Note to users. If you're seeing this message, it means that your browser cannot find this page's style/presentation instructions -- or possibly that you are using a browser that does not support current Web standards. Find out more about why this message is appearing, and what you can do to make your experience of our site the best it can be.


Sci. STKE, 16 March 2004
Vol. 2004, Issue 224, p. tw99
[DOI: 10.1126/stke.2242004TW99]

EDITORS' CHOICE

NEUROBIOLOGY Remodeling the Visual Cortex

The portions of the mammalian brain's cortex responsible for interpreting visual input undergo continued refinement after birth. Indeed, a critical period of unusual plasticity exists during which visual experience can alter development. Two studies have used benzodiazepines, which disrupt GABAergic signaling, to dissect the mechanisms involved (see the Perspective by Ferster). Hensch and Stryker show that the physical architecture of columns in the neocortex typical of a brain experiencing appropriately balanced vision is altered in response to benzodiazepine treatment. Fagiolini et al. show that benzodiazepines can affect the timing of the critical period via affects on a subset of {gamma}-aminobutyric acid (GABA) receptors containing the {alpha}1 subunit. Thus, GABAergic signaling contributes both to the formation of columnar architecture and to the timing of the critical period.

D. Ferster, Blocking plasticity in the visual cortex. Science 303, 1619-1621 (2004). [Summary] [Full Text]

T. K. Hensch M. P. Stryker, Columnar architecture sculpted by GABA circuits in developing cat visual cortex. Science 303, 1678-1681 (2004). [Abstract] [Full Text]

M. Fagiolini, J.-M. Fritschy, K. Löw, H. Möhler, U. Rudolph, T. K. Hensch, Specific GABAA circuits for visual cortical plasticity. Science 303, 1681-1683 (2004). [Abstract] [Full Text]

Citation: Remodeling the Visual Cortex. Sci. STKE 2004, tw99 (2004).


To Advertise     Find Products


Science Signaling. ISSN 1937-9145 (online), 1945-0877 (print). Pre-2008: Science's STKE. ISSN 1525-8882