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1.
Neuroscience ; 55(1): 263-80, 1993 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-7688882

RESUMO

Transneuronal tracing techniques were used in order to identify putative spinal interneurons and brainstem sites involved in the control of penile function. Pseudorabies virus was injected into the corpus cavernosus tissue of the penis in rats. After a four day survival period, rats were perfused with fixative and virus-labelled neurons were identified by immunohistochemistry. Postganglionic neurons were retrogradely labelled in the major pelvic ganglia. In the spinal cord, sympathetic and parasympathetic preganglionic neurons were labelled transneuronally. Presumptive interneurons were also labelled in the lower thoracic and lumbosacral spinal cord in locations consistent with what is currently known about such interneurons. In the brainstem, transneuronally labelled neurons were found in the medulla, pons and hypothalamus. Regions consistently labelled included the nucleus paragigantocellularis, parapyramidal reticular formation of the medulla, raphe pallidus, raphe magnus, A5 noradrenergic cell group, Barrington's nucleus and the paraventricular nucleus of the hypothalamus. This study confirmed previous studies from our lab and others concerning the preganglionic and postganglionic neurons innervating the penis. The number, morphology and location of these neurons were consistent with labelling seen following injection of conventional tracers into the penis. The brainstem nuclei labelled in this study were also consistent with what is currently known about the brainstem control of penile function. The labelling appeared to be highly specific, in that descending systems involved in other functions were not labelled. These results provide further evidence that the pseudorabies virus transneuronal tracing technique is a valuable method for identifying neural circuits mediating specific functions.


Assuntos
Fibras Autônomas Pós-Ganglionares/ultraestrutura , Fibras Autônomas Pré-Ganglionares/ultraestrutura , Transporte Axonal , Mapeamento Encefálico , Sistema Nervoso Central/anatomia & histologia , Dopamina beta-Hidroxilase/análise , Herpesvirus Suídeo 1 , Proteínas do Tecido Nervoso/análise , Pênis/inervação , Serotonina/análise , Vias Aferentes/ultraestrutura , Animais , Fibras Autônomas Pós-Ganglionares/química , Fibras Autônomas Pós-Ganglionares/microbiologia , Fibras Autônomas Pré-Ganglionares/química , Fibras Autônomas Pré-Ganglionares/microbiologia , Contagem de Células , Sistema Nervoso Central/química , Sistema Nervoso Central/microbiologia , Sistema Nervoso Central/fisiologia , Ejaculação/fisiologia , Gânglios Parassimpáticos/química , Gânglios Parassimpáticos/microbiologia , Gânglios Parassimpáticos/ultraestrutura , Herpesvirus Suídeo 1/isolamento & purificação , Hipotálamo/química , Hipotálamo/microbiologia , Hipotálamo/fisiologia , Hipotálamo/ultraestrutura , Interneurônios/química , Interneurônios/microbiologia , Interneurônios/ultraestrutura , Masculino , Bulbo/química , Bulbo/microbiologia , Bulbo/fisiologia , Bulbo/ultraestrutura , Ereção Peniana/fisiologia , Pênis/fisiologia , Ponte/química , Ponte/microbiologia , Ponte/fisiologia , Ponte/ultraestrutura , Núcleos da Rafe/química , Núcleos da Rafe/microbiologia , Núcleos da Rafe/fisiologia , Núcleos da Rafe/ultraestrutura , Ratos , Ratos Sprague-Dawley/anatomia & histologia , Medula Espinal/química , Medula Espinal/microbiologia , Medula Espinal/fisiologia , Medula Espinal/ultraestrutura
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