Javascript must be enabled to continue!
Organization of ascending projections from the optic tectum and mesencephalic pretectal gray inRana pipiens
View through CrossRef
AbstractThe ascending projections from the dorsal mesencephalon to the thalamus and pretectum inRana pipienswere investigated by using the anterograde and retrograde transport of HRP with regard to two major issues:(1) the degree of tectotopic organization in the projections, and (2) their cells of origin.The results indicate that the spatial organization of the tecto-thalamic tract is specifically related to the laminar organization of the contributing tectal efferent neurons. Axons of neurons in the superficial portion of tectal layer 8 exit the tectum through layer 9 and travel in the superficial portion of the dorsal and ventral tecto-thalamic tracts and innervate the nucleus lentiformis mesencephali, the posterior lateral dorsal nucleus, and corpus geniculatum. The distribution of terminals within these structures varied with the tectal HRP-injection site. HRP injections in the ventral tecto-thalamic tract retrogradely labeled neurons in the superficial portion of tectal layer 8 across the lateral and caudal portion of the tectal lobe. HRP injections into the dorsal tecto-thalamic tract, at the level of the pretectum, retrogradely labeled pyriform neurons in the superficial portion of tectal layer 8 in the rostral and medial portions of the tectal lobe.With regard to the deep tectal layers, axons from pyramidal neurons in layer 6 and ganglionic neurons in layer 8 leave the tectum through layer 7, travel in both the dorsal and ventral tecto-thalamic tracts, and are located internal to the axons of the pyriform neurons of superficial tectal layer 8. The majority of the ganglionic neurons project to the posterior lateral ventral nucleus and the anterior lateral nucleus. The distribution of terminals within these nuclei did not display a tectotopic organization.A second major projection to the thalamus originates from the mesencephalic pretectal gray and innervates the nucleus lentiformis mesencephali, the posterior lateral dorsal nucleus, the anterior lateral nucleus, dorsal and ventral divisions of the ventral lateral thalamus, and the nucleus of Bellonci. Other axons from the mesencephalic pretectal gray terminate in the contralateral, medial portions of the posterior lateral dorsal thalamus, the ventral lateral thalamus, and the anterior lateral nucleus.The isthmo-tectal projection was also retrogradely labeled following tectal injections of HRP. This pathway travels in the most ventral portion of the ventral tecto-thalamic tract; its axons passed over the lateral margin of the endopeduncular nucleus bilaterally, and crossed the midline in the caudal portion of the optic chiasm. Extensive, bead-like varicosities were observed on these axons both in the endopeduncular nucleus and in the posterior optic chiasm.These results, taken together with those from other species, strongly suggest that a common organizational plan exists among terrestrial vertebrates with regard to the specific pattern of innervation of pretectal and thalamic nuclei by either the optic tectum or the superior colliculus.
Title: Organization of ascending projections from the optic tectum and mesencephalic pretectal gray inRana pipiens
Description:
AbstractThe ascending projections from the dorsal mesencephalon to the thalamus and pretectum inRana pipienswere investigated by using the anterograde and retrograde transport of HRP with regard to two major issues:(1) the degree of tectotopic organization in the projections, and (2) their cells of origin.
The results indicate that the spatial organization of the tecto-thalamic tract is specifically related to the laminar organization of the contributing tectal efferent neurons.
Axons of neurons in the superficial portion of tectal layer 8 exit the tectum through layer 9 and travel in the superficial portion of the dorsal and ventral tecto-thalamic tracts and innervate the nucleus lentiformis mesencephali, the posterior lateral dorsal nucleus, and corpus geniculatum.
The distribution of terminals within these structures varied with the tectal HRP-injection site.
HRP injections in the ventral tecto-thalamic tract retrogradely labeled neurons in the superficial portion of tectal layer 8 across the lateral and caudal portion of the tectal lobe.
HRP injections into the dorsal tecto-thalamic tract, at the level of the pretectum, retrogradely labeled pyriform neurons in the superficial portion of tectal layer 8 in the rostral and medial portions of the tectal lobe.
With regard to the deep tectal layers, axons from pyramidal neurons in layer 6 and ganglionic neurons in layer 8 leave the tectum through layer 7, travel in both the dorsal and ventral tecto-thalamic tracts, and are located internal to the axons of the pyriform neurons of superficial tectal layer 8.
The majority of the ganglionic neurons project to the posterior lateral ventral nucleus and the anterior lateral nucleus.
The distribution of terminals within these nuclei did not display a tectotopic organization.
A second major projection to the thalamus originates from the mesencephalic pretectal gray and innervates the nucleus lentiformis mesencephali, the posterior lateral dorsal nucleus, the anterior lateral nucleus, dorsal and ventral divisions of the ventral lateral thalamus, and the nucleus of Bellonci.
Other axons from the mesencephalic pretectal gray terminate in the contralateral, medial portions of the posterior lateral dorsal thalamus, the ventral lateral thalamus, and the anterior lateral nucleus.
The isthmo-tectal projection was also retrogradely labeled following tectal injections of HRP.
This pathway travels in the most ventral portion of the ventral tecto-thalamic tract; its axons passed over the lateral margin of the endopeduncular nucleus bilaterally, and crossed the midline in the caudal portion of the optic chiasm.
Extensive, bead-like varicosities were observed on these axons both in the endopeduncular nucleus and in the posterior optic chiasm.
These results, taken together with those from other species, strongly suggest that a common organizational plan exists among terrestrial vertebrates with regard to the specific pattern of innervation of pretectal and thalamic nuclei by either the optic tectum or the superior colliculus.
Related Results
Frequency of Culex pipiens complex members in continental Croatia
Frequency of Culex pipiens complex members in continental Croatia
Members of the Culex pipiens complex are considered a potential vector in the Republic of Croatia, which is why it is extremely important to have data on its distribution as well a...
Determination of the embryonic origin of the mesencephalic nucleus of the trigeminal nerve in birds
Determination of the embryonic origin of the mesencephalic nucleus of the trigeminal nerve in birds
ABSTRACT
The precise site of origin and the cells of origin of the mesencephalic nucleus of the trigeminal nerve in birds have been studied by the method of growing ...
A pretectal command system controls hunting behaviour
A pretectal command system controls hunting behaviour
Abstract
For many species, hunting is an innate behaviour that is crucial for survival, yet the circuits that control predatory action sequences are poorly understo...
Pretectal neurons control hunting behaviour
Pretectal neurons control hunting behaviour
For many species, hunting is an innate behaviour that is crucial for survival, yet the circuits that control predatory action sequences are poorly understood. We used larval zebraf...
Neuritis optik idiopatik dengan penyerta central serous chorioretinopathy sebagai manifestasi chronic relapsing inflammatory optic neuropathy: Sebuah laporan kasus
Neuritis optik idiopatik dengan penyerta central serous chorioretinopathy sebagai manifestasi chronic relapsing inflammatory optic neuropathy: Sebuah laporan kasus
Introduction: Idiopathic optic neuritis is an optic neuropathy with characteristics of optic nerve dysfunction that can be caused by various disorders of the optic nerve, including...
Breeding Site Characteristics and Associated Factors of Culex pipiens Complex in Lhasa, Tibet, P. R. China
Breeding Site Characteristics and Associated Factors of Culex pipiens Complex in Lhasa, Tibet, P. R. China
Characterizing the breeding sites of Culex pipiens complex is of major importance for the control of West Nile disease and other related diseases. However, little information is av...
Specific and Nonspecific Multiple Unit Activities During the Onset of Pentylenetetrazol Seizures. II. Acute Lesions Interrupting Nonspecific System Connections
Specific and Nonspecific Multiple Unit Activities During the Onset of Pentylenetetrazol Seizures. II. Acute Lesions Interrupting Nonspecific System Connections
SummaryNonspecific cortical, thalamic, mesencephalic, and pontine multiple unit activities (MUA) and changes in EEG and MUA of the sciatic nerve after threshold pentylenetetrazol a...
Histological Structure of The Optic Tectum in The Fresh Water Turtle in The Clemmys caspica caspica (Gmelin, 1774)
Histological Structure of The Optic Tectum in The Fresh Water Turtle in The Clemmys caspica caspica (Gmelin, 1774)
A histological study was conducted to examine the structure of optic tectum in Clemmys caspica caspica. The results showed that the optic tectum consist of seven strata and the thi...

