Current biology : CB
December 1, 2025
Torge Dellert, Henning Balster, Insa Schlossmacher et al.
Conscious auditory perception relies more on sensory brain regions than on widespread fronto-parietal networks. In an fMRI study using a no-report inattentional deafness paradigm, 63 participants performed an auditory distractor task while task-irrelevant sounds were played. Those aware of the sounds showed strong activation in secondary auditory areas (superior temporal gyrus, sulcus, and middle temporal gyrus) and nodes of attention networks. Unaware processing activated only primary auditory regions. Comparing aware and unaware participants, auditory awareness was associated with extensive sensory activation, while fronto-parietal activation was weaker and only detected in Bayesian analysis. This suggests stimulus-specific sensory activity dominates conscious auditory perception.
Scientific reports
December 19, 2023
Antje Peters, Maximilian Bruchmann, Torge Dellert et al.
Inattentional numbness, the somatosensory equivalent of inattentional blindness or deafness, was studied with fMRI in 44 participants who received weak electrical stimulation on the left hand while performing a demanding visual task. Half were told the tactile stimuli would be above detection threshold, half below. Ten participants did not consciously perceive the stimuli. Prior information did not significantly affect awareness. Awareness of stimuli increased activation in the contralateral secondary somatosensory cortex but not in the primary somatosensory cortex or frontoparietal areas. The results suggest that somatosensory awareness relies on higher somatosensory cortex areas and does not require strong activation in extended anterior or posterior networks seen when stimuli are task-relevant.
The Journal of neuroscience : the official journal of the Society for Neuroscience
September 15, 2021
Torge Dellert, Miriam Müller-Bardorff, Insa Schlossmacher et al.
Conscious visual perception of faces is linked to early processing in sensory brain regions, especially the fusiform gyrus, rather than requiring later widespread frontoparietal network activity. Using simultaneous EEG-fMRI and an inattentional blindness paradigm with three identical phases, participants either spontaneously noticed or remained blind to faces during a distractor task. Bayesian analysis showed conscious face perception most strongly activated the fusiform gyrus (fMRI) and produced the N170 and visual awareness negativity (EEG), with smaller effects in occipital and prefrontal cortex. In contrast, task-relevant face processing activated extensive occipitotemporal, frontoparietal, and attentional networks and elicited a pronounced P3b component, suggesting strong frontoparietal activity and the P3b reflect task-related processes rather than consciousness itself.
NeuroImage
March 1, 2021
Insa Schlossmacher, Torge Dellert, Maximilian Bruchmann et al.
Hearing spoken words while distracted, people who were told about the words became aware of them, whereas uninformed participants did not. Brain recordings showed that awareness of the words was accompanied by an early anterior negativity (auditory awareness negativity, AAN) regardless of whether the words were task-relevant. Late positive brain responses (P3-like) appeared only when participants had to actively respond to the words. These results suggest that early negative brain components, not late positive ones, mark conscious awareness across different senses, supporting the idea that early sensory processing is crucial for conscious perception.