SummaryIntensity-tuned neurons, characterized by their nonmonotonic response-level function, may play important roles in the encoding of sound intensity-related information. The synaptic mechanisms underlying intensity tuning remain unclear. Here, in vivo whole-cell recordings in rat auditory cortex revealed that intensity-tuned neurons, mostly clustered in a posterior zone, receive imbalanced tone-evoked excitatory and inhibitory synaptic inputs. Excitatory inputs exhibit nonmonotonic intensity tuning, whereas with tone intensity increments, the temporally delayed inhibitory inputs increase monotonically in strength. In addition, this delay reduces with the increase of intensity, resulting in an enhanced suppression of excitation at high i...
Summary: Cortical neurons are heterogeneous in their functional properties. This heterogeneity is fu...
The precise pattern of neural activity in the auditory cortex, which governs our perception of sound...
The mammalian sensory cortex is composed of multiple types of inhibitory and excitatory neurons, whi...
SummaryIntensity-tuned neurons, characterized by their nonmonotonic response-level function, may pla...
UnrestrictedNeurons are organized into circuits to process various information in the brain. To unde...
Neurons in the primary auditory cortex are tuned to the intensity and specific frequencies of sounds...
SummaryCortical inhibition plays an important role in shaping neuronal processing. The underlying sy...
2014-09-10Sound information is transmitted into electrical signals in the inner ear and these signal...
Intensity and frequency are the two main properties of sound. The non-monotonic neurons in the audit...
Summary: Neuronal stimulus selectivity is shaped by feedforward and recurrent excitatory-inhibitory ...
Lateral inhibition is a fundamental circuit operation that sharpens the tuning properties of cortica...
The auditory cortex is essential for encoding complex and behaviorally relevant sounds. Many questio...
The interaural level difference (ILD) is a sound localization cue first computed in the lateral supe...
Hierarchical processing of sensory information requires interaction at multiple levels along the per...
SummaryA canonical feedforward circuit is proposed to underlie sensory cortical responses with balan...
Summary: Cortical neurons are heterogeneous in their functional properties. This heterogeneity is fu...
The precise pattern of neural activity in the auditory cortex, which governs our perception of sound...
The mammalian sensory cortex is composed of multiple types of inhibitory and excitatory neurons, whi...
SummaryIntensity-tuned neurons, characterized by their nonmonotonic response-level function, may pla...
UnrestrictedNeurons are organized into circuits to process various information in the brain. To unde...
Neurons in the primary auditory cortex are tuned to the intensity and specific frequencies of sounds...
SummaryCortical inhibition plays an important role in shaping neuronal processing. The underlying sy...
2014-09-10Sound information is transmitted into electrical signals in the inner ear and these signal...
Intensity and frequency are the two main properties of sound. The non-monotonic neurons in the audit...
Summary: Neuronal stimulus selectivity is shaped by feedforward and recurrent excitatory-inhibitory ...
Lateral inhibition is a fundamental circuit operation that sharpens the tuning properties of cortica...
The auditory cortex is essential for encoding complex and behaviorally relevant sounds. Many questio...
The interaural level difference (ILD) is a sound localization cue first computed in the lateral supe...
Hierarchical processing of sensory information requires interaction at multiple levels along the per...
SummaryA canonical feedforward circuit is proposed to underlie sensory cortical responses with balan...
Summary: Cortical neurons are heterogeneous in their functional properties. This heterogeneity is fu...
The precise pattern of neural activity in the auditory cortex, which governs our perception of sound...
The mammalian sensory cortex is composed of multiple types of inhibitory and excitatory neurons, whi...