The links below are to publications on PubMed referring to CBS High-Res Brain Processing Tools. This list is gathered weekly from PubMed automatically.

Publication/References
A computational framework for ultra-high resolution cortical segmentation at 7Tesla.
Description: Bazin, Pierre-Louis, et al. A computational framework for ultra-high resolution cortical segmentation at 7Tesla. ''Neuroimage''. 2014 Jun; '''93 Pt 2''': 201-9
Anatomically motivated modeling of cortical laminae.
Description: Waehnert, M D, et al. Anatomically motivated modeling of cortical laminae. ''Neuroimage''. 2014 Jun; '''93 Pt 2''': 210-20
Dorsomedial striatum involvement in regulating conflict between current and presumed outcomes.
Description: Mestres-Misse, Anna, et al. Dorsomedial striatum involvement in regulating conflict between current and presumed outcomes. ''Neuroimage''. 2014 Sep; '''98''': 159-67
A high resolution 7-Tesla resting-state fMRI test-retest dataset with cognitive and physiological measures.
Description: Gorgolewski, Krzysztof J, et al. A high resolution 7-Tesla resting-state fMRI test-retest dataset with cognitive and physiological measures. ''Sci Data''. 2015; '''2''': 140054
Assessing intracortical myelin in the living human brain using myelinated cortical thickness.
Description: Rowley, Christopher D, et al. Assessing intracortical myelin in the living human brain using myelinated cortical thickness. ''Front Neurosci''. 2015; '''9''': 396
Multi-contrast multi-scale surface registration for improved alignment of cortical areas.
Description: Tardif, Christine Lucas, et al. Multi-contrast multi-scale surface registration for improved alignment of cortical areas. ''Neuroimage''. 2015 May 1; '''111''': 107-22
A cytoarchitecture-driven myelin model reveals area-specific signatures in human primary and secondary areas using ultra-high resolution in-vivo brain MRI.
Description: Dinse, J, et al. A cytoarchitecture-driven myelin model reveals area-specific signatures in human primary and secondary areas using ultra-high resolution in-vivo brain MRI. ''Neuroimage''. 2015 Jul 1; '''114''': 71-87
Open Science CBS Neuroimaging Repository: Sharing ultra-high-field MR images of the brain.
Description: Tardif, Christine Lucas, et al. Open Science CBS Neuroimaging Repository: Sharing ultra-high-field MR images of the brain. ''Neuroimage''. 2016 Jan 1; '''124''' (Pt B):1143-1148
A subject-specific framework for in vivo myeloarchitectonic analysis using high resolution quantitative MRI.
Description: Waehnert, Miriam D, et al. A subject-specific framework for in vivo myeloarchitectonic analysis using high resolution quantitative MRI. ''Neuroimage''. 2016 Jan 15; '''125''': 94-107
Age-related mapping of intracortical myelin from late adolescence to middle adulthood using T1 -weighted MRI.
Description: Rowley, Christopher D, et al. Age-related mapping of intracortical myelin from late adolescence to middle adulthood using T1 -weighted MRI. ''Hum Brain Mapp''. 2017 Jul; '''38''' (7):3691-3703
Body Topography Parcellates Human Sensory and Motor Cortex.
Description: Kuehn, Esther, et al. Body Topography Parcellates Human Sensory and Motor Cortex. ''Cereb Cortex''. 2017 Jul 1; '''27''' (7):3790-3805
Effects of aging on T(1), T(2)*, and QSM MRI values in the subcortex.
Description: Keuken, M C, et al. Effects of aging on T(1), T(2)*, and QSM MRI values in the subcortex. ''Brain Struct Funct''. 2017 Aug; '''222''' (6):2487-2505
Altered Intracortical T1-Weighted/T2-Weighted Ratio Signal in Huntington's Disease.
Description: Rowley, Christopher D, et al. Altered Intracortical T1-Weighted/T2-Weighted Ratio Signal in Huntington's Disease. ''Front Neurosci''. 2018; '''12''': 805
Laminar imaging of positive and negative BOLD in human visual cortex at 7T.
Description: Fracasso, Alessio, et al. Laminar imaging of positive and negative BOLD in human visual cortex at 7T. ''Neuroimage''. 2018 Jan 1; '''164''': 100-111
Resolving multisensory and attentional influences across cortical depth in sensory cortices.
Description: Gau, Remi, et al. Resolving multisensory and attentional influences across cortical depth in sensory cortices. ''Elife''. 2020 Jan 8; '''9''':
Linear systems analysis for laminar fMRI: Evaluating BOLD amplitude scaling for luminance contrast manipulations.
Description: van Dijk, Jelle A, et al. Linear systems analysis for laminar fMRI: Evaluating BOLD amplitude scaling for luminance contrast manipulations. ''Sci Rep''. 2020 Mar 25; '''10''' (1):5462
Superficial white matter imaging: Contrast mechanisms and whole-brain in vivo mapping.
Description: Kirilina, Evgeniya, et al. Superficial white matter imaging: Contrast mechanisms and whole-brain in vivo mapping. ''Sci Adv''. 2020 Oct; '''6''' (41):
Grey-matter abnormalities in clinical high-risk participants for psychosis.
Description: Zikidi, Katia, et al. Grey-matter abnormalities in clinical high-risk participants for psychosis. ''Schizophr Res''. 2020 Dec; '''226''': 120-128
Validating Linear Systems Analysis for Laminar fMRI: Temporal Additivity for Stimulus Duration Manipulations.
Description: van Dijk, Jelle A, et al. Validating Linear Systems Analysis for Laminar fMRI: Temporal Additivity for Stimulus Duration Manipulations. ''Brain Topogr''. 2021 Jan; '''34''' (1):88-101
LayNii: A software suite for layer-fMRI.
Description: Huber, Laurentius Renzo, et al. LayNii: A software suite for layer-fMRI. ''Neuroimage''. 2021 Aug 15; '''237''': 118091