Do early sensory cortices integrate cross-modal information?
Kayser C, Logothetis NK (2007)
Brain Struct Funct 212(2): 121-32.
Zeitschriftenaufsatz | Englisch
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Autor*in
Kayser, ChristophUniBi ;
Logothetis, N. K.
Stichworte
Acoustic Stimulation Animals Auditory Cortex/cytology/growth & development/ physiology Auditory Pathways/cytology/growth & development/ physiology Auditory Perception Brain Mapping Electrophysiology Evoked Potentials;
Auditory Hearing Humans Kinetics Models;
Neurological Nerve Net/cytology/growth & development/ physiology Photic Stimulation Superior Colliculi/physiology Synaptic Transmission Visual Cortex/physiology Visual Pathways/physiology Visual Perception
Erscheinungsjahr
2007
Zeitschriftentitel
Brain Struct Funct
Band
212
Ausgabe
2
Seite(n)
121-32
ISBN
1863-2653 (Print) 1863-2653 (Linking)
ISSN
1863-2653
Page URI
https://pub.uni-bielefeld.de/record/2914191
Zitieren
Kayser C, Logothetis NK. Do early sensory cortices integrate cross-modal information? Brain Struct Funct. 2007;212(2):121-32.
Kayser, C., & Logothetis, N. K. (2007). Do early sensory cortices integrate cross-modal information? Brain Struct Funct, 212(2), 121-32. doi:10.1007/s00429-007-0154-0
Kayser, Christoph, and Logothetis, N. K. 2007. “Do early sensory cortices integrate cross-modal information?”. Brain Struct Funct 212 (2): 121-32.
Kayser, C., and Logothetis, N. K. (2007). Do early sensory cortices integrate cross-modal information? Brain Struct Funct 212, 121-32.
Kayser, C., & Logothetis, N.K., 2007. Do early sensory cortices integrate cross-modal information? Brain Struct Funct, 212(2), p 121-32.
C. Kayser and N.K. Logothetis, “Do early sensory cortices integrate cross-modal information?”, Brain Struct Funct, vol. 212, 2007, pp. 121-32.
Kayser, C., Logothetis, N.K.: Do early sensory cortices integrate cross-modal information? Brain Struct Funct. 212, 121-32 (2007).
Kayser, Christoph, and Logothetis, N. K. “Do early sensory cortices integrate cross-modal information?”. Brain Struct Funct 212.2 (2007): 121-32.
Daten bereitgestellt von European Bioinformatics Institute (EBI)
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Projections to early visual areas v1 and v2 in the calcarine fissure from parietal association areas in the macaque.
Borra E, Rockland KS., Front Neuroanat 5(), 2011
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Magosso E., IEEE Trans Inf Technol Biomed 14(3), 2010
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Shams L, Kim R., Phys Life Rev 7(3), 2010
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Sperdin HF, Cappe C, Murray MM., Front Neurosci 4(), 2010
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Smith PH, Manning KA, Uhlrich DJ., J Comp Neurol 518(18), 2010
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Lewis R, Noppeney U., J Neurosci 30(37), 2010
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Noesselt T, Tyll S, Boehler CN, Budinger E, Heinze HJ, Driver J., J Neurosci 30(41), 2010
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Driver J, Noesselt T., Neuron 57(1), 2008
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