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  • Ongoing Research

Projects

Funded projects

Ongoing Research

Spin3D utilizes our 3D audio dome infrastructure to simulate realistic acoustic environments. This platform allows us to test auditory perception and hearing device performance in complex, dynamic scenarios that mimic real-world challenges, moving beyond standard audiometric testing.

HearHere is a Citizen Science initiative that maps sensory challenges in the urban soundscape. Using the custom “CS-Logger” app, we record environmental noise and subjective hearing experiences to identify urban hotspots and increase the ecological validity of our lab experiments.

HLC_Audio focuses on advanced real-life audio analysis, bridging the gap between controlled lab settings and complex, noisy environments where hearing challenges truly emerge.

The Silence-Illusion Paradigm investigates how the brain constructs auditory reality by contrasting Auditory Illusions (context-driven filling-in) with Silence Perception (input suppression). This project aims to map the “Prediction-Sensation” spectrum across neuroatypical groups (Tinnitus, ASD, ADHD), establishing objective biomarkers for sensory processing disorders.

Fire full-stack physiological EEG paradigm we iterate to develop a method to study fatigue and fatiguability in auditory processing.

ANT (Advancing Neurofeedback in Tinnitus) develops next-generation neurofeedback protocols, bridging computational modeling with clinical application to treat tinnitus.

TEAS (Neuromodulation in Tinnitus) investigates non-invasive electrical stimulation techniques to modulate auditory cortex activity and provide relief for tinnitus patients.

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