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◇ bioRxiv2026-08-27· neuroscience

A multi-b-value test-retest diffusion MRI brain dataset for model validation and reproducibility assessment

T. Pieciak, I. Guadilla, D. Ciupek, R. Navarro-Gonzalez, S. Merino-Caviedes, P. Villacorta-Aylagas, L. Magdaleno Humayor, M. Villa Aparicio, J. Rueda-Ramos, R. Santiesteban Mendo, R. Moro Boyero, A. Tristan Vega

原始摘要(英文原文)· Original abstract
Transparent assessment of diffusion magnetic resonance imaging (dMRI) techniques with empirical verification of confounding factors requires adequately designed protocols and collected datasets. Publicly available diffusion-weighted MR datasets often provide limited sampling across b-values, making it difficult to study optimal acquisition protocols or the relationships between different processes occurring in brain tissue. In this work, we introduce a new densely sampled longitudinal test-retest diffusion-weighted MR dataset of the brain. Our dataset was collected from eleven healthy volunteers, each scanned four times: two sessions on consecutive days, which form the test data, followed by two additional sessions completed one week later (retest data). The data were acquired using twenty-two b-values ranging from 10 to 3000 s/mm2, along with structural T1-weighted scans. Potential applications of the dataset include, but are not limited to, assessing longitudinal reproducibility and reliability of quantitative metrics, evaluating robust and outlier-resistant estimation techniques, investigating experimental factors affecting estimation procedures, and verifying optimal acquisition protocols for different signal models. The dataset is publicly available in raw and fully preprocessed variants.
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