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首页> 外文期刊>The Journal of Comparative Neurology >Corticofugal projections to trigeminal motoneurons innervating antagonistic jaw muscles in rats as demonstrated by anterograde and retrograde tract tracing.
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Corticofugal projections to trigeminal motoneurons innervating antagonistic jaw muscles in rats as demonstrated by anterograde and retrograde tract tracing.

机译:顺行和逆行道示踪显示,皮质三叶神经投射到三叉神经运动神经支配大鼠的拮抗下颌肌肉。

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Little is known about the organization of corticofugal projections controlling antagonistic jaw muscles. To address this issue, we employed retrograde (Fluorogold; FG) and anterograde (biotinylated dextran amine; BDA) tracing techniques in rats. Three groups of premotoneurons were identified by injecting FG into the jaw-closing (JC) and -opening (JO) subdivisions of the trigeminal motor nucleus (Vmo). These were 1) the intertrigeminal region (Vint) and principal trigeminal sensory nucleus for JC nucleus; 2) the reticular region medial to JO nucleus (RmJO) for JO nucleus; and 3) the parabrachial (Pb) and supratrigeminal (Vsup) nuclei, reticular regions medial and ventral to JC nucleus, rostrodorsomedial oralis (Vor), and juxtatrigeminal region (Vjuxt) containing a mixture of premotoneurons to both the nuclei. Subsequently, FG was injected into the representative premotoneuron structures. The JC and JO premotoneurons received main afferents from the lateral and medial agranular fields of motor cortex (Agl and Agm), respectively, whereas afferents to the nuclei with both JC and JO premotoneurons arose from Agl also and from primary somatosensory cortex (S1). Finally, BDA was injected into each of the three cortical areas representing the premotoneuron structures to complement the FG data. The Agl and Agm projected to reticular regions around the Vmo, whereas the Pb, Vsup, Vor, and Vjuxt received input from Agl. The S1 projected to the trigeminal sensory nuclei as well as to the Pb, Vsup, and Vjuxt. These results suggest that corticofugal projections to Vmo via premotoneuron structures consist of multiple pathways, which influence distinct patterns of jaw movements.
机译:关于控制拮抗下颌肌肉的皮质触犯突起的组织知之甚少。为了解决这个问题,我们在大鼠中采用了逆行(Fluorogold; FG)和顺行(生物素化的葡聚糖胺; BDA)示踪技术。通过将FG注入三叉神经运动核(Vmo)的下颌闭合(JC)和张开(JO)细分中,确定了三组前神经元。它们是:1)JC核的三叉神经间区域(Vint)和主要三叉神经感觉核; 2)JO核内侧的网状区域(RmJO); 3)臂旁(Pb)和超上原(Vsup)核,JC核内侧和腹侧的网状区域,口咽部圆角体(Vor)和包含三元前神经元混合物的近三叉神经区(Vjuxt)。随后,将FG注入代表性的前运动神经元结构中。 JC和JO前运动神经元分别从运动皮层的外侧和内侧颗粒区(Ag1和Agm)接收主要传入神经,而JC和JO前运动神经元的神经元也从Agl和初级体感皮质(S1)传入核。最后,将BDA注入代表前神经元结构的三个皮质区域的每一个中,以补充FG数据。 Agl和Agm投射到Vmo周围的网状区域,而Pb,Vsup,Vor和Vjuxt从Agl接收输入。 S1投射到三叉神经感觉核以及Pb,Vsup和Vjuxt。这些结果表明皮质前突通过前运动神经元结构投射到Vmo由多个途径组成,这些途径影响颌骨运动的不同模式。

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