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Updated: May 22, 2026

Registered Bioimaging of Nanomaterials for Diagnostic and Therapeutic Monitoring
Published on: December 9, 2010
A multi-center study: intra-scan and inter-scan variability of diffusion spectrum imaging.
A Lemkaddem1, A Daducci, S Vulliemoz
1Ecole Polythechnique Fédéral de Lausanne, Signal Processing Laboratories (LTS5), Lausanne, Switzerland. alia.lemkaddem@epfl.ch
Pooling diffusion spectrum imaging (DSI) data from identical scanners across sites is feasible. Reproducibility is high for intra-scanner and twin-scanner settings, supporting cross-site data aggregation.
Area of Science:
- Neuroimaging
- Medical Physics
- Data Science
Background:
- Diffusion Spectrum Imaging (DSI) enables detailed brain white matter tract analysis.
- Standardizing DSI data acquisition across multiple sites and scanners is crucial for large-scale studies.
- Variability in DSI data can arise from different scanner hardware and configurations.
Purpose of the Study:
- To assess the feasibility of pooling Diffusion Spectrum Imaging (DSI) data acquired from four scanners at three different sites.
- To quantify the reproducibility and variability of DSI scalar maps (ADC, FA, GFA) across scanners and sites.
- To evaluate the impact of identical versus different scanner configurations on data consistency.
Main Methods:
- Extracted scalar maps (ADC, FA, GFA) from DSI data.
- Performed region-based and tract-based analyses to measure variability using coefficient of variation (CV) and Intraclass Correlation Coefficient (ICC).
- Conducted intra-scanner reproducibility, twin-scanner (identical settings), and cross-configuration reproducibility experiments, including a phantom study.
Main Results:
- Region-based CV ranged from 1%-4.2% and tract-based CV was below 3% for most bundles in intra-scanner and twin-scanner experiments.
- The uncinate fasciculus showed the highest variability (CV 3.7-6%) for FA and GFA values.
- High similarity in outcomes was observed between scanners with identical settings, but not between those with different configurations. ICC values of 0.7+ were common for FA and GFA maps.
Conclusions:
- Cross-site pooling of DSI data is feasible, particularly when utilizing identical scanner configurations.
- Scanner configuration is a significant factor influencing DSI data reproducibility across sites.
- The findings support the standardization and harmonization of DSI data acquisition protocols for multi-site research.
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