Gradients of connectivity distance in the cerebral cortex of the macaque monkey
暂无分享,去创建一个
Daniel S. Margulies | Sabine Oligschläger | Marcel Falkiewicz | Blazej M. Baczkowski | Ting Xu | Arnaud Falchier | D. Margulies | A. Falchier | Sabine Oligschläger | Ting Xu | M. Falkiewicz | G. Linn | Gary Linn
[1] John W. Harwell,et al. Similar patterns of cortical expansion during human development and evolution , 2010, Proceedings of the National Academy of Sciences.
[2] Randy L. Buckner,et al. The evolution of distributed association networks in the human brain , 2013, Trends in Cognitive Sciences.
[3] P. Huttenlocher. Morphometric study of human cerebral cortex development , 1990, Neuropsychologia.
[4] Chad J. Donahue,et al. Using Diffusion Tractography to Predict Cortical Connection Strength and Distance: A Quantitative Comparison with Tracers in the Monkey , 2016, The Journal of Neuroscience.
[5] A. Toga,et al. Mapping brain maturation , 2006, Trends in Neurosciences.
[6] F. Sanides. COMPARATIVE ARCHITECTONICS OF THE NEOCORTEX OF MAMMALS AND THEIR EVOLUTIONARY INTERPRETATION * , 1969 .
[7] Zoltán Toroczkai,et al. The role of long-range connections on the specificity of the macaque interareal cortical network , 2013, Proceedings of the National Academy of Sciences.
[8] D. Pandya,et al. Architecture and Connections of Cortical Association Areas , 1985 .
[9] Thomas F. Nugent,et al. Dynamic mapping of human cortical development during childhood through early adulthood. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[10] T. Chomiak,et al. Mechanisms of Hierarchical Cortical Maturation , 2017, Front. Cell. Neurosci..
[11] B. J. Casey,et al. Imaging the developing brain: what have we learned about cognitive development? , 2005, Trends in Cognitive Sciences.
[12] Timothy D. Griffiths,et al. Orthogonal representation of sound dimensions in the primate midbrain , 2011, Nature Neuroscience.
[13] Ross S. Muers,et al. Functional Imaging of Audio–Visual Selective Attention in Monkeys and Humans: How do Lapses in Monkey Performance Affect Cross-Species Correspondences? , 2017, Cerebral cortex.
[14] Claus C. Hilgetag,et al. Principles of ipsilateral and contralateral cortico-cortical connectivity in the mouse , 2015, Brain Structure and Function.
[15] Daniel S. Margulies,et al. An Open Resource for Non-human Primate Imaging , 2018, Neuron.
[16] A. van Ooyen,et al. A simple rule for axon outgrowth and synaptic competition generates realistic connection lengths and filling fractions. , 2009, Cerebral cortex.
[17] C. Hilgetag,et al. A predictive model of the cat cortical connectome based on cytoarchitecture and distance , 2014, Brain Structure and Function.
[18] Katrin Krumbholz,et al. Parcellation of Human and Monkey Core Auditory Cortex with fMRI Pattern Classification and Objective Detection of Tonotopic Gradient Reversals , 2014, Cerebral cortex.
[19] T. Pritchard,et al. Chapter 33 – Gustatory System , 2012 .
[20] Fernando Calamante,et al. The contribution of geometry to the human connectome , 2016, NeuroImage.
[21] Elizabeth Jefferies,et al. Situating the default-mode network along a principal gradient of macroscale cortical organization , 2016, Proceedings of the National Academy of Sciences.
[22] Daniel S. Margulies,et al. Gradients of connectivity distance are anchored in primary cortex , 2016, Brain Structure and Function.
[23] D. O'Leary,et al. Geniculocortical Input Drives Genetic Distinctions Between Primary and Higher-Order Visual Areas , 2013, Science.
[24] H. Barbas. General cortical and special prefrontal connections: principles from structure to function. , 2015, Annual review of neuroscience.
[25] P. B. Cipolloni,et al. Cerebral Cortex: Architecture, Connections, and the Dual Origin Concept , 2015 .
[26] D. Pandya,et al. Architectonic parcellation of the temporal operculum in rhesus monkey and its projection pattern , 1973, Zeitschrift für Anatomie und Entwicklungsgeschichte.
[27] P. Flechsig. Anatomie des menschlichen Gehirns und Rückenmarks : auf myelogenetischer Grundlage , 1920 .
[28] Luciano da Fontoura Costa,et al. Predicting the connectivity of primate cortical networks from topological and spatial node properties , 2007, BMC Systems Biology.
[29] J. Rapoport,et al. Simple models of human brain functional networks , 2012, Proceedings of the National Academy of Sciences.
[30] G. Elston,et al. The Pyramidal Cell in Cognition: A Comparative Study in Human and Monkey , 2001, The Journal of Neuroscience.
[31] P. Rakic. Progress: Neurogenesis in adult primate neocortex: an evaluation of the evidence , 2002, Nature Reviews Neuroscience.
[32] Tristan A. Chaplin,et al. A Conserved Pattern of Differential Expansion of Cortical Areas in Simian Primates , 2013, The Journal of Neuroscience.
[33] C. Shatz,et al. Synaptic Activity and the Construction of Cortical Circuits , 1996, Science.
[34] Marcus Kaiser,et al. Developmental time windows for axon growth influence neuronal network topology , 2015, Biological Cybernetics.
[35] Martijn P. van den Heuvel,et al. Cytoarchitectonic similarity is a wiring principle of the human connectome , 2016, bioRxiv.
[36] L. Haberly,et al. New Features of Connectivity in Piriform Cortex Visualized by Intracellular Injection of Pyramidal Cells Suggest that “Primary” Olfactory Cortex Functions Like “Association” Cortex in Other Sensory Systems , 2000, The Journal of Neuroscience.
[37] Simon Baumann,et al. This Work Is Licensed under a Creative Commons Attribution 4.0 International License Date Deposited: the Topography of Frequency and Time Representation in Primate Auditory Cortices , 2022 .
[38] W. Marslen-Wilson,et al. Auditory sequence processing reveals evolutionarily conserved regions of frontal cortex in macaques and humans , 2015, Nature Communications.
[39] Julia M. Huntenburg,et al. A Systematic Relationship Between Functional Connectivity and Intracortical Myelin in the Human Cerebral Cortex , 2017, Cerebral cortex.
[40] Nikola T. Markov,et al. A Weighted and Directed Interareal Connectivity Matrix for Macaque Cerebral Cortex , 2012, Cerebral cortex.
[41] Abraham Z. Snyder,et al. Spurious but systematic correlations in functional connectivity MRI networks arise from subject motion , 2012, NeuroImage.
[42] Partha P. Mitra,et al. Open access resource for cellular-resolution analyses of corticocortical connectivity in the marmoset monkey , 2020, Nature Communications.
[43] H. F. Song,et al. Spatial embedding of structural similarity in the cerebral cortex , 2014, Proceedings of the National Academy of Sciences.
[44] A. Rees,et al. Auditory motion-specific mechanisms in the primate brain , 2017, PLoS biology.
[45] M. Kringelbach,et al. Chapter 34 – The Olfactory System , 2012 .
[46] Joseph O'Rourke,et al. Computational geometry column 35 , 1999, SIGA.
[47] Nikola T. Markov,et al. Weight Consistency Specifies Regularities of Macaque Cortical Networks , 2010, Cerebral cortex.
[48] P. Gaspar,et al. Sensory Map Transfer to the Neocortex Relies on Pretarget Ordering of Thalamic Axons , 2013, Current Biology.
[49] G. Elston,et al. Cortical integration in the visual system of the macaque monkey: large-scale morphological differences in the pyramidal neurons in the occipital, parietal and temporal lobes , 1999, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[50] Guy N Elston,et al. Cortical heterogeneity: Implications for visual processing and polysensory integration , 2002, Journal of neurocytology.
[51] Timothy D. Griffiths,et al. Individually customisable non-invasive head immobilisation system for non-human primates with an option for voluntary engagement , 2016, Journal of Neuroscience Methods.
[52] Xi-Nian Zuo,et al. A Connectome Computation System for discovery science of brain , 2015 .
[53] Marcello G P Rosa,et al. Brain maps, great and small: lessons from comparative studies of primate visual cortical organization , 2005, Philosophical Transactions of the Royal Society B: Biological Sciences.
[54] James K Rilling,et al. A quantitative morphometric comparative analysis of the primate temporal lobe. , 2002, Journal of human evolution.
[55] E. Bullmore,et al. Wiring cost and topological participation of the mouse brain connectome , 2015, Proceedings of the National Academy of Sciences.
[56] Olaf Sporns,et al. Generative models of the human connectome , 2015, NeuroImage.
[57] Ting Xu,et al. Delineating the macroscale areal organization of the macaque cortex in vivo , 2017, bioRxiv.
[58] A. Lundervold,et al. High-expanding cortical regions in human development and evolution are related to higher intellectual abilities. , 2015, Cerebral cortex.
[59] Marcus Kaiser,et al. Nonoptimal Component Placement, but Short Processing Paths, due to Long-Distance Projections in Neural Systems , 2006, PLoS Comput. Biol..
[60] Henry Kennedy,et al. A Predictive Network Model of Cerebral Cortical Connectivity Based on a Distance Rule , 2013, Neuron.
[61] P. Goldman-Rakic. Topography of cognition: parallel distributed networks in primate association cortex. , 1988, Annual review of neuroscience.
[62] M. Mesulam,et al. From sensation to cognition. , 1998, Brain : a journal of neurology.
[63] S Shipp,et al. The functional logic of cortico-pulvinar connections. , 2003, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[64] Claus C. Hilgetag,et al. A Predictive Structural Model of the Primate Connectome , 2015, Scientific Reports.
[65] Konrad Wagstyl,et al. Cortical thickness gradients in structural hierarchies , 2015, NeuroImage.
[66] Suzanne E. Welcome,et al. Longitudinal Mapping of Cortical Thickness and Brain Growth in Normal Children , 2022 .
[67] Timothy E. J. Behrens,et al. The evolution of the arcuate fasciculus revealed with comparative DTI , 2008, Nature Neuroscience.