"Neocortex" is a descriptor in the National Library of Medicine's controlled vocabulary thesaurus,
MeSH (Medical Subject Headings). Descriptors are arranged in a hierarchical structure,
which enables searching at various levels of specificity.
The largest portion of the CEREBRAL CORTEX in which the NEURONS are arranged in six layers in the mammalian brain: molecular, external granular, external pyramidal, internal granular, internal pyramidal and multiform layers.
- Substantia Corticalis
- Corticali, Substantia
- Corticalis, Substantia
- Substantia Corticali
- Cerebral Neocortex
- Cerebral Neocortices
- Neocortex, Cerebral
- Neocortices, Cerebral
- Neopallial Cortex
- Cortex, Neopallial
- Cortices, Neopallial
- Neopallial Cortices
Neocortical Multiform Layer
- Neocortical Multiform Layer
- Layer, Neocortical Multiform
- Layers, Neocortical Multiform
- Multiform Layer, Neocortical
- Multiform Layers, Neocortical
- Neocortical Multiform Layers
Neocortical Molecular Layer
- Neocortical Molecular Layer
- Layer, Neocortical Molecular
- Layers, Neocortical Molecular
- Molecular Layer, Neocortical
- Molecular Layers, Neocortical
- Neocortical Molecular Layers
Neocortical External Granular Layer
- Neocortical External Granular Layer
- External Granular Layer
- External Granular Layers
- Granular Layer, External
- Granular Layers, External
- Layer, External Granular
- Layers, External Granular
Below are MeSH descriptors whose meaning is more general than "Neocortex".
Below are MeSH descriptors whose meaning is more specific than "Neocortex".
This graph shows the total number of publications written about "Neocortex" by people in this website by year, and whether "Neocortex" was a major or minor topic of these publications.
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Below are the most recent publications written about "Neocortex" by people in Profiles.
Ramirez-Zamora A, Pilitsis JG. In reply to: "Hyperhidrosis caused by deep brain stimulation in the posterior subthalamic area" by Patric Blomstedt MD, PhD. J Neurol Sci. 2017 09 15; 380:280.
Ataman B, Boulting GL, Harmin DA, Yang MG, Baker-Salisbury M, Yap EL, Malik AN, Mei K, Rubin AA, Spiegel I, Durresi E, Sharma N, Hu LS, Pletikos M, Griffith EC, Partlow JN, Stevens CR, Adli M, Chahrour M, Sestan N, Walsh CA, Berezovskii VK, Livingstone MS, Greenberg ME. Evolution of Osteocrin as an activity-regulated factor in the primate brain. Nature. 2016 11 10; 539(7628):242-247.
Tal A, Peled N, Siegelmann HT. Biologically inspired load balancing mechanism in neocortical competitive learning. Front Neural Circuits. 2014; 8:18.
Kremen WS, Fennema-Notestine C, Eyler LT, Panizzon MS, Chen CH, Franz CE, Lyons MJ, Thompson WK, Dale AM. Genetics of brain structure: contributions from the Vietnam Era Twin Study of Aging. Am J Med Genet B Neuropsychiatr Genet. 2013 Oct; 162B(7):751-61.
Jeong SJ, Luo R, Li S, Strokes N, Piao X. Characterization of G protein-coupled receptor 56 protein expression in the mouse developing neocortex. J Comp Neurol. 2012 Sep 01; 520(13):2930-40.
Sills JB, Connors BW, Burwell RD. Electrophysiological and morphological properties of neurons in layer 5 of the rat postrhinal cortex. Hippocampus. 2012 Sep; 22(9):1912-22.
Magavi S, Friedmann D, Banks G, Stolfi A, Lois C. Coincident generation of pyramidal neurons and protoplasmic astrocytes in neocortical columns. J Neurosci. 2012 Apr 04; 32(14):4762-72.
Jeong SJ, Li S, Luo R, Strokes N, Piao X. Loss of Col3a1, the gene for Ehlers-Danlos syndrome type IV, results in neocortical dyslamination. PLoS One. 2012; 7(1):e29767.
Subramanian L, Sarkar A, Shetty AS, Muralidharan B, Padmanabhan H, Piper M, Monuki ES, Bach I, Gronostajski RM, Richards LJ, Tole S. Transcription factor Lhx2 is necessary and sufficient to suppress astrogliogenesis and promote neurogenesis in the developing hippocampus. Proc Natl Acad Sci U S A. 2011 Jul 05; 108(27):E265-74.
Adamolekun B, Afra P, Boop FA. False lateralization of seizure onset by scalp EEG in neocortical temporal lobe epilepsy. Seizure. 2011 Jul; 20(6):494-9.