Catherine A Dye, Hani El Shawa, Kelly J Huffman
Index: Cereb. Cortex 21(6) , 1311-30, (2011)
Full Text: HTML
A hallmark of mammalian evolution is the structural and functional complexity of the cerebral cortex. Within the cerebral cortex, the neocortex, or isocortex, is a 6-layered complexly organized structure that is comprised of multiple interconnected sensory and motor areas. These areas and their precise patterns of connections arise during development, through a process termed arealization. Intrinsic, activity-independent and extrinsic, activity-dependent mechanisms are involved in the development of neocortical areas and their connections. The intrinsic molecular mechanisms involved in the establishment of this sophisticated network are not fully understood. In this report (I) and the companion report (II), we present the first lifespan analysis of ipsilateral intraneocortical connections (INCs) among multiple sensory and motor regions, from the embryonic period to adulthood in the mouse. Additionally, we characterize the neocortical expression patterns of several developmentally regulated genes that are of central importance to studies investigating the molecular control of arealization from embryonic day 13.5 to postnatal day (P) 3 (I) and P6 to 50 (II). In this analysis, we utilize novel methods to correlate the boundaries of gene expression with INCs and developing areal boundaries, in order to better understand the nature of gene-areal relationships during development.
Structure | Name/CAS No. | Molecular Formula | Articles |
---|---|---|---|
![]() |
4-(4-(DIHEXADECYLAMINO)STYRYL)-N-METHYLPYRIDINIUM IODIDE
CAS:114041-00-8 |
C46H79IN2 |
The role of primary cilia in corpus callosum formation is me...
2015-09-01 [Hum. Mol. Genet. 24 , 4997-5014, (2015)] |
Retinal ganglion cell death after acute retinal ischemia is ...
2002-01-01 [Neuroscience 109(1) , 157-68, (2002)] |
Dopamine inhibits N-type channels in visceral afferents to r...
2009-05-01 [J. Neurophysiol. 101(5) , 2270-8, (2009)] |
Retinal ganglion cell death is delayed by activation of reti...
2005-09-28 [Brain Res. 1057(1-2) , 17-28, (2005)] |
Transient voltage-dependent potassium currents are reduced i...
2005-12-01 [J. Neurophysiol. 94(6) , 3849-59, (2005)] |
Home | MSDS/SDS Database Search | Journals | Product Classification | Biologically Active Compounds | Selling Leads | About Us | Disclaimer
Copyright © 2024 ChemSrc All Rights Reserved