Mascaro Marcelo B, Prosdócimi Fábio C, Bittencourt Jackson C, Elias Carol F
Department of Anatomy, Institute of Biomedical Sciences, University of São Paulo, São Paulo, Brazil.
Eur J Oral Sci. 2009 Dec;117(6):676-84. doi: 10.1111/j.1600-0722.2009.00686.x.
Mandibular movements occur through the triggering of trigeminal motoneurons. Aberrant movements by orofacial muscles are characteristic of orofacial motor disorders, such as nocturnal bruxism (clenching or grinding of the dentition during sleep). Previous studies have suggested that autonomic changes occur during bruxism episodes. Although it is known that emotional responses increase jaw movement, the brain pathways linking forebrain limbic nuclei and the trigeminal motor nucleus remain unclear. Here we show that neurons in the lateral hypothalamic area, in the central nucleus of the amygdala, and in the parasubthalamic nucleus, project to the trigeminal motor nucleus or to reticular regions around the motor nucleus (Regio h) and in the mesencephalic trigeminal nucleus. We observed orexin co-expression in neurons projecting from the lateral hypothalamic area to the trigeminal motor nucleus. In the central nucleus of the amygdala, neurons projecting to the trigeminal motor nucleus are innervated by corticotrophin-releasing factor immunoreactive fibers. We also observed that the mesencephalic trigeminal nucleus receives dense innervation from orexin and corticotrophin-releasing factor immunoreactive fibers. Therefore, forebrain nuclei related to autonomic control and stress responses might influence the activity of trigeminal motor neurons and consequently play a role in the physiopathology of nocturnal bruxism.
下颌运动通过三叉神经运动神经元的触发而发生。口面部肌肉的异常运动是口面部运动障碍的特征,如夜间磨牙症(睡眠期间牙齿的紧咬或研磨)。先前的研究表明,在磨牙发作期间会出现自主神经变化。虽然已知情绪反应会增加下颌运动,但连接前脑边缘核和三叉神经运动核的脑通路仍不清楚。在此,我们表明,下丘脑外侧区、杏仁核中央核和丘脑底旁核中的神经元投射到三叉神经运动核或运动核周围的网状区域(区域h)以及中脑三叉神经核。我们观察到,从下丘脑外侧区投射到三叉神经运动核的神经元中存在食欲素共表达。在杏仁核中央核中,投射到三叉神经运动核的神经元由促肾上腺皮质激素释放因子免疫反应性纤维支配。我们还观察到,中脑三叉神经核接受来自食欲素和促肾上腺皮质激素释放因子免疫反应性纤维的密集支配。因此,与自主神经控制和应激反应相关的前脑核可能会影响三叉神经运动神经元的活动,从而在夜间磨牙症的生理病理学中发挥作用。