The oculomotor (OM) complex is a combination of somatic and parasympatethic neurons. The correct development and wiring of this cranial pair is essential to perform basic functions: eyeball and eyelid movements, pupillary constriction, and lens accommodation. The improper formation or function of this nucleus leads pathologies such as strabismus. We describe the OM organization and function in different vertebrate brains, including chick, mouse, and human. The morphological localization is detailed, as well as the spatial relation with the trochlear nucleus in order to adjust some misleading anatomical topographic descriptions. We detailed the signaling processes needed for the specification of the OM neurons. The transcriptional programs d...
<p>riMLF = rostral interstitial nucleus of the medial longitudinal fasciculus; INC = interstitial ...
The molecular bases of vertebrate eye formation have been extensively investigated during the past 2...
This report contains a gene expression summary of the oculomotor nucleus, derived from the Allen Bra...
The oculomotor (OM) complex is a combination of somatic and parasympatethic neurons. The correct de...
The ocular motor system enables organisms to move their eyes to obtain precise visual feedback. In ...
The ability to visually locate and follow objects of interest relies on ocular motor systems that co...
The pattern of innervation of the extraocular muscles is highly conserved across higher vertebrate s...
The optic nerves (ONs), one of the 12 pairs of cranial nerves (Pair II), together with the olfactory...
Cranial nerves innervate head muscles in a well-characterized and highly conserved pattern. Identifi...
The formation and invagination of the optic stalk coincides with the migration of cranial neural cre...
The oculomotor nucleus is divided into: 1. somatic medial column innervating the superior rectus mus...
The precise control of eye position is of critical importance for proper vision. The eyes must be qu...
Three embryonic tissue sources—the neural ectoderm, the surface ectoderm, and the peri-ocular mesenc...
The vertebrate eye comprises tissues from different embryonic origins: the lens and the cornea are d...
Summary: Highly ordered brain architectures in vertebrates consist of multiple neuron subtypes with ...
<p>riMLF = rostral interstitial nucleus of the medial longitudinal fasciculus; INC = interstitial ...
The molecular bases of vertebrate eye formation have been extensively investigated during the past 2...
This report contains a gene expression summary of the oculomotor nucleus, derived from the Allen Bra...
The oculomotor (OM) complex is a combination of somatic and parasympatethic neurons. The correct de...
The ocular motor system enables organisms to move their eyes to obtain precise visual feedback. In ...
The ability to visually locate and follow objects of interest relies on ocular motor systems that co...
The pattern of innervation of the extraocular muscles is highly conserved across higher vertebrate s...
The optic nerves (ONs), one of the 12 pairs of cranial nerves (Pair II), together with the olfactory...
Cranial nerves innervate head muscles in a well-characterized and highly conserved pattern. Identifi...
The formation and invagination of the optic stalk coincides with the migration of cranial neural cre...
The oculomotor nucleus is divided into: 1. somatic medial column innervating the superior rectus mus...
The precise control of eye position is of critical importance for proper vision. The eyes must be qu...
Three embryonic tissue sources—the neural ectoderm, the surface ectoderm, and the peri-ocular mesenc...
The vertebrate eye comprises tissues from different embryonic origins: the lens and the cornea are d...
Summary: Highly ordered brain architectures in vertebrates consist of multiple neuron subtypes with ...
<p>riMLF = rostral interstitial nucleus of the medial longitudinal fasciculus; INC = interstitial ...
The molecular bases of vertebrate eye formation have been extensively investigated during the past 2...
This report contains a gene expression summary of the oculomotor nucleus, derived from the Allen Bra...