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Combining Deep Learning and Active Contours Opens The Way to Robust, Automated Analysis of Brain Cytoarchitectonics, , , , , , , , , и . bioRxiv, (2018)Infrared oculography - validation of a new method to monitor startle eyeblink amplitudes during fMRI., , , и . NeuroImage, 22 (2): 767-770 (2004)Multi-parameter quantitative mapping of R1, R2\ast, PD, and MTsat is reproducible when accelerated with Compressed SENSE, , , и . NeuroImage, (июня 2022)Predictors of real-time fMRI neurofeedback performance and improvement – A machine learning mega-analysis, , , , , , , , , и 38 other автор(ы). NeuroImage, (августа 2021)The relationship between hippocampal-dependent task performance and hippocampal grey matter myelination and iron content, , , и . Brain and Neuroscience Advances, (января 2021)PyRates—A Python framework for rate-based neural simulations, , , , , и . PLOS ONE, 14 (12): 1-26 (декабря 2019)Simulating Local Deformations in the Human Cortex Due to Blood Flow-Induced Changes in Mechanical Tissue Properties: Impact on Functional Magnetic Resonance Imaging, , , , , , и . Frontiers in Neuroscience, (сентября 2021)Example dataset for the hMRI toolbox, , , , , , , , , и 7 other автор(ы). Data in Brief, (августа 2019)Superficial white matter imaging: Contrast mechanisms and whole-brain in vivo mapping, , , , , , , , , и 6 other автор(ы). Science Advances, (октября 2020)Estimating the apparent transverse relaxation time (R2) from images with different contrasts (ESTATICS) reduces motion artifacts, , , , и . Frontiers in Neuroscience, (сентября 2014)