The mismatch negativity (MMN) provides a correlate of automatic auditory discrimination in human auditory cortex that is elicited in response to violation of any acoustic regularity. Recently, deviance-related responses were found at much earlier cortical processing stages as reflected by the middle latency response (MLR) of the auditory evoked potential, and even at the level of the auditory brainstem as reflected by the frequency following response (FFR). However, no study has reported deviance-related responses in the FFR, MLR and long latency response (LLR) concurrently in a single recording protocol. Amplitude-modulated (AM) sounds were presented to healthy human participants in a frequency oddball paradigm to investigate deviance-rela...
Objective: Verify and explore unexpected results suggesting an effect of deviance direction (shorter...
Auditory deviance detection in humans is indexed by the mismatch negativity (MMN), a component of th...
The capacity of the human brain to detect deviance in the acoustic environment pre-attentively is re...
The mismatch negativity (MMN) provides a correlate of automatic auditory discrimination in human aud...
Themismatch negativity (MMN) provides a correlate of automatic auditory discrimination in human audi...
Auditory deviance detection in humans is indexed by the mismatch negativity (MMN), a component of th...
Previous electrophysiological and neuroimaging studies suggest that the mismatch negativity (MMN) is...
In this study we compared the amplitude, latency, and spatial distribution of the mismatch negativit...
Prompt detection of unexpected changes in the sensory environment is critical for survival. In the a...
The mismatch negativity (MMN) component of the auditory event-related potential is associated with a...
The detection of deviant sounds is a crucial function of the auditory system and is reflected by the...
The detection of deviant sounds is a crucial function of the auditory system and is reflected by the...
Mismatch negativity (MMN) is a component of the difference waveform derived from passive auditory od...
The detection of deviant sounds is a crucial function of the auditory system and is reflected by the...
Auditory deviance detection in humans is indexed by the mismatch negativity (MMN), a component of th...
Objective: Verify and explore unexpected results suggesting an effect of deviance direction (shorter...
Auditory deviance detection in humans is indexed by the mismatch negativity (MMN), a component of th...
The capacity of the human brain to detect deviance in the acoustic environment pre-attentively is re...
The mismatch negativity (MMN) provides a correlate of automatic auditory discrimination in human aud...
Themismatch negativity (MMN) provides a correlate of automatic auditory discrimination in human audi...
Auditory deviance detection in humans is indexed by the mismatch negativity (MMN), a component of th...
Previous electrophysiological and neuroimaging studies suggest that the mismatch negativity (MMN) is...
In this study we compared the amplitude, latency, and spatial distribution of the mismatch negativit...
Prompt detection of unexpected changes in the sensory environment is critical for survival. In the a...
The mismatch negativity (MMN) component of the auditory event-related potential is associated with a...
The detection of deviant sounds is a crucial function of the auditory system and is reflected by the...
The detection of deviant sounds is a crucial function of the auditory system and is reflected by the...
Mismatch negativity (MMN) is a component of the difference waveform derived from passive auditory od...
The detection of deviant sounds is a crucial function of the auditory system and is reflected by the...
Auditory deviance detection in humans is indexed by the mismatch negativity (MMN), a component of th...
Objective: Verify and explore unexpected results suggesting an effect of deviance direction (shorter...
Auditory deviance detection in humans is indexed by the mismatch negativity (MMN), a component of th...
The capacity of the human brain to detect deviance in the acoustic environment pre-attentively is re...