Area of research
Materials Chemistry · Public Health, Environmental and Occupational Health
Research interest
Research interests include Acute Lymphoblastic Leukemia research, Acute Myeloid Leukemia Research, Advanced X-ray Imaging Techniques, and Microstructure and mechanical properties.
In situ investigation of intermetallic compound formation during the solid Fe-liquid Al reaction by X-ray diffraction and tomography
In Situ Multimodal X-Ray Imaging and Crystal Plasticity Study of the Intragranular Stress and Orientation Distribution During Ductile Failure
Microstructure and stress mapping in 3D at industrially relevant degrees of plastic deformation
The evolution of intergranular networks during grain growth and its effect on percolation behavior
Insights into Plastic Localization by Crystallographic Slip from Emerging Experimental and Numerical Approaches
Revealing 3D intragranular micromechanical fields at triple junctions
In situ observation of crystal reorientation in polygranular graphite by synchrotron X-ray diffraction and neutron imaging
Observation of bulk plasticity in a polycrystalline titanium alloy by diffraction contrast tomography and topotomography
Multi-scale in situ mechanical investigation of the superelastic behavior of a Cu–Al–Be polycrystalline shape memory alloy
Imposing equilibrium on experimental 3-D stress fields using Hodge decomposition and FFT-based optimization
PET-guided eBEACOPP treatment of advanced-stage Hodgkin lymphoma (HD18): follow-up analysis of an international, open-label, randomised, phase 3 trial
New Features in Crystal Orientation and Phase Mapping for Transmission Electron Microscopy
In situ observation of liquid metal dealloying and etching of porous FeCr by X-ray tomography and X-ray diffraction
Quantifying microscale drivers for fatigue failure via coupled synchrotron X-ray characterization and simulations
Three-dimensional reconstruction of intragranular strain and orientation in polycrystals by near-field X-ray diffraction
Ductilisation and fatigue life enhancement of selective laser melted AlSi10Mg by friction stir processing
Using machine learning and a data-driven approach to identify the small fatigue crack driving force in polycrystalline materials
Predicting the 3D fatigue crack growth rate of small cracks using multimodal data via Bayesian networks: In-situ experiments and crystal plasticity simulations
The role of slip transfer at grain boundaries in the propagation of microstructurally short fatigue cracks in Ni-based superalloys
Sequential high-dose cytarabine and mitoxantrone (S-HAM) versus standard double induction in acute myeloid leukemia—a phase 3 study
3D characterization of partially recrystallized Al using high resolution diffraction contrast tomography
TomoBank: a tomographic data repository for computational x-ray science
Simulation of Short Fatigue Crack Propagation in a 3D Experimental Microstructure
<i>NOTCH1</i> mutation, <i>TP53</i> alteration and myeloid antigen expression predict outcome heterogeneity in children with first relapse of T-cell acute lymphoblastic leukemia
A study of deformation twinning in a titanium alloy by X-ray diffraction contrast tomography
Three-dimensional full-field X-ray orientation microscopy
Minimal residual disease analysis by eight-color flow cytometry in relapsed childhood acute lymphoblastic leukemia
Nanovoid morphology and distribution in deformed HDPE studied by magnified synchrotron radiation holotomography
Cold neutron diffraction contrast tomography of polycrystalline material
First laboratory X-ray diffraction contrast tomography for grain mapping of polycrystals