Matches in SemOpenAlex for { <https://semopenalex.org/work/W2019244105> ?p ?o ?g. }
- W2019244105 endingPage "486" @default.
- W2019244105 startingPage "449" @default.
- W2019244105 abstract "Stereotaxic injections of [14C]leucine were made in nuclei raphe´centralis superior, raphe´dorsalis, raphe´magnus and raphe´pontis of the cat. The organization of the regional connections was outlined in a stereotaxic atlas using the autoradiographic tracing method: the majority of the ascending pathways from the rostral raphe´nuclei are directed mainly through a ventrolateral bundle via the ventral tegmental area of Tsai, with some lateral extensions to the substantia nigra, and then through the fields of Forel and the zona incerta. More rostrally the fibers are joined to the medial forebrain bundle through the hypothalamic region up to the preoptic area or the diagonal band of Broca. Multiple divisions leave this tract towards the epithalamic or the intralaminar thalamic nuclei, the stria terminalis, the septum, the capsula interna and the ansa lenticularis. The bulk of the rostral projections terminates in the frontal lobe, while some labeling is scarcely distributed throughout the rest of the neocortex. The projections of nucleus (n.) raphe´centralis superior are specifically associated with the n. interpeduncularis, the mammillary bodies and the hippocampal formation while the n. raphe´dorsalis innervates selectively the lateral geniculate bodies, striatum, piriform lobes, olfactory bulb and amygdala. The rest of the ascending fibers form the centrolateral or the dorsal ascending tracts radiating either in the reticular mesencephalic formation or in the periventricular gray matter. On the contrary there are heavy descending projections from n. raphe´centralis superior which distribute to the main nuclei of the brain stem, the central gray matter and the cerebellum. The ascending projections from the caudal raphe´nuclei are much less dense. They disseminate mainly in the colliculus superior, the pretectum, the nucleus of the posterior commissure, the preoculomotor complex and the intralaminar nuclei of the thalamus. From n. raphe´pontis, a dense labeling is selectively localized at the n. paraventricularis hypothalami with some rostral extensions to limbic areas. Diffuse caudal and rostral projections from both nuclei are observed in the mesencephalic, pontobulbar reticular formation and the cerebellum. The main differences come from the specific localization of their descending bulbospinal tracts inside the lateroventral funiculus of the spinal cervical cord." @default.
- W2019244105 created "2016-06-24" @default.
- W2019244105 creator A5004681946 @default.
- W2019244105 creator A5007466922 @default.
- W2019244105 creator A5025960241 @default.
- W2019244105 creator A5027409798 @default.
- W2019244105 creator A5079367260 @default.
- W2019244105 creator A5081331516 @default.
- W2019244105 date "1976-09-01" @default.
- W2019244105 modified "2023-10-14" @default.
- W2019244105 title "The raphe nuclei of the cat brain stem: A topographical atlas of their efferent projections as revealed by autoradiography" @default.
- W2019244105 cites W1968541451 @default.
- W2019244105 cites W1983805449 @default.
- W2019244105 cites W1985023977 @default.
- W2019244105 cites W1988055140 @default.
- W2019244105 cites W1990455378 @default.
- W2019244105 cites W1992486838 @default.
- W2019244105 cites W1994141227 @default.
- W2019244105 cites W1997768740 @default.
- W2019244105 cites W1998671247 @default.
- W2019244105 cites W2001789121 @default.
- W2019244105 cites W2006356056 @default.
- W2019244105 cites W2028925477 @default.
- W2019244105 cites W2034450065 @default.
- W2019244105 cites W2038103512 @default.
- W2019244105 cites W2041927622 @default.
- W2019244105 cites W2047692008 @default.
- W2019244105 cites W2055360560 @default.
- W2019244105 cites W2057850934 @default.
- W2019244105 cites W2062882040 @default.
- W2019244105 cites W2064793866 @default.
- W2019244105 cites W2068199195 @default.
- W2019244105 cites W2069845734 @default.
- W2019244105 cites W2072026856 @default.
- W2019244105 cites W2072581810 @default.
- W2019244105 cites W2076038978 @default.
- W2019244105 cites W2081188214 @default.
- W2019244105 cites W2082636923 @default.
- W2019244105 cites W2083889277 @default.
- W2019244105 cites W2087725006 @default.
- W2019244105 cites W2090818963 @default.
- W2019244105 cites W2113449040 @default.
- W2019244105 cites W2119568803 @default.
- W2019244105 cites W2145369921 @default.
- W2019244105 cites W4249507171 @default.
- W2019244105 doi "https://doi.org/10.1016/0006-8993(76)90050-0" @default.
- W2019244105 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/821589" @default.
- W2019244105 hasPublicationYear "1976" @default.
- W2019244105 type Work @default.
- W2019244105 sameAs 2019244105 @default.
- W2019244105 citedByCount "641" @default.
- W2019244105 countsByYear W20192441052012 @default.
- W2019244105 countsByYear W20192441052013 @default.
- W2019244105 countsByYear W20192441052014 @default.
- W2019244105 countsByYear W20192441052015 @default.
- W2019244105 countsByYear W20192441052016 @default.
- W2019244105 countsByYear W20192441052017 @default.
- W2019244105 countsByYear W20192441052018 @default.
- W2019244105 countsByYear W20192441052019 @default.
- W2019244105 countsByYear W20192441052020 @default.
- W2019244105 countsByYear W20192441052021 @default.
- W2019244105 countsByYear W20192441052022 @default.
- W2019244105 countsByYear W20192441052023 @default.
- W2019244105 crossrefType "journal-article" @default.
- W2019244105 hasAuthorship W2019244105A5004681946 @default.
- W2019244105 hasAuthorship W2019244105A5007466922 @default.
- W2019244105 hasAuthorship W2019244105A5025960241 @default.
- W2019244105 hasAuthorship W2019244105A5027409798 @default.
- W2019244105 hasAuthorship W2019244105A5079367260 @default.
- W2019244105 hasAuthorship W2019244105A5081331516 @default.
- W2019244105 hasConcept C105702510 @default.
- W2019244105 hasConcept C142642502 @default.
- W2019244105 hasConcept C169760540 @default.
- W2019244105 hasConcept C170493617 @default.
- W2019244105 hasConcept C2775864247 @default.
- W2019244105 hasConcept C2777615928 @default.
- W2019244105 hasConcept C2777865548 @default.
- W2019244105 hasConcept C2778474254 @default.
- W2019244105 hasConcept C2779246727 @default.
- W2019244105 hasConcept C2780496858 @default.
- W2019244105 hasConcept C32610206 @default.
- W2019244105 hasConcept C37000724 @default.
- W2019244105 hasConcept C529278444 @default.
- W2019244105 hasConcept C55493867 @default.
- W2019244105 hasConcept C86803240 @default.
- W2019244105 hasConceptScore W2019244105C105702510 @default.
- W2019244105 hasConceptScore W2019244105C142642502 @default.
- W2019244105 hasConceptScore W2019244105C169760540 @default.
- W2019244105 hasConceptScore W2019244105C170493617 @default.
- W2019244105 hasConceptScore W2019244105C2775864247 @default.
- W2019244105 hasConceptScore W2019244105C2777615928 @default.
- W2019244105 hasConceptScore W2019244105C2777865548 @default.
- W2019244105 hasConceptScore W2019244105C2778474254 @default.
- W2019244105 hasConceptScore W2019244105C2779246727 @default.
- W2019244105 hasConceptScore W2019244105C2780496858 @default.
- W2019244105 hasConceptScore W2019244105C32610206 @default.
- W2019244105 hasConceptScore W2019244105C37000724 @default.
- W2019244105 hasConceptScore W2019244105C529278444 @default.