Quantitative and Qualitative Analysis of Transient Fetal Compartments during Prenatal Human Brain Development
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Alan C. Evans | Jonas Richiardi | Claude Lepage | Petra S. Huppi | Lana Vasung | Sherif Karama | Milan Radoš | Jennifer S. Goldman | I. Kostović | J. Richiardi | C. Lepage | S. Karama | M. Pletikos | M. Radoš | E. Fischi-Gomez | L. Vasung | P. Huppi | M. Raguž | Mihovil Pletikos | Ivica Kostovic | J. Goldman | Marina Raguž | Elda Fischi-Gómez | E. Fischi-Gómez
[1] J. Lefévre,et al. Are Developmental Trajectories of Cortical Folding Comparable Between Cross-sectional Datasets of Fetuses and Preterm Newborns? , 2016, Cerebral cortex.
[2] W. Leung,et al. Magnetic resonance imaging of the fetal brain. , 2016, Hong Kong medical journal = Xianggang yi xue za zhi.
[3] Gregor Kasprian,et al. In Vivo Tractography of Fetal Association Fibers , 2015, PloS one.
[4] Z. Molnár,et al. Development, evolution and pathology of neocortical subplate neurons , 2015, Nature Reviews Neuroscience.
[5] I. Kostović,et al. Embryonic and Fetal Development of the Human Cerebral Cortex , 2015 .
[6] N. Jovanov-Milošević,et al. Developmental Dynamics of Radial Vulnerability in the Cerebral Compartments in Preterm Infants and Neonates , 2014, Front. Neurol..
[7] Daniel Rueckert,et al. Automatic Whole Brain MRI Segmentation of the Developing Neonatal Brain , 2014, IEEE Transactions on Medical Imaging.
[8] Hao Huang,et al. Gaining insight of fetal brain development with diffusion MRI and histology , 2014, International Journal of Developmental Neuroscience.
[9] Mingfeng Li,et al. Temporal Specification and Bilaterality of Human Neocortical Topographic Gene Expression , 2014, Neuron.
[10] Susumu Mori,et al. Coupling diffusion imaging with histological and gene expression analysis to examine the dynamics of cortical areas across the fetal period of human brain development. , 2013, Cerebral cortex.
[11] Goran Sedmak,et al. The significance of the subplate for evolution and developmental plasticity of the human brain , 2013, Front. Hum. Neurosci..
[12] Emi Takahashi,et al. Emerging cerebral connectivity in the human fetal brain: an MR tractography study. , 2012, Cerebral cortex.
[13] Lana Vasung,et al. Perinatal and early postnatal reorganization of the subplate and related cellular compartments in the human cerebral wall as revealed by histological and MRI approaches , 2012, Brain Structure and Function.
[14] J. Kleinman,et al. Spatiotemporal transcriptome of the human brain , 2011, Nature.
[15] Mitchel S. Berger,et al. Corridors of Migrating Neurons in Human Brain and Their Decline during Infancy , 2011, Nature.
[16] G. Šimić,et al. Extraordinary neoteny of synaptic spines in the human prefrontal cortex , 2011, Proceedings of the National Academy of Sciences.
[17] Lana Vasung,et al. The Zagreb Collection of human brains: a unique, versatile, but underexploited resource for the neuroscience community , 2011, Annals of the New York Academy of Sciences.
[18] Daniel Rueckert,et al. A dynamic 4D probabilistic atlas of the developing brain , 2011, NeuroImage.
[19] Alan C. Evans,et al. Quantitative in vivo MRI measurement of cortical development in the fetus , 2011, Brain Structure and Function.
[20] Colin Studholme,et al. A spatiotemporal atlas of MR intensity, tissue probability and shape of the fetal brain with application to segmentation , 2010, NeuroImage.
[21] Colin Studholme,et al. Atlas‐based segmentation of developing tissues in the human brain with quantitative validation in young fetuses , 2010, Human brain mapping.
[22] Milos Judas,et al. The development of the subplate and thalamocortical connections in the human foetal brain , 2010, Acta paediatrica.
[23] P. Shannon,et al. Alteration of Human Fetal Subplate Layer and Intermediate Zone During Normal Development on MR and Diffusion Tensor Imaging , 2010, American Journal of Neuroradiology.
[24] P. Rakic. Evolution of the neocortex: Perspective from developmental biology , 2010 .
[25] Steven P. Miller,et al. From selective vulnerability to connectivity: insights from newborn brain imaging , 2009, Trends in Neurosciences.
[26] Lana Vasung,et al. Insights from in vitro fetal magnetic resonance imaging of cerebral development. , 2009, Seminars in perinatology.
[27] Ponnada A. Narayana,et al. Region-specific maturation of cerebral cortex in human fetal brain: diffusion tensor imaging and histology , 2009, Neuroradiology.
[28] P. Rakic,et al. Decision by division: making cortical maps , 2009, Trends in Neurosciences.
[29] Alan C. Evans,et al. Depth potential function for folding pattern representation, registration and analysis , 2009, Medical Image Anal..
[30] M. Miller,et al. Anatomical Characterization of Human Fetal Brain Development with Diffusion Tensor Magnetic Resonance Imaging , 2009, The Journal of Neuroscience.
[31] J. Volpe. Brain injury in premature infants: a complex amalgam of destructive and developmental disturbances , 2009, The Lancet Neurology.
[32] Milos Judas,et al. Lifespan alterations of basal dendritic trees of pyramidal neurons in the human prefrontal cortex: a layer-specific pattern. , 2008, Cerebral cortex.
[33] Colin Blakemore,et al. Development of the human cerebral cortex: Boulder Committee revisited , 2008, Nature Reviews Neuroscience.
[34] Ivica Kostović,et al. Transient patterns of cortical lamination during prenatal life: Do they have implications for treatment? , 2007, Neuroscience & Biobehavioral Reviews.
[35] A. Glover,et al. Exploring Cortical Subplate Evolution Using Magnetic Resonance Imaging of the Fetal Brain , 2007, Developmental Neuroscience.
[36] Steven Robbins,et al. An unbiased iterative group registration template for cortical surface analysis , 2007, NeuroImage.
[37] Maja Cepanec,et al. Adult structure and development of the human fronto‐opercular cerebral cortex (Broca's region) , 2007, Clinical linguistics & phonetics.
[38] N. Jovanov-Milošević,et al. The development of cerebral connections during the first 20-45 weeks' gestation. , 2006, Seminars in fetal & neonatal medicine.
[39] Rachel Grossman,et al. Quantitative MRI measurements of human fetal brain development in utero , 2006, NeuroImage.
[40] A. Kriegstein,et al. Patterns of neural stem and progenitor cell division may underlie evolutionary cortical expansion , 2006, Nature Reviews Neuroscience.
[41] D. O'Leary,et al. Cortical ventricular zone progenitors and their progeny maintain spatial relationships and radial patterning during preplate development indicating an early protomap. , 2006, Cerebral cortex.
[42] Pasko Rakic,et al. A century of progress in corticoneurogenesis: from silver impregnation to genetic engineering. , 2006, Cerebral cortex.
[43] Milos Judas,et al. In vitro MRI of brain development. , 2006, European journal of radiology.
[44] Gregor Kasprian,et al. MRI of normal fetal brain development. , 2006, European journal of radiology.
[45] Milos Judas,et al. Structural, immunocytochemical, and mr imaging properties of periventricular crossroads of growing cortical pathways in preterm infants. , 2005, AJNR. American journal of neuroradiology.
[46] N. Zečević,et al. Contributions of cortical subventricular zone to the development of the human cerebral cortex , 2005, The Journal of comparative neurology.
[47] Alan C. Evans,et al. Automated 3-D extraction and evaluation of the inner and outer cortical surfaces using a Laplacian map and partial volume effect classification , 2005, NeuroImage.
[48] Alan C. Evans,et al. Fast and robust parameter estimation for statistical partial volume models in brain MRI , 2004, NeuroImage.
[49] C. Garel. The role of MRI in the evaluation of the fetal brain with an emphasis on biometry, gyration and parenchyma , 2004, Pediatric Radiology.
[50] Roland G. Henry,et al. Early laminar organization of the human cerebrum demonstrated with diffusion tensor imaging in extremely premature infants , 2004, NeuroImage.
[51] J. Oosterhuis,et al. Cervical tissue shrinkage by formaldehyde fixation, paraffin wax embedding, section cutting and mounting , 2004, Virchows Archiv A.
[52] Alan C. Evans,et al. Anatomical standardization of the human brain in euclidean 3-space and on the cortical 2-manifold , 2004 .
[53] Steven P. Miller,et al. Early laminar organization of the human cerebrum demonstrated by automatic segmentation of diffusion tensor MR images in extremely premature infants , 2004 .
[54] R. Cheloha,et al. The of a Development , 2004 .
[55] A. Snyder,et al. Radial organization of developing preterm human cerebral cortex revealed by non-invasive water diffusion anisotropy MRI. , 2002, Cerebral cortex.
[56] Milos Judas,et al. Correlation between the sequential ingrowth of afferents and transient patterns of cortical lamination in preterm infants , 2002, The Anatomical record.
[57] Milos Judas,et al. Laminar organization of the human fetal cerebrum revealed by histochemical markers and magnetic resonance imaging. , 2002, Cerebral cortex.
[58] Henry Kennedy,et al. Unique morphological features of the proliferative zones and postmitotic compartments of the neural epithelium giving rise to striate and extrastriate cortex in the monkey. , 2002, Cerebral cortex.
[59] Alan C. Evans,et al. Automated 3-D Extraction of Inner and Outer Surfaces of Cerebral Cortex from MRI , 2000, NeuroImage.
[60] D. V. von Cramon,et al. Sulcal variability of twins. , 1999, Cerebral cortex.
[61] N. Rofsky,et al. Abdominal MR imaging with a volumetric interpolated breath-hold examination. , 1999, Radiology.
[62] Alan C. Evans,et al. Automatic Quantification of MS Lesions in 3D MRI Brain Data Sets: Validation of INSECT , 1998, MICCAI.
[63] Alan C. Evans,et al. A nonparametric method for automatic correction of intensity nonuniformity in MRI data , 1998, IEEE Transactions on Medical Imaging.
[64] D. V. Essen,et al. A tension-based theory of morphogenesis and compact wiring in the central nervous system , 1997, Nature.
[65] D. V. van Essen,et al. A tension-based theory of morphogenesis and compact wiring in the central nervous system. , 1997, Nature.
[66] A. Schned,et al. Tissue-shrinkage correction factor in the calculation of prostate cancer volume. , 1996, The American journal of surgical pathology.
[67] P. Rakic. A small step for the cell, a giant leap for mankind: a hypothesis of neocortical expansion during evolution , 1995, Trends in Neurosciences.
[68] M. Tovi,et al. Measurements of T1 and T2 over time in formalin-fixed human whole-brain specimens. , 1992, Acta radiologica.
[69] M Marín-Padilla,et al. Ontogenesis of the pyramidal cell of the mammalian neocortex and developmental cytoarchitectonics: A unifying theory , 1992, The Journal of comparative neurology.
[70] I. Kostović,et al. Prenatal development of neurons in the human prefrontal cortex: I. A qualitative Golgi study , 1988, The Journal of comparative neurology.
[71] G. Šimić,et al. Zagreb research collection of human brains for developmental neurobiologists and clinical neuroscientists. , 1991, The International journal of developmental biology.
[72] P. Rakić,et al. Developmental history of the transient subplate zone in the visual and somatosensory cortex of the macaque monkey and human brain , 1990, The Journal of comparative neurology.
[73] P. Rakic. Specification of cerebral cortical areas. , 1988, Science.
[74] I. Kostović,et al. Prenatal development of neurons in the human prefrontal cortex. II. A quantitative Golgi study , 1992, The Journal of comparative neurology.
[75] R. O’rahilly,et al. Embryonic length and cerebral landmarks in staged human embryos , 1984, The Anatomical record.
[76] P. Rakić,et al. Development of prestriate visual projections in the monkey and human fetal cerebrum revealed by transient cholinesterase staining , 1984, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[77] P S Goldman-Rakic,et al. Transient cholinesterase staining in the mediodorsal nucleus of the thalamus and its connections in the developing human and monkey brain , 1983, The Journal of comparative neurology.
[78] P. Rakić,et al. Early developmental events: cell lineages, acquisition of neuronal positions, and areal and laminar development. , 1982, Neurosciences Research Program bulletin.
[79] P. S. Goldman,et al. Prenatal removal of frontal association cortex in the fetal rhesus monkey: Anatomical and functional consequences in postnatal life , 1978, Brain Research.
[80] L. Vacca,et al. Effects of hydrogen ion dissociation and concentration of the reactivity of dichromate-fixed tissue components to the PAS procedure: recommendations for reducing undesirable background staining. , 1978, Stain technology.
[81] P. Rakić,et al. Genesis of the dorsal lateral geniculate nucleus in the rhesus monkey: Site and time of origin, kinetics of proliferation, routes of migration and pattern of distribution of neurons , 1977, The Journal of comparative neurology.
[82] F. Gilles,et al. Gyral development of the human brain , 1977, Transactions of the American Neurological Association.
[83] J. Dobbing,et al. Quantitative growth and development of human brain , 1973, Archives of disease in childhood.
[84] I. Kostović,et al. The development of synapses in cerebral cortex of the human fetus. , 1973, Brain research.
[85] P. Rakić. Mode of cell migration to the superficial layers of fetal monkey neocortex , 1972, The Journal of comparative neurology.
[86] C. J. Connolly,et al. External morphology of the primate brain , 1950 .
[87] G. Smith,et al. Die Cytoarchitektonik der Hirnrinde des erwachsenen Menschen. , 1927 .
[88] Jelliffe. Vergleichende Lokalisationslehre der Grosshirnrinde , 1910 .
[89] W. His. Die Entwickelung des menschlichen Gehirns : während der ersten Monate , 1904 .
[90] G. Born. Biologische untersuchungen , 1884 .