Parsing complex acoustic scenes involves an intricate interplay between bottom-up, stimulus-driven salient elements in the scene with top-down, goal-directed, mechanisms that shift our attention to particular parts of the scene. Here, we present a framework for exploring the interaction between these two processes in a simulated cocktail party setting. The model shows improved digit recognition in a multi-talker environment with a goal of tracking the source uttering the highest value. This work highlights the relevance of both data-driven and goal-driven processes in tackling real multi-talker, multi-source sound analysis
UnrestrictedHumans can precisely process and interpret complex scenes in real time despite the treme...
In noisy environments, our ability to understand speech benefits greatly from seeing the speaker's f...
Recently it has been shown to be possible to ascertain the target of a subject´s attention in a cock...
Computational auditory scene analysis (CASA) focuses on the problem of building machines able to un...
# The Author(s) 2015. This article is published with open access at Springerlink.com Abstract How do...
Developing a computational auditory model to solve the cocktail party problem has long bedeviled sci...
SummaryAuditory scenes often contain concurrent sound sources, but listeners are typically intereste...
Bottom-up attention is a sensory-driven selection mechanism that directs perception towards a subset...
Change: Adelaide numbers will change in August when our prefix becomes +61-8-8201 This paper deals w...
The “cocktail party effect”—the ability to focus one’s listening attention on a single talker among ...
Being able to pick out particular sounds, such as speech, against a background of other sounds repre...
The human auditory system has the striking ability to robustly localize and recognize a specific tar...
The cocktail party effect refers to mankind’s ability to focus attention on a single sound within a ...
Though seemingly effortless, our auditory system engages in complex processes and transformations wh...
How we resolve and select single voices out of a complex auditory scene is a foundational problem in...
UnrestrictedHumans can precisely process and interpret complex scenes in real time despite the treme...
In noisy environments, our ability to understand speech benefits greatly from seeing the speaker's f...
Recently it has been shown to be possible to ascertain the target of a subject´s attention in a cock...
Computational auditory scene analysis (CASA) focuses on the problem of building machines able to un...
# The Author(s) 2015. This article is published with open access at Springerlink.com Abstract How do...
Developing a computational auditory model to solve the cocktail party problem has long bedeviled sci...
SummaryAuditory scenes often contain concurrent sound sources, but listeners are typically intereste...
Bottom-up attention is a sensory-driven selection mechanism that directs perception towards a subset...
Change: Adelaide numbers will change in August when our prefix becomes +61-8-8201 This paper deals w...
The “cocktail party effect”—the ability to focus one’s listening attention on a single talker among ...
Being able to pick out particular sounds, such as speech, against a background of other sounds repre...
The human auditory system has the striking ability to robustly localize and recognize a specific tar...
The cocktail party effect refers to mankind’s ability to focus attention on a single sound within a ...
Though seemingly effortless, our auditory system engages in complex processes and transformations wh...
How we resolve and select single voices out of a complex auditory scene is a foundational problem in...
UnrestrictedHumans can precisely process and interpret complex scenes in real time despite the treme...
In noisy environments, our ability to understand speech benefits greatly from seeing the speaker's f...
Recently it has been shown to be possible to ascertain the target of a subject´s attention in a cock...