- Brodmann area 19
Human
Brodmann area 19, or BA19, is part of the
occipital lobe cortex in thehuman brain . Along with area 18, it comprises the extrastriate (or peristriate) cortex. In normally-sighted humans,extrastriate cortex is a visual association area, with feature-extracting, shape recognition, attentional, and multimodal integrating functions.This area is also known as peristriate area 19, and it refers to a subdivision of the cytoarchitecturally defined
occipital region ofcerebral cortex . In the human it is located in parts of thelingual gyrus , thecuneus , thelateral occipital gyrus (H) and thesuperior occipital gyrus (H) of theoccipital lobe where it is bounded approximately by theparieto-occipital sulcus . Cytoarchitecturally it is bounded on one side by theparastriate area 18 which it surrounds. Rostrally it is bounded by theangular area 39 (H) and theoccipitotemporal area 37 (H) (Brodmann-1909).Guenon
Brodmann area 19-1909 is a subdivision of the cerebral cortex of the
guenon defined on the basis of cytoarchitecture. It is cytoarchitecturally homologous to the peristriate area 19 of the human (Brodmann-1909). Distinctive features (Brodmann-1905): Compared toBrodmann area 18 -1909, thepyramidal cell s of sublayer 3b of the externalpyramidal layer (III) are not as densely distributed, the layer is not as narrow, and its boundary with the internalgranular layer (IV) is not as distinct; the cells in sublayer 3b are concentrated at its outer boundary leaving a narrow clear zone with no large pyramidal cells adjacent to layer IV; thegranule cell s of layer IV are less densely distributed and are intermixed with largerpolymorphic cell s so that, while the layer is still quite dark and prominent, it is somewhat widened and not as self-contained; the internal pyramidal layer (V) is characterized by large pyramidalganglion cell s, most in small groups, a pattern not seen in area 18; the cells in themultiform layer (VI) are clearly larger than in area 18; overall area 19 is somewhat thicker and less densely populated than area 18.Function
Area 19 is a
histological ly delineated band anterolaterally abutting visual area 18. Single-cell electrophysiological recordings from area 19 in thecat suggest sensitivity to motion-delineated forms; recordings fromprimate s have yielded varying results, indicating that this area may be a heterogeneous collection of visual areas, with multiple incomplete representations of the visual scene.In humans, this band putatively contains regions of the visual areas designated V3, V4, V5 (also known as the
middle temporal area , or MT) and V6 (also known asdorsomedial area ) in the primate.Functional magnetic resonance imaging shows the existence of various retinotopic maps within area 19. In general, the diverse fields that comprise area 19 have reciprocal connections with areas 17 and 18, as well as posterior parietal and inferior temporal association areas.Area 19 has been noted to receive inputs from the
retina via thesuperior colliculus andpulvinar , and may contribute to the phenomenon ofblindsight . In patients blind from a young age, the area has been found to be activated by somatosensory stimuli.Because of these findings, it is thought that area 19 is the differentiation point of the two visual streams, of the 'what' and 'where' visual pathways. The dorsal region may contain motion-sensitive neurones, and ventral areas may be specialised for object recognition.
External links
* For Neuroanatomy of the peristriate area 19 visit [http://braininfo.rprc.washington.edu/Scripts/ancilcentraldirectory.aspx?ID=416 BrainInfo]
* For Neuroanatomy of Brodmann area 19 visit [http://braininfo.rprc.washington.edu/Scripts/ancilcentraldirectory.aspx?ID=1052 BrainInfo]ee also
*
Brodmann area
*List of regions in the human brain References
* Hyvarinen, J., Carlson, Y. and Hyvarinen, L. (1981) Early visual deprivation alters modality of neuronal responses in area 19 of monkey cortex, "Neurosci. Lett." 26, 239–243
* Theories of visual cortex organization in primates: areas of the third level, "Prog Brain Res." 1996;112:213-21
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