Jennifer Groh
Jennifer Groh is a professor of psychology and neuroscience at Duke University. Her research focuses on multisensory processing and how the brain integrates visual and auditory signals. Her published work examines neural multiplexing across sensory pathways, sound localization, and the mechanisms of eye movement-related eardrum oscillations (EMREOs).
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Publications
- Spike count analysis for multiplexing inference (SCAMPI).
- Multiplexing of visual-auditory signals in a predominantly auditory brain region.
- Hearing sounds when the eyes move: A case study implicating the tensor tympani in eye movement-related peripheral auditory activity.
- Individual variation in sound localization accuracy is correlated with the properties of eye movement-related eardrum oscillations (EMREOs).
- Evidence of phase resetting, not just pulses of sound, during eye movement-related eardrum oscillations (EMREOs).
- Multiplexing of visual-auditory signals in a predominantly auditory brain region.
- Visually evoked activity and variable modulation of auditory responses in the macaque inferior colliculus.
- Eye movement-related eardrum oscillations do not require current visual input.
- Multiple objects evoke fluctuating responses in several regions of the visual pathway.
- Signal switching may enhance processing power of the brain.
- Spike Count Analysis for MultiPlexing Inference (SCAMPI).
- Individual similarities and differences in eye-movement-related eardrum oscillations (EMREOs).
- Conserved features of eye movement related eardrum oscillations (EMREOs) across humans and monkeys.
- Multiple objects evoke fluctuating responses in several regions of the visual pathway.
- Conserved features of eye movement related eardrum oscillations (EMREOs) across humans and monkeys.
- Individual similarities and differences in eye-movement-related eardrum oscillations (EMREOs).
- Parametric information about eye movements is sent to the ears.
- Multiple sounds degrade the frequency representation in monkey inferior colliculus.
- Coordinated multiplexing of information about separate objects in visual cortex.
- Compensating for a shifting world: evolving reference frames of visual and auditory signals across three multimodal brain areas.
- Visual Signals in the Mammalian Auditory System.
- ANALYZING SECOND ORDER STOCHASTICITY OF NEURAL SPIKING UNDER STIMULI-BUNDLE EXPOSURE.
- Monkeys and humans implement causal inference to simultaneously localize auditory and visual stimuli.
- Sensitivity and specificity of a Bayesian single trial analysis for time varying neural signals.
- Hemisphere-specific properties of the ventriloquism aftereffect.
- Hearing in a world of light: why, where, and how visual and auditory information are connected by the brain.
- Beyond the labeled line: variation in visual reference frames from intraparietal cortex to frontal eye fields and the superior colliculus.
- The eardrums move when the eyes move: A multisensory effect on the mechanics of hearing.
- Single neurons may encode simultaneous stimuli by switching between activity patterns.
- Similar prevalence and magnitude of auditory-evoked and visually evoked activity in the frontal eye fields: implications for multisensory motor control.
- Effects of Electrical Stimulation in the Inferior Colliculus on Frequency Discrimination by Rhesus Monkeys and Implications for the Auditory Midbrain Implant.
- Different stimuli, different spatial codes: a visual map and an auditory rate code for oculomotor space in the primate superior colliculus.
- Subjective experience of sensation in anorexia nervosa.
- Looking at the ventriloquist: visual outcome of eye movements calibrates sound localization.
- Distribution of eye position information in the monkey inferior colliculus.
- Auditory signals evolve from hybrid- to eye-centered coordinates in the primate superior colliculus.
- Distribution of visual and saccade related information in the monkey inferior colliculus.
- Sounds and beyond: multisensory and other non-auditory signals in the inferior colliculus.
- Effects of Initial Eye Position on Saccades Evoked by Microstimulation in the Primate Superior Colliculus: Implications for Models of the SC Read-Out Process.
- Systematic mapping of the monkey inferior colliculus reveals enhanced low frequency sound representation.
- Comparison of gain-like properties of eye position signals in inferior colliculus versus auditory cortex of primates.
- Motor-related signals in the intraparietal cortex encode locations in a hybrid, rather than eye-centered reference frame.
- Multisensory guidance of orienting behavior.
- Reference frame of the ventriloquism aftereffect.
- A rate code for sound azimuth in monkey auditory cortex: implications for human neuroimaging studies.
- Visual- and saccade-related signals in the primate inferior colliculus.
- Representation of eye position in primate inferior colliculus.
- Long lasting attenuation by prior sounds in auditory cortex of awake primates.
- Seeing sounds: visual and auditory interactions in the brain.
- Effects of reward and behavioral context on neural activity in the primate inferior colliculus.
- The "other" transformation required for visual-auditory integration: representational format.
- Eye-centered, head-centered, and complex coding of visual and auditory targets in the intraparietal sulcus.
- Auditory saccades from different eye positions in the monkey: implications for coordinate transformations.
- Eye position affects activity in primary auditory cortex of primates.
- A monotonic code for sound azimuth in primate inferior colliculus.