Scholarly Colloquia and Events

  • 11/17 Dr. Adrian KC Lee: Auditory Spatial Tasks

    Behavioral and neurophysiological evidence regarding the influence of oculomotor circuitry on auditory spatial tasks

    Adrian KC Lee, ScD
    Speech & Hearing Sciences
    University of Washington

    Thursday, November 17th 2022
    2:00 pm ET
    Oak Hall 408 (virtual) and livestream

    Register: Oak Hall watch party or livestream

    Spatial cues play an important role in segregating auditory objects in a complex acoustical scene. Spatial attention is often considered to be supramodal, e.g., crossmodal spatial cues can enhance the perception of stimuli in another modality when presented in the same location. Therefore, it is not surprising to find similarities between auditory and visual spatial attentional networks. An outstanding question, however, is how the supramodal spatial attention network functions if the listener attends instead to non-spatial acoustic features, e.g., pitch? In vision, the coupling between oculomotor circuitry and the attentional network is well studied. Are there behavioral consequences related to this tight oculomotor coupling in the context of auditory spatial tasks? We addressed these questions using three approaches. First, in a series of neuroimaging experiments using combined magneto- and electro-encephalography constrained by anatomical MRI data, we explored how different cortical regions are recruited for auditory spatial and non-spatial attention both during maintenance of attention to a single auditory stream and switching of attention between streams. Second, based on our newly developed sparse-plus-low-rank graphical approach that enables modelling of structured relationships between time series in a big data setting, we are starting work inferring functional connectivity between cortical regions to tease apart how different cortical nodes are coordinated to perform different auditory attentional tasks. Finally, we used psychophysical methods to address whether there are behavioral consequences related to this tight coupling between the oculomotor and attentional networks in the context of auditory spatial tasks.

    For more information, contact: Brain Imaging Research Center at birc@uconn.edu