Physician & Neuroimaging Researcher
I build reproducible neuroimaging workflows across structural MRI, task and resting-state fMRI, diffusion MRI, MEG, EEG, and PET.
My work emphasizes transparent processing, quality control, cross-software validation, open science, and technically documented analysis pipelines.
| Modality | Project | Main tools | Repository | Zenodo |
|---|---|---|---|---|
| Diffusion MRI | Preprocessing, DTI, CSD, tractography, SIFT, and quantitative QC | MRtrix3, FSL Eddy | View project | 10.5281/zenodo.21650417 |
| Task fMRI | Auditory first-level analysis and cross-software replication | SPM25, FSL FEAT | View project | 10.5281/zenodo.21650414 |
| Resting-state fMRI | Functional connectomics, graph analysis, hubs, and BRAPH-ready exports | Nilearn, NetworkX, FSL, BRAPH-ready outputs | View project | 10.5281/zenodo.21650416 |
| MEG | Median-nerve ERFs, dSPM source reconstruction, and time-frequency analysis | Brainstorm, dSPM, Morlet wavelets | View project | 10.5281/zenodo.21650415 |
| Structural MRI | Tissue segmentation, quality control, global volumes, and VBM preparation | CAT26, SPM25, MATLAB | View project | 10.5281/zenodo.21650422 |
| Structural MRI | Cortical reconstruction, morphometry, regional statistics, and Freeview QC | FreeSurfer 7.4.1 | View project | 10.5281/zenodo.21650423 |
| PET | Dynamic FDG PET, SUVR, PETPVE12 PVC, regional analysis, and PSF sensitivity | FSL MCFLIRT, SPM12, PETPVE12 | View project | Pending Zenodo integration repair |
Reproducible single-subject diffusion MRI workflow using public MPI-LEMON data.
- MP-PCA denoising and Gibbs-ringing correction
- Motion, eddy-current, and outlier correction with FSL Eddy
- Diffusion tensor fitting with FA, MD, AD, and RD maps
- Single-shell constrained spherical deconvolution
- Probabilistic iFOD2 whole-brain tractography
- SIFT filtering and track-density imaging
- Automated quality-control figures and quantitative summaries
Single-subject analysis of the classic SPM Auditory dataset, implemented independently in SPM25 and FSL FEAT.
- Contrast: Listening > Rest
- Motion quality control
- First-level GLM
- Statistical maps and cluster tables
- Cross-software comparison
Ten-subject ADHD-200 preprocessed resting-state workflow using the Schaefer-100 atlas.
- Nuisance regression and temporal filtering
- Subject-level Pearson connectivity matrices
- Fisher-z group averaging
- Minimum-spanning-tree plus 15% density graph construction
- NetworkX graph metrics, communities, hubs, and small-world analysis
- BRAPH-ready matrix and label exports
Reproduction of the Brainstorm median-nerve workflow.
- Sensor-level event-related fields
- Early somatosensory topography at approximately 20 ms
- Minimum-norm dSPM source reconstruction
- Morlet time-frequency analysis from 4 to 80 Hz
Single-subject T1-weighted structural MRI workflow.
- Bias-field correction
- Grey matter, white matter, and CSF segmentation
- Spatial normalization and modulation
- CAT quality-control assessment
- Global tissue-volume extraction
- Preparation of smoothed grey matter for VBM
Single-subject cortical reconstruction and morphometry using OpenNeuro ds000114.
- Complete
recon-allcortical reconstruction - Parallel execution with
-openmp 8 - Subcortical and global volumetric statistics
- Cortical thickness, area, and volume by Desikan–Killiany region
- Coronal, sagittal, and axial Freeview quality-control figures
Completed, quality-controlled single-subject research portfolio demonstration using public OpenNeuro dataset ds002898, subject sub-01.
- 225 dynamic FDG PET frames selected from approximately 30 to 90 minutes
- 2.8 mm isotropic resampling and FSL MCFLIRT motion correction
- Static PET construction, SPM12 tissue segmentation, and PET-to-T1 coregistration
- PETPVE12 Müller–Gärtner partial-volume correction at nominal 4, 5, 6, and 8 mm PSF values
- Bilateral cerebellar-cortex SUVR and Desikan–Killiany regional summaries
- 84 primary grey-matter ROIs with median PSF CV 1.488% and maximum PSF CV 7.116%
- Final workflow validation passed
- Research portfolio demonstration only; not clinical or diagnostic software
These repositories describe planned or scaffold workflows rather than completed scientific analyses. A Zenodo DOI is added only after a completed, quality-controlled release.
| Modality | Planned workflow | Repository | Zenodo |
|---|---|---|---|
| Diffusion MRI | FSL DTIFIT tutorial with optional TOPUP/EDDY, FA/MD maps, and ROI summaries | View project | 10.5281/zenodo.21650517 |
| Structural MRI | CAT12 versus FreeSurfer morphometry agreement on OASIS-1 | View project | 10.5281/zenodo.21650518 |
| EEG | ERPs and time-frequency analysis with EEGLAB and FieldTrip | View project | 10.5281/zenodo.21650530 |
| EEG | LORETA/eLORETA source imaging and Brainstorm PTE/dPTE connectivity | View project | 10.5281/zenodo.21650521 |
Neuroimaging
SPM · FSL/FEAT · FreeSurfer · CAT · Brainstorm · MRtrix3 · PETPVE12 · BRAPH · EEGLAB · FieldTrip
Programming and reproducibility
Python · MATLAB · Bash · Git · BIDS · statistical modelling · scientific visualization
- Structural and functional brain connectivity
- Diffusion MRI and tractography
- Reproducible neuroimaging
- Multimodal integration
- Neuroimaging quality control
- Source imaging
- Graph-theoretical analysis
- Clinical and translational neuroscience
Raw neuroimaging data are generally excluded from the repositories. Each completed project documents its data source, processing decisions, software environment, outputs, and limitations.


