International audienceRhombomeres (r) contribute to brainstem auditory nuclei during development. Hox genes are determinants of rhombomere-derived fate and neuronal connectivity. Little is known about the contribution of individual rhombomeres and their associated Hox codes to auditory sensorimotor circuitry. Here, we show that r4 contributes to functionally linked sensory and motor components, including the ventral nucleus of lateral lemniscus, posterior ventral cochlear nuclei (VCN), and motor olivocochlear neurons. Assembly of the r4-derived auditory components is involved in sound perception and depends on regulatory interactions between Hoxb1 and Hoxb2. Indeed, in Hoxb1 and Hoxb2 mutant mice the transmission of low-level auditory stimu...
Hoxb1 gene is essential for the specification of rhombomere 4 (r4)-derived auditory sensory and moto...
Sound vibration is sensed by hair cells in the inner ear. The information is transmitted to the coch...
The assembly of central auditory subcircuits depends on the spatially and temporally ordered sequenc...
<div><p>Rhombomeres (r) contribute to brainstem auditory nuclei during development. <em>Hox</em> gen...
Rhombomeres (r) contribute to brainstem auditory nuclei during development. Hox genes are determinan...
Rhombomeres (r) contribute to brainstem auditory nuclei during development. Hox genes are determinan...
Rhombomeres (r) contribute to brainstem auditory nuclei during development. Hox genes are determinan...
The central auditory pathway consists of sensory nuclei that transmit the ascending acoustic informa...
The central auditory pathway consists of sensory nuclei that transmit the ascending acoustic informa...
Rhombomere r4 (r4) and Hox associated genes Hoxb1 and Hoxb2 contribute to the formation of specific ...
Rhombomere r4 (r4) and Hox associated genes Hoxb1 and Hoxb2 contribute to the formation of specific ...
The adult brainstem controls vital functions by processing sensory information and motor coordinatio...
The central auditory pathway consists of sensory nuclei that transmit the ascending acoustic informa...
The central auditory pathway consists of sensory nuclei that transmit the ascending acoustic informa...
Hoxb1 gene is essential for the specification of rhombomere 4 (r4)-derived auditory sensory and moto...
Hoxb1 gene is essential for the specification of rhombomere 4 (r4)-derived auditory sensory and moto...
Sound vibration is sensed by hair cells in the inner ear. The information is transmitted to the coch...
The assembly of central auditory subcircuits depends on the spatially and temporally ordered sequenc...
<div><p>Rhombomeres (r) contribute to brainstem auditory nuclei during development. <em>Hox</em> gen...
Rhombomeres (r) contribute to brainstem auditory nuclei during development. Hox genes are determinan...
Rhombomeres (r) contribute to brainstem auditory nuclei during development. Hox genes are determinan...
Rhombomeres (r) contribute to brainstem auditory nuclei during development. Hox genes are determinan...
The central auditory pathway consists of sensory nuclei that transmit the ascending acoustic informa...
The central auditory pathway consists of sensory nuclei that transmit the ascending acoustic informa...
Rhombomere r4 (r4) and Hox associated genes Hoxb1 and Hoxb2 contribute to the formation of specific ...
Rhombomere r4 (r4) and Hox associated genes Hoxb1 and Hoxb2 contribute to the formation of specific ...
The adult brainstem controls vital functions by processing sensory information and motor coordinatio...
The central auditory pathway consists of sensory nuclei that transmit the ascending acoustic informa...
The central auditory pathway consists of sensory nuclei that transmit the ascending acoustic informa...
Hoxb1 gene is essential for the specification of rhombomere 4 (r4)-derived auditory sensory and moto...
Hoxb1 gene is essential for the specification of rhombomere 4 (r4)-derived auditory sensory and moto...
Sound vibration is sensed by hair cells in the inner ear. The information is transmitted to the coch...
The assembly of central auditory subcircuits depends on the spatially and temporally ordered sequenc...