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Inactivation and adaptation of number neurons
Published online by Cambridge University Press: 27 August 2009
Abstract
Single-neuron recordings may help resolve the issue of abstract number representation in the parietal lobes. Two manipulations in particular – reversible inactivation and adaptation of apparent numerosity – could provide important insights into the causal influence of “numeron” activity. Taken together, these tests can significantly advance our understanding of number processing in the brain.
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References
Burr, D. & Ross, J. (2008) A visual sense of number. Current Biology 18:425–28.CrossRefGoogle ScholarPubMed
Diester, I. & Nieder, A. (in press) Numerical values leave a semantic imprint on associated signs in monkeys. Journal of Cognitive Neuroscience.Google Scholar
Durgin, F. H. (2008) Texture density adaptation and visual number revisited. Current Biology 18:R855–56; author reply R857–58.CrossRefGoogle ScholarPubMed
Li, C. S., Mazzoni, P. & Andersen, R. A. (1999) Effect of reversible inactivation of macaque lateral intraparietal area on visual and memory saccades. Journal of Neurophysiology 81:1827–38.CrossRefGoogle ScholarPubMed
Nieder, A. & Merten, K. (2007) A labeled-line code for small and large numerosities in the monkey prefrontal cortex. Journal of Neuroscience 27:5986–93.CrossRefGoogle ScholarPubMed
Wardak, C., Olivier, E. & Duhamel, J.-R. (2002) Saccadic target selection deficits after lateral intraparietal area inactivation in monkeys. Journal of Neuroscience 22:9877–84.CrossRefGoogle ScholarPubMed