Neurons in the medial superior olive (MSO) process microsecond interaural time differences, the major cue for localizing low-frequency sounds, by comparing the relative arrival time of binaural, glutamatergic excitatory inputs. This coincidence detection mechanism is additionally shaped by highly specialized glycinergic inhibition. Traditionally, it is assumed that the binaural inputs are conveyed by many independent fibers, but such an anatomical arrangement may decrease temporal precision. Short-term depression on the other hand might enhance temporal fidelity during ongoing activity. For the first time we show that binaural coincidence detection in MSO neurons may require surprisingly few but strong inputs, challenging long-held assumpti...
The dominant cue for localization of low-frequency sounds are microsecond differences in the time-of...
The largest nucleus of the human superior olivary complex is the medial superior olive (MSO), which ...
The dominant cue for localization of low-frequency sounds are microsecond differences in the time-of...
Neurons in the medial superior olive (MSO) process microsecond interaural time differences, the majo...
Neurons in the medial superior olive (MSO) process microsecond interaural time differences, the majo...
Neurons in the medial superior olive (MSO) process microsecond interaural time differences, the majo...
Neurons in the medial superior olive (MSO) process microsecond interaural time differences, the majo...
Neurons in themedial superior olive (MSO) processmicrosecond interaural time differences, themajor c...
Neurons in the medial superior olive (MSO) detect microsecond differences in the arrival time of sou...
Neurons in the medial superior olive (MSO) detect microsecond differences in the arrival time of sou...
Neurons in the medial superior olive (MSO) detect microsecond differences in the arrival time of sou...
Neurons in the medial superior olive (MSO) detect microsecond differences in the arrival time of sou...
Neurons in the medial superior olive (MSO) detect microsecond differences in the arrival time of sou...
The dominant cue for localization of low-frequency sounds are microsecond differences in the time-of...
The dominant cue for localization of low-frequency sounds are microsecond differences in the time-of...
The dominant cue for localization of low-frequency sounds are microsecond differences in the time-of...
The largest nucleus of the human superior olivary complex is the medial superior olive (MSO), which ...
The dominant cue for localization of low-frequency sounds are microsecond differences in the time-of...
Neurons in the medial superior olive (MSO) process microsecond interaural time differences, the majo...
Neurons in the medial superior olive (MSO) process microsecond interaural time differences, the majo...
Neurons in the medial superior olive (MSO) process microsecond interaural time differences, the majo...
Neurons in the medial superior olive (MSO) process microsecond interaural time differences, the majo...
Neurons in themedial superior olive (MSO) processmicrosecond interaural time differences, themajor c...
Neurons in the medial superior olive (MSO) detect microsecond differences in the arrival time of sou...
Neurons in the medial superior olive (MSO) detect microsecond differences in the arrival time of sou...
Neurons in the medial superior olive (MSO) detect microsecond differences in the arrival time of sou...
Neurons in the medial superior olive (MSO) detect microsecond differences in the arrival time of sou...
Neurons in the medial superior olive (MSO) detect microsecond differences in the arrival time of sou...
The dominant cue for localization of low-frequency sounds are microsecond differences in the time-of...
The dominant cue for localization of low-frequency sounds are microsecond differences in the time-of...
The dominant cue for localization of low-frequency sounds are microsecond differences in the time-of...
The largest nucleus of the human superior olivary complex is the medial superior olive (MSO), which ...
The dominant cue for localization of low-frequency sounds are microsecond differences in the time-of...