The auditory system provides us with extremely rich and precise information about the outside world. Once a sound reaches our ears, the acoustic information it carries travels from the cochlea all the way to the auditory cortex, where its complexity and nuances are integrated. In the auditory cortex, functional circuits are formed by subpopulations of intermingled excitatory and inhibitory cells. In this review, we discuss recent evidence of the specific contributions of inhibitory neurons in sound processing and integration. We first examine intrinsic properties of three main classes of inhibitory interneurons in the auditory cortex. Then, we describe how inhibition shapes the responsiveness of the auditory cortex to sound. Finally, we dis...
Our ability to make sense of the auditory world results from neural processing that begins in the ea...
The auditory cortex is critical for the understanding of speech. This task is accomplished through t...
The mammalian sensory cortex is composed of multiple types of inhibitory and excitatory neurons, whi...
The precise pattern of neural activity in the auditory cortex, which governs our perception of sound...
The auditory cortex is essential for encoding complex and behaviorally relevant sounds. Many questio...
There seems little doubt that from the earliest evolutionary beginnings, inhibition has been a funda...
Despite their indispensable roles in sensory processing, little is known about inhibitory interneuro...
The brain contains neurons of many different types interacting in complex functional circuits. To pr...
<p>Auditory sensations can arise from objects in our environment or from our own actions, such as wh...
Our ability to make sense of the auditory world results from neural processing that begins in the ea...
Sensory systems integrate multiple stimulus features to generate coherent percepts. Spectral surroun...
Recent findings suggest, that perception of acoustic stimuli in the mouse auditory cortex relies on ...
Connectivity determines the function of neural circuits and it is the gateway to behavioral output. ...
Faithful representation of sound envelopes in primary auditory cortex (A1) is vital for temporal pro...
Neurons in the primary auditory cortex are tuned to the intensity and specific frequencies of sounds...
Our ability to make sense of the auditory world results from neural processing that begins in the ea...
The auditory cortex is critical for the understanding of speech. This task is accomplished through t...
The mammalian sensory cortex is composed of multiple types of inhibitory and excitatory neurons, whi...
The precise pattern of neural activity in the auditory cortex, which governs our perception of sound...
The auditory cortex is essential for encoding complex and behaviorally relevant sounds. Many questio...
There seems little doubt that from the earliest evolutionary beginnings, inhibition has been a funda...
Despite their indispensable roles in sensory processing, little is known about inhibitory interneuro...
The brain contains neurons of many different types interacting in complex functional circuits. To pr...
<p>Auditory sensations can arise from objects in our environment or from our own actions, such as wh...
Our ability to make sense of the auditory world results from neural processing that begins in the ea...
Sensory systems integrate multiple stimulus features to generate coherent percepts. Spectral surroun...
Recent findings suggest, that perception of acoustic stimuli in the mouse auditory cortex relies on ...
Connectivity determines the function of neural circuits and it is the gateway to behavioral output. ...
Faithful representation of sound envelopes in primary auditory cortex (A1) is vital for temporal pro...
Neurons in the primary auditory cortex are tuned to the intensity and specific frequencies of sounds...
Our ability to make sense of the auditory world results from neural processing that begins in the ea...
The auditory cortex is critical for the understanding of speech. This task is accomplished through t...
The mammalian sensory cortex is composed of multiple types of inhibitory and excitatory neurons, whi...