Chandramouli Chandrasekaran and Asif A . Ghazanfar Voices Differently in the Superior Temporal Sulcus Different Neural Frequency Bands Integrate Faces and

نویسندگان

  • Chandramouli Chandrasekaran
  • Asif A. Ghazanfar
  • Sascha Tyll
  • Carsten Nicolas Boehler
  • Eike Budinger
  • Hans-Jochen Heinze
  • Ryan J. Morrill
  • Luis Lemus
چکیده

[PDF] [Full Text] [Abstract] , October 27, 2009; 106 (43): 18362-18366. PNAS Shawn A. Steckenfinger and Asif A. Ghazanfar Monkey visual behavior falls into the uncanny valley [PDF] [Full Text] [Abstract] , October 13, 2010; 30 (41): 13609-13623. J. Neurosci. and Jon Driver Toemme Noesselt, Sascha Tyll, Carsten Nicolas Boehler, Eike Budinger, Hans-Jochen Heinze Visual Detection Sensitivity Sensory-Specific Cortices and Thalamic Bodies Relate to Perceptual Enhancement of Sound-Induced Enhancement of Low-Intensity Vision: Multisensory Influences on Human [PDF] [Full Text] [Abstract] , January 29, 2013; 110 (5): 1959-1963. PNAS Asif A. Ghazanfar, Ryan J. Morrill and Christoph Kayser rhythm Monkeys are perceptually tuned to facial expressions that exhibit a theta-like speech [PDF] [Full Text] [Abstract] , November 26, 2013; 110 (48): E4668-E4677. PNAS Chandramouli Chandrasekaran, Luis Lemus and Asif A. Ghazanfar detection Dynamic faces speed up the onset of auditory cortical spiking responses during vocal [PDF] [Full Text] [Abstract] , March 19, 2014; 34 (12): 4332-4344. J. Neurosci. Dipanwita Ghose, Alexander Maier, Aaron Nidiffer and Mark T. Wallace Multisensory Response Modulation in the Superficial Layers of the Superior Colliculus

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Different neural frequency bands integrate faces & voices differently in the superior temporal sulcus

Acknowledgments: The physiological data were collected at the Max Planck Institute for Biological Cybernetics in Tuebingen, Germany by AAG. This work was supported by the National Institutes of Health (NINDS) R01NS054898 (AAG), the National Science Foundation BCS-0547760 CAREER Award (AAG), Autism Speaks (AAG), and Princeton University’s Quantitative and Computational Neuroscience training gran...

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Different neural frequency bands integrate faces and voices differently in the superior temporal sulcus.

The integration of auditory and visual information is required for the default mode of speech-face-to-face communication. As revealed by functional magnetic resonance imaging and electrophysiological studies, the regions in and around the superior temporal sulcus (STS) are implicated in this process. To provide greater insights into the network-level dynamics of the STS during audiovisual integ...

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The existence of multiple nodes in the cortical network that integrate faces and voices suggests that they may be interacting and influencing each other during communication. To test the hypothesis that multisensory responses in auditory cortex are influenced by visual inputs from the superior temporal sulcus (STS), an association area, we recorded local field potentials and single neurons from...

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The ability to integrate information across multiple sensory systems offers several behavioral advantages, from quicker reaction times and more accurate responses to better detection and more robust learning. At the neural level, multisensory integration requires large-scale interactions between different brain regions--the convergence of information from separate sensory modalities, represente...

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Multisensory integration of dynamic faces and voices in rhesus monkey auditory cortex.

In the social world, multiple sensory channels are used concurrently to facilitate communication. Among human and nonhuman primates, faces and voices are the primary means of transmitting social signals (Adolphs, 2003; Ghazanfar and Santos, 2004). Primates recognize the correspondence between species-specific facial and vocal expressions (Massaro, 1998; Ghazanfar and Logothetis, 2003; Izumi and...

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تاریخ انتشار 2009