskaplig tidskrift
2021

DeepFRAP: Fast fluorescence recovery after photobleaching data analysis using deep neural networks

Victor Wåhlstrand Skärström, Annika Krona, Niklas Lorén et al
Journal of Microscopy. Vol. 282 (2), p. 146-161
Artikel i vetenskaplig tidskrift
2021

Large-Scale Statistical Learning for Mass Transport Prediction in Porous Materials Using 90,000 Artificially Generated Microstructures

Benedikt Prifling, Magnus Röding, Philip Townsend et al
Frontiers in Materials. Vol. 8
Artikel i vetenskaplig tidskrift
2021

Convolutional neural networks for segmentation of FIB-SEM nanotomography data from porous polymer films for controlled drug release

Fredrik Skärberg, Cecilia Fager, Francisco Mendoza-Lara et al
Journal of Microscopy. Vol. 283 (1), p. 51-63
Artikel i vetenskaplig tidskrift
2020

Optimization of FIB-SEM Tomography and Reconstruction for Soft, Porous, and Poorly Conducting Materials

Cecilia Fager, Magnus Röding, Anna Olsson et al
Microscopy and Microanalysis. Vol. 26 (4), p. 837-845
Artikel i vetenskaplig tidskrift
2020

3D high spatial resolution visualisation and quantification of interconnectivity in polymer films

Cecilia Fager, Sandra Eriksson Barman, Magnus Röding et al
International Journal of Pharmaceutics. Vol. 587
Artikel i vetenskaplig tidskrift
2020

Predicting permeability via statistical learning on higher-order microstructural information

Magnus Röding, Zheng Ma, Salvatore Torquato
Scientific Reports. Vol. 10 (1)
Artikel i vetenskaplig tidskrift
2018

Single particle raster image analysis of diffusion for particle mixtures

Marco Longfils, Magnus Röding, Annika Altskär et al
Journal of Microscopy. Vol. 269 (3), p. 269-281
Artikel i vetenskaplig tidskrift
2018

Massively parallel approximate Bayesian computation for estimating nanoparticle diffusion coefficients, sizes and concentrations using confocal laser scanning microscopy

Magnus Röding, Markus Billeter
Journal of Microscopy. Vol. 271 (2), p. 174-182
Artikel i vetenskaplig tidskrift
2018

Computational Screening of Diffusive Transport in Nanoplatelet-Filled Composites: Use of Graphene to Enhance Polymer Barrier Properties

Magnus Röding, Karolina Gaska, Roland Kádár et al
ACS Applied Nano Materials. Vol. 1 (1), p. 160-167
Artikel i vetenskaplig tidskrift
2017

Heterogeneity in the fluorescence of graphene and graphene oxide quantum dots

S. J. Bradley, Renee Kroon, G. Laufersky et al
Mikrochimica Acta. Vol. 184 (3), p. 871-878
Artikel i vetenskaplig tidskrift
2017

Functional regression-based fluid permeability prediction in monodisperse sphere packings from isotropic two-point correlation functions

Magnus Röding, Peter Svensson, Niklas Lorén
Computational Materials Science. Vol. 134, p. 126-131
Artikel i vetenskaplig tidskrift
2016

Computational high-throughput screening of fluid permeability in heterogeneous fiber materials

Magnus Röding, Erich Schuster, Katarina Logg et al
Soft Matter. Vol. 12 (29), p. 6293-6299
Artikel i vetenskaplig tidskrift
2015

Magnetic alignment of nontronite dispersions

M. MacGregor-Ramiasa, Christoffer Abrahamsson, Magnus Röding et al
Applied Clay Science. Vol. 116-117, p. 167-174
Artikel i vetenskaplig tidskrift
2014

Multi-scale characterization of pasta during cooking using microscopy and real-time magnetic resonance imaging

Diana Bernin, Thomas Steglich, Magnus Röding et al
Food Research International. Vol. 66, p. 132-139
Artikel i vetenskaplig tidskrift
2014

Identifying directional persistence in intracellular particle motion using Hidden Markov Models

Magnus Röding, M. Guo, David A. Weitz et al
Mathematical Biosciences. Vol. 248 (1), p. 140-145
Artikel i vetenskaplig tidskrift
2014

On-chip light sheet illumination enables diagnostic size and concentration measurements of membrane vesicles in biofluids

Hendrik Deschout, K. Raemdonck, S. Stremersch et al
Nanoscale. Vol. 6 (3), p. 1741-1747
Artikel i vetenskaplig tidskrift
2014

Microstructure and water distribution of commercial pasta studied by microscopy and 3D magnetic resonance imaging

Thomas Steglich, Diana Bernin, Magnus Röding et al
Food Research International. Vol. 62, p. 644-652
Artikel i vetenskaplig tidskrift
2014

Estimation of mass thickness response of embedded aggregated silica nanospheres from high angle annular dark-field scanning transmission electron micrographs

Matias Nordin, Christoffer Abrahamsson, Charlotte Hamngren Blomqvist et al
Journal of Microscopy. Vol. 253 (2), p. 166-170
Artikel i vetenskaplig tidskrift
2013

Disposable microfluidic chip with integrated light sheet illumination enables diagnostics based on membrane vesicles

Hendrik Deschout, K. Raemdonck, S. Stremersch et al
17th International Conference on Miniaturized Systems for Chemistry and Life Sciences, MicroTAS 2013; Freiburg; Germany; 27 October 2013 through 31 October 2013. Vol. 3, p. 2010-2012
Paper i proceeding
2013

Measuring absolute nanoparticle number concentrations from particle count time series

Magnus Röding, Hendrik Deschout, Kevin Braeckmans et al
Journal of Microscopy. Vol. 251 (1), p. 19-26
Artikel i vetenskaplig tidskrift
2013

Automatic Particle Detection in Microscopy Using Temporal Correlations

Magnus Röding, Hendrik Deschout, Thomas Martens et al
Microscopy Research and Technique. Vol. 76 (10), p. 997-1006
Artikel i vetenskaplig tidskrift
2013

Self-calibrated concentration measurements of polydisperse nanoparticles

Magnus Röding, Hendrik Deschout, Kevin Braeckmans et al
Journal of Microscopy. Vol. 252 (1), p. 79-88
Artikel i vetenskaplig tidskrift
2012

The gamma distribution model for pulsed-field gradient NMR studies of molecular-weight distributions of polymers

Magnus Röding, Diana Bernin, Jenny Jonasson et al
Journal of Magnetic Resonance. Vol. 222, p. 105-111
Artikel i vetenskaplig tidskrift
2011

Concentration measurements in single particle microscopy

Magnus Röding
Licentiatavhandling
2011

Hemocompatibility of siRNA loaded dextran nanogels

B Naeye, H Deschout, Magnus Röding et al
Biomaterials. Vol. 32 (34), p. 9120-9127
Artikel i vetenskaplig tidskrift
2011

Measuring absolute number concentrations of nanoparticles using single-particle tracking

Magnus Röding, Hendrik Deschout, Kevin Braeckmans et al
Physical Review E. Vol. 84 (3)
Artikel i vetenskaplig tidskrift

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Visar 1 forskningsprojekt

2018–2020

CoSiMa - Koncept för industriell utveckling av framtidens hållbara mjuka material

Tobias Gebäck Tillämpad matematik och statistik
Lars Nordstierna Lars Evenäs Group
Magnus Röding Tillämpad matematik och statistik
Eva Olsson Eva Olsson Group
Aila Särkkä Tillämpad matematik och statistik
Niklas Lorén Eva Olsson Group
VINNOVA

Det kan finnas fler projekt där Magnus Röding medverkar, men du måste vara inloggad som anställd på Chalmers för att kunna se dem.