Department of Oral Anatomy and Neurobiology, Osaka University Graduate School of Dentistry, 1-8 Yamadaoka, Suita, Osaka, 565-0871, Japan.
Faculty of Health Care Science, Takarazuka University of Medical and Health Care, Takarazuka, Hyogo, 666-0162, Japan.
Cerebellum. 2023 Aug;22(4):663-679. doi: 10.1007/s12311-022-01434-z. Epub 2022 Jul 4.
Proprioceptive sensory information from muscle spindles is essential for the regulation of motor functions. However, little is known about the motor control regions in the cerebellar cortex that receive proprioceptive signals from muscle spindles distributed throughout the body, including the orofacial muscles. Therefore, in this study, we investigated the pattern of projections in the rat cerebellar cortex derived from the supratrigeminal nucleus (Su5), which conveys orofacial proprioceptive information from jaw-closing muscle spindles (JCMSs). Injections of an anterograde tracer into the Su5 revealed that many bilateral axon terminals (rosettes) were distributed in the granular layer of the cerebellar cortex (including the simple lobule B, crus II and flocculus) in a various sized, multiple patchy pattern. We could also detect JCMS proprioceptive signals in these cerebellar cortical regions, revealing for the first time that they receive muscle proprioceptive inputs in rats. Retrograde tracer injections confirmed that the Su5 directly sends outputs to the cerebellar cortical areas. Furthermore, we injected an anterograde tracer into the external cuneate nucleus (ECu), which receives proprioceptive signals from the forelimb and neck muscle spindles, to distinguish between the Su5- and ECu-derived projections in the cerebellar cortex. The labeled terminals from the ECu were distributed predominantly in the vermis of the cerebellar cortex. Almost no overlap was seen in the terminal distributions of the Su5 and ECu projections. Our findings demonstrate that the rat cerebellar cortex receives orofacial proprioceptive input that is processed differently from the proprioceptive signals from the other regions of the body.
来自肌梭的本体感觉信息对于运动功能的调节至关重要。然而,对于小脑皮层中接收来自分布于全身(包括口面部肌肉)肌梭本体感觉信号的运动控制区域知之甚少。因此,在本研究中,我们研究了源自传递来自闭口肌梭(JCMS)的口面部本体感觉信息的三叉上核(Su5)的大鼠小脑皮层中的投射模式。将顺行示踪剂注射到 Su5 中,发现许多双侧轴突末梢(玫瑰花结)以各种大小、多个斑片状的方式分布在小脑皮层的颗粒层(包括简单小叶 B、小脑 II 脚和绒球)中。我们还可以在这些小脑皮层区域中检测到 JCMS 本体感觉信号,首次揭示了它们在大鼠中接收肌肉本体感觉输入。逆行示踪剂注射证实 Su5 直接向小脑皮层区域输出。此外,我们将顺行示踪剂注射到接收来自前肢和颈部肌梭的本体感觉信号的外楔束核(ECu)中,以区分小脑皮层中来自 Su5 和 ECu 的投射。来自 ECu 的标记末端主要分布在小脑皮层的蚓部。Su5 和 ECu 投射的末端分布几乎没有重叠。我们的发现表明,大鼠小脑皮层接收口面部本体感觉输入,其处理方式与来自身体其他区域的本体感觉信号不同。