The auditory and visual perception systems have developed special processing strategies for ecologically valid motion stimuli, utilizing some of the statistical properties of the real world. A well-known example is the perception of biological motion, for example, the perception of a human walker. The aim of the current study was to identify the cortical network involved in the integration of auditory and visual biological motion signals. We first determined the cortical regions of auditory and visual coactivation (Experiment 1); a conjunction analysis based on unimodal brain activations identified four regions: middle temporal area, inferior parietal lobule, ventral premotor cortex, and cerebellum. The brain activations arising from bimoda...
Motion-sound synesthesia is characterized by illusory auditory sensations linked to the pattern and ...
Previous neuroimaging studies devoted to auditory motion processing have shown the involvement of a ...
Abstract ■ Using MRI-guided off-line TMS, we targeted two areas implicated in biological motion proc...
The auditory and visual perception systems have developed special processing strategies for ecologic...
The auditory and visual perception systems have developed special processing strategies for ecologic...
The auditory and visual perception systems have developed special processing strategies for ecologic...
The processing of biological motion is a critical, everyday task performed with remarkable efficienc...
Real-life moving objects are often detected by multisensory cues. We investigated the cortical activ...
The processing of biological motion is a critical, everyday task performed with remarkable efficienc...
The ability of animals to detect motion is critical for survival, and errors or even delays in motio...
AbstractBackground Physiological studies of the macaque brain have shown that there is a large expan...
AbstractIn monkeys, posterior parietal and premotor cortex play an important integrative role in pol...
For effective interactions with our dynamic environment, it is critical for the brain to integrate m...
AbstractWe assessed the human brain network for sound-motion processing using the same virtual stimu...
Incongruencies between auditory and visual signals negatively affect human performance and cause sel...
Motion-sound synesthesia is characterized by illusory auditory sensations linked to the pattern and ...
Previous neuroimaging studies devoted to auditory motion processing have shown the involvement of a ...
Abstract ■ Using MRI-guided off-line TMS, we targeted two areas implicated in biological motion proc...
The auditory and visual perception systems have developed special processing strategies for ecologic...
The auditory and visual perception systems have developed special processing strategies for ecologic...
The auditory and visual perception systems have developed special processing strategies for ecologic...
The processing of biological motion is a critical, everyday task performed with remarkable efficienc...
Real-life moving objects are often detected by multisensory cues. We investigated the cortical activ...
The processing of biological motion is a critical, everyday task performed with remarkable efficienc...
The ability of animals to detect motion is critical for survival, and errors or even delays in motio...
AbstractBackground Physiological studies of the macaque brain have shown that there is a large expan...
AbstractIn monkeys, posterior parietal and premotor cortex play an important integrative role in pol...
For effective interactions with our dynamic environment, it is critical for the brain to integrate m...
AbstractWe assessed the human brain network for sound-motion processing using the same virtual stimu...
Incongruencies between auditory and visual signals negatively affect human performance and cause sel...
Motion-sound synesthesia is characterized by illusory auditory sensations linked to the pattern and ...
Previous neuroimaging studies devoted to auditory motion processing have shown the involvement of a ...
Abstract ■ Using MRI-guided off-line TMS, we targeted two areas implicated in biological motion proc...