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1.
J Comp Neurol ; 492(4): 401-25, 2005 Nov 28.
Artigo em Inglês | MEDLINE | ID: mdl-16228989

RESUMO

The brain mechanisms underlying mastication are not fully understood. To address this issue, we analyzed the distribution patterns of cortico-striatal and cortico-brainstem axon terminals and the origin of thalamocortical and intracortical fibers by injecting anterograde/retrograde tracers into physiologically and morphologically defined jaw movement-related cortical areas. Four areas were identified in the macaque monkey: the primary and supplementary orofacial motor areas (MIoro and SMAoro) and the principal and deep parts of the cortical masticatory area (CMaAp and CMaAd), where intracortical microstimulation produced single twitch-like or rhythmic jaw movements, respectively. Tracer injections into these areas labeled terminals in the ipsilateral putamen in a topographic fashion (MIoro vs. SMAoro and CMaAp vs. CMaAd), in the lateral reticular formation and trigeminal sensory nuclei contralaterally (MIoro and CMaAp) or bilaterally (SMAoro) in a complex manner of segregation vs. overlap, and in the medial parabranchial and Kölliker-Fuse nuclei contralaterally (CMaAd). The MIoro and CMaAp received thalamic projections from the ventrolateral and ventroposterolateral nuclei, the SMAoro from the ventroanterior and ventrolateral nuclei, and the CMaAd from the ventroposteromedial nucleus. The MIoro, SMAoro, CMaAp, and CMaAd received intracortical projections from the ventral premotor cortex and primary somatosensory cortex, the ventral premotor cortex and rostral cingulate motor area, the ventral premotor cortex and area 7b, and various sensory areas. In addition, the MIoro and CMaAp received projections from the three other jaw movement-related areas. Our results suggest that the four jaw movement-related cortical areas may play important roles in the formation of distinctive masticatory patterns.


Assuntos
Lobo Frontal/fisiologia , Arcada Osseodentária , Macaca mulatta , Mastigação/fisiologia , Córtex Motor/fisiologia , Animais , Mapeamento Encefálico , Eletrofisiologia , Feminino , Lobo Frontal/anatomia & histologia , Arcada Osseodentária/anatomia & histologia , Arcada Osseodentária/inervação , Macaca mulatta/anatomia & histologia , Macaca mulatta/fisiologia , Masculino , Córtex Motor/anatomia & histologia , Vias Neurais/anatomia & histologia , Vias Neurais/fisiologia
2.
Neurosci Res ; 76(3): 141-9, 2013 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-23664864

RESUMO

Different sectors of the prefrontal cortex have distinct neuronal connections with higher-order sensory areas and/or limbic structures and are related to diverse aspects of cognitive functions, such as visual working memory and reward-based decision-making. Recent studies have revealed that the prefrontal cortex (PF), especially the lateral PF, is also involved in motor control. Hence, different sectors of the PF may contribute to motor behaviors with distinct body parts. To test this hypothesis anatomically, we examined the patterns of multisynaptic projections from the PF to regions of the primary motor cortex (MI) that represent the arm, hand, and mouth, using retrograde transsynaptic transport of rabies virus. Four days after rabies injections into the hand or mouth region, particularly dense neuron labeling was observed in the ventrolateral PF, including the convexity part of ventral area 46. After the rabies injections into the mouth region, another dense cluster of labeled neurons was seen in the orbitofrontal cortex (area 13). By contrast, rabies labeling of PF neurons was rather sparse in the arm-injection cases. The present results suggest that the PF-MI multisynaptic projections may be organized such that the MI hand and mouth regions preferentially receive cognitive information for execution of elaborate motor actions.


Assuntos
Córtex Motor/anatomia & histologia , Vias Neurais/anatomia & histologia , Córtex Pré-Frontal/anatomia & histologia , Animais , Fenômenos Eletrofisiológicos , Feminino , Mãos/inervação , Macaca , Masculino , Boca/inervação
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