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It appears likely, therefore, that in humans the cortex is reserved for the analysis of more complex auditory stimuli, such as speech and music, for which the temporal sequence of sounds is equally important.
We also found that simple auditory route instructions could be followed without significant interference to a simulated driving task, whereas more complex auditory instructions did cause interference.
These regions are, in general, considered higher-order auditory areas, and are thought to be driven mostly by more complex auditory features and stimuli (both in humans and in other mammals) such as spatial location, source identity, pitch and melody and different types of object sounds, species-specific vocalizations, or speech rather than by pure tones [43], [44], [45].
These findings suggest that the non-dominant parietal lobe may have a critical role in the perceptual organization of more complex auditory scenes.
Although this study does not focus on the affective features of the music, it indicates that more complex auditory stimuli like classical music activate right premotor structures in humans.
Patients with bvFTD and SD have been shown to have either normal or depressed autonomic reactivity to loud tones [13], [33] and more complex auditory and multimodal stimuli [34], [35] while autonomic reactivity may be retained in AD [33].
Similar(53)
"The left hemisphere is also more responsive to complex auditory stimuli, not just speech but rapid tone sequences," she said.
Although we have examined this variation in behavior in response to pure tones in an otherwise noiseless environment, equally large variations between individuals may occur in response to more complex and realistic auditory stimuli.
However, lip rounding appears to require more complex operations along the auditory pathway resulting in more subtle effects requiring alternative methods of data analyses.
Interestingly, the trajectories of the change were not the same for the auditory and visual responses, in that auditory responses were more complex than visual in infants and complexity in both modalities gradually merged to be indistinguishable in adults.
The results suggest that neurons in medial auditory cortex analyze the basic acoustic features of sounds while neurons in lateral regions process more complex, behaviorally significant attributes of auditory signals.
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