This inventor holds 1 USPTO granted patent. Top assignee: Massachusetts Institute of Technology. Active years: 2023.
Company Filing History:
Years Active: 2023
Title: Joseph Perricone: Innovator in Auditory Attention Decoding
Introduction
Joseph Perricone is an accomplished inventor based in Nashville, TN (US). He has made significant contributions to the field of auditory attention decoding through his innovative patent. His work focuses on the intersection of neural data and acoustic signals, paving the way for advancements in understanding auditory attention.
Latest Patents
Joseph Perricone holds a patent for an "End-to-end deep neural network for auditory attention decoding." This patent describes a method that includes receiving neural data responsive to a listener's auditory attention and an acoustic signal from multiple sources. The process involves generating audio data from the received acoustic signal, forming combined data representative of both the neural data and audio data, and providing this combined data to a classification network. The classification network calculates a similarity score between the neural data and the acoustic sources, ultimately identifying the source associated with the listener's auditory attention. This innovative approach has the potential to enhance our understanding of auditory processing.
Career Highlights
Joseph Perricone is affiliated with the Massachusetts Institute of Technology, where he continues to contribute to research and development in his field. His work has garnered attention for its potential applications in various domains, including cognitive science and artificial intelligence.
Collaborations
Joseph has collaborated with notable colleagues such as Gregory Alan Ciccarelli and Christopher J Smalt. These partnerships have enriched his research and expanded the impact of his innovations.
Conclusion
Joseph Perricone is a pioneering inventor whose work in auditory attention decoding exemplifies the integration of neural data and acoustic signals. His contributions are shaping the future of auditory processing and cognitive research.
