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Methods in Molecular Biology (Clifton, N.J.)|July 14, 2012
Noninvasive quantification of magnetic nanoparticles by means of magnetorelaxometryMaik Liebl, Dietmar EberbeckAnalytical and Bioanalytical Chemistry|November 26, 2023
Label-free quantification of host cell protein impurity in recombinant hemoglobin materialsAndré Henrion, Cristian-Gabriel Arsene, Maik Liebl, et al.Medical Physics|March 7, 2022
Experimental demonstration of improved magnetorelaxometry imaging performance using optimized coil configurationsPeter Schier, Maik Liebl, Uwe Steinhoff, et al.Physics in Medicine and Biology|June 29, 2023
Human-sized quantitative imaging of magnetic nanoparticles with nonlinear magnetorelaxometryPeter Schier, Aaron Jaufenthaler, Maik Liebl, et al.Sensors (Basel, Switzerland)|February 5, 2020
Quantitative 2D Magnetorelaxometry Imaging of Magnetic Nanoparticles using Optically Pumped MagnetometersAaron Jaufenthaler, Peter Schier, Thomas Middelmann, et al.Physics in Medicine and Biology|October 20, 2022
Developing magnetorelaxometry imaging for human applicationsSoudabeh Arsalani, Patricia Radon, Peter Schier, et al.Scientific Reports|March 23, 2019
Noninvasive monitoring of blood flow using a single magnetic microsphereMaik Liebl, Bernhard Gleich, Dietmar Eberbeck, et al.Sensors (Basel, Switzerland)|February 12, 2021
Pulsed Optically Pumped Magnetometers: Addressing Dead Time and Bandwidth for the Unshielded Magnetorelaxometry of Magnetic NanoparticlesAaron Jaufenthaler, Thomas Kornack, Victor Lebedev, et al.Biomedizinische Technik. Biomedical Engineering|October 7, 2015
Magnetorelaxometry procedures for quantitative imaging and characterization of magnetic nanoparticles in biomedical applicationsMaik Liebl, Frank Wiekhorst, Dietmar Eberbeck, et al.Journal of Biological Engineering|October 11, 2022
Quantitative imaging of magnetic nanoparticles in an unshielded environment using a large AC susceptibility arrayGuilherme Soares, Leonardo Pinto, Maik Liebl, et al.Pageof 2