The medial superior olivary (MSO) nucleus forms part of the binaural auditory pathway in the brain stem where it is involved in sound source localisation. It detects interaural time differences (ITDs) of sounds arriving at the two ears by functioning as a coincidence detector of the bilateral excitatory inputs from spherical bushy cells of the anterior ventral cochlear nuclei (AVCN). The MSO also receives a unilateral inhibitory synaptic input from globular bushy cells of the contralateral AVCN, via the medial nucleus of the trapezoid body (MNTB). Investigations in this thesis focus on the inhibitory synaptic input.;Transverse brain stem slices were prepared from 6-13 day old Lister Hooded rats and whole cell patch clamp recordings were mad...
Microsecond differences in the arrival time of a sound at the two ears (interaural time differences,...
Microsecond differences in the arrival time of a sound at the two ears (interaural time differences,...
Properties of glycine (GlyR) and GABAB (GABABR) receptors were studied in the adult rat medial nucle...
The medial superior olive (MSO) is a nucleus located in the auditory brainstem receiving binaural in...
The superior olivary complex (SOC) is the first convert this information to an inhibitory, glycinerg...
The largest nucleus of the human superior olivary complex is the medial superior olive (MSO), which ...
The ascending auditory pathway is characterized by parallel processing. At the brain stem level, sev...
The largest nucleus of the human superior olivary complex is the medial superior olive (MSO), which ...
The ascending auditory pathway is characterized by parallel processing. At the brain stem level, sev...
The ascending auditory pathway is characterized by parallel processing. At the brain stem level, sev...
Abstract. A group of central auditory neurons residing in the lateral superior olivary nucleus (LSO)...
Cochlear dependency of glutamate co-transmission at the medial nucleus of the trapezoid body (MNTB) ...
The medial superior olive (MSO) senses microsecond differences in the coincidence of binaural signal...
The medial nucleus of the trapezoid body (MNTB) in the superior olivary complex (SOC) is an inhibito...
Establishing precise neuronal connections is crucial for normal brain function. In many parts of the...
Microsecond differences in the arrival time of a sound at the two ears (interaural time differences,...
Microsecond differences in the arrival time of a sound at the two ears (interaural time differences,...
Properties of glycine (GlyR) and GABAB (GABABR) receptors were studied in the adult rat medial nucle...
The medial superior olive (MSO) is a nucleus located in the auditory brainstem receiving binaural in...
The superior olivary complex (SOC) is the first convert this information to an inhibitory, glycinerg...
The largest nucleus of the human superior olivary complex is the medial superior olive (MSO), which ...
The ascending auditory pathway is characterized by parallel processing. At the brain stem level, sev...
The largest nucleus of the human superior olivary complex is the medial superior olive (MSO), which ...
The ascending auditory pathway is characterized by parallel processing. At the brain stem level, sev...
The ascending auditory pathway is characterized by parallel processing. At the brain stem level, sev...
Abstract. A group of central auditory neurons residing in the lateral superior olivary nucleus (LSO)...
Cochlear dependency of glutamate co-transmission at the medial nucleus of the trapezoid body (MNTB) ...
The medial superior olive (MSO) senses microsecond differences in the coincidence of binaural signal...
The medial nucleus of the trapezoid body (MNTB) in the superior olivary complex (SOC) is an inhibito...
Establishing precise neuronal connections is crucial for normal brain function. In many parts of the...
Microsecond differences in the arrival time of a sound at the two ears (interaural time differences,...
Microsecond differences in the arrival time of a sound at the two ears (interaural time differences,...
Properties of glycine (GlyR) and GABAB (GABABR) receptors were studied in the adult rat medial nucle...