Our ability to parse our acoustic environment relies on the brain's capacity to extract statistical regularities from surrounding sounds. Previous work in regularity extraction has predominantly focused on the brain's sensitivity to predictable patterns in sound sequences. However, natural sound environments are rarely completely predictable, often containing some level of randomness, yet the brain is able to effectively interpret its surroundings by extracting useful information from stochastic sounds. It has been previously shown that the brain is sensitive to the marginal lower-order statistics of sound sequences (i.e., mean and variance). In this work, we investigate the brain's sensitivity to higher-order statistics describing temporal...
In human perception, exogenous noise is known to yield a masking effect, i.e. an increase of the per...
The brain draws on knowledge of statistical structure in the environment to facilitate detection of ...
The auditory system has developed very sophisticated mechanisms to seek regularities and to extract ...
We constantly look for patterns in the environment that allow us to learn its key regularities. Thes...
We constantly look for patterns in the environment that allow us to learn its key regularities. Thes...
We constantly look for patterns in the environment that allow us to learn its key regularities. Thes...
This thesis uses specifically structured sound sequences, with electroencephalography (EEG) recordin...
The human auditory system effortlessly parses complex sensory inputs despite the ever-present random...
Abstract Sensitivity to sound-level statistics is crucial for optimal perception, but research has f...
Detecting regularity and change in the environment is crucial for survival, as it enables making pre...
The ability to learn about regularities in the environment and to make predictions about future even...
Humans are highly sensitive to statistical regularities in their environment. This phenomenon, usual...
Stimulus-specific adaptation is the phenomenon whereby neural response magnitude decreases with repe...
Recent computational models of perception conceptualize auditory oddball responses as signatures of ...
As listeners we tend to detect patterns in what we hear regardless of whether this is music, languag...
In human perception, exogenous noise is known to yield a masking effect, i.e. an increase of the per...
The brain draws on knowledge of statistical structure in the environment to facilitate detection of ...
The auditory system has developed very sophisticated mechanisms to seek regularities and to extract ...
We constantly look for patterns in the environment that allow us to learn its key regularities. Thes...
We constantly look for patterns in the environment that allow us to learn its key regularities. Thes...
We constantly look for patterns in the environment that allow us to learn its key regularities. Thes...
This thesis uses specifically structured sound sequences, with electroencephalography (EEG) recordin...
The human auditory system effortlessly parses complex sensory inputs despite the ever-present random...
Abstract Sensitivity to sound-level statistics is crucial for optimal perception, but research has f...
Detecting regularity and change in the environment is crucial for survival, as it enables making pre...
The ability to learn about regularities in the environment and to make predictions about future even...
Humans are highly sensitive to statistical regularities in their environment. This phenomenon, usual...
Stimulus-specific adaptation is the phenomenon whereby neural response magnitude decreases with repe...
Recent computational models of perception conceptualize auditory oddball responses as signatures of ...
As listeners we tend to detect patterns in what we hear regardless of whether this is music, languag...
In human perception, exogenous noise is known to yield a masking effect, i.e. an increase of the per...
The brain draws on knowledge of statistical structure in the environment to facilitate detection of ...
The auditory system has developed very sophisticated mechanisms to seek regularities and to extract ...