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1.
Zhonghua Kou Qiang Yi Xue Za Zhi ; 55(4): 259-263, 2020 Apr 09.
Article in Chinese | MEDLINE | ID: mdl-32268626

ABSTRACT

Objective: To determine the opening and closing action of the external muscle, the projection pathway of the axon terminal of trigeminal motor nucleus (Vmo) neuron to the lateral pterygoid muscle was revealed. Methods: In this study, 10 SD rats of 8 weeks old were included. The left lateral pterygoid muscle of SD rats was surgically exposed, and the wound was closed after intramuscular injection of hydroxystilbamidine/fluorogold (FG) 3-5 µl. Seven days after the operation, the experimental animals were perfused, samples collected and sectioned for immunofluorescence staining. After FG injection into the lateral pterygoid muscle, the FG reversed in the Vmo neurons. Results: In the Vmo neurons on the FG injection side (left side), a large number of FG reversed neurons were found in the corpus luteum and dendrites. These neurons were not only distributed in the dorsolateral part of the trigeminal motor nucleus that innervated the closed muscle, but also in the ventral medial portion of the trigeminal nucleus of the open muscle. Conclusions: The neuronal conduction pathway between the Vmo and the lateral pterygoid muscle innervates the lateral pterygoid muscle. The neurons are distributed both in the dorsolateral and in the nucleus of the ventral ventricle. It is concluded that the lateral pterygoid muscle involve in the jaw closing and opening movement.


Subject(s)
Pterygoid Muscles , Trigeminal Motor Nucleus , Animals , Female , Jaw , Movement , Neurons , Pterygoid Muscles/anatomy & histology , Pterygoid Muscles/innervation , Rats , Rats, Sprague-Dawley , Trigeminal Motor Nucleus/anatomy & histology , Trigeminal Nuclei
2.
Article in English | MEDLINE | ID: mdl-26483640

ABSTRACT

The primary (S1) and secondary (S2) somatosensory cortices project to several trigeminal sensory nuclei. One putative function of these corticofugal projections is the gating of sensory transmission through the trigeminal principal nucleus (Pr5), and some have proposed that S1 and S2 project differentially to the spinal trigeminal subnuclei, which have inhibitory circuits that could inhibit or disinhibit the output projections of Pr5. Very little, however, is known about the origin of sensorimotor corticofugal projections and their patterns of termination in the various trigeminal nuclei. We addressed this issue by injecting anterograde tracers in S1, S2 and primary motor (M1) cortices, and quantitatively characterizing the distribution of labeled terminals within the entire rostro-caudal chain of trigeminal sub-nuclei. We confirmed our anterograde tracing results by injecting retrograde tracers at various rostro-caudal levels within the trigeminal sensory nuclei to determine the position of retrogradely labeled cortical cells with respect to S1 barrel cortex. Our results demonstrate that S1 and S2 projections terminate in largely overlapping regions but show some significant differences. Whereas S1 projection terminals tend to cluster within the principal trigeminal (Pr5), caudal spinal trigeminal interpolaris (Sp5ic), and the dorsal spinal trigeminal caudalis (Sp5c), S2 projection terminals are distributed in a continuum across all trigeminal nuclei. Contrary to the view that sensory gating could be mediated by differential activation of inhibitory interconnections between the spinal trigeminal subnuclei, we observed that projections from S1 and S2 are largely overlapping in these subnuclei despite the differences noted earlier.


Subject(s)
Neuroanatomical Tract-Tracing Techniques/methods , Somatosensory Cortex/anatomy & histology , Trigeminal Motor Nucleus/anatomy & histology , Trigeminal Nucleus, Spinal/anatomy & histology , Vibrissae/physiology , Animals , Female , Male , Neural Pathways/anatomy & histology , Neural Pathways/physiology , Rats , Rats, Sprague-Dawley , Somatosensory Cortex/physiology , Trigeminal Motor Nucleus/physiology , Trigeminal Nucleus, Spinal/physiology
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