Satoh Yoshihide, Ishizuka Ken'Ichi, Iwasaki Shin-ichi
Department of Physiology, School of Life Dentistry at Niigata, The Nippon Dental University, 1-8 Hamaura-cho, Chuou-ku, Niigata 951-8580, Japan.
Department of Physiology, School of Life Dentistry at Niigata, The Nippon Dental University, 1-8 Hamaura-cho, Chuou-ku, Niigata 951-8580, Japan.
Neurosci Res. 2014 Aug;85:12-9. doi: 10.1016/j.neures.2014.05.010. Epub 2014 Jun 11.
In a previous study, we found that electrical and chemical stimulation of the red nucleus (RN) suppressed the high-threshold afferent-evoked jaw-opening reflex (JOR). It has been reported that the RN receives bilaterally projection fibers from the raphe magnus nucleus (RMg), and that stimulation of the RMg inhibits the tooth pulp-evoked nociceptive JOR. These facts imply that RMg-induced inhibition of the JOR could be mediated via the RN. The present study first examines whether stimulation of the RMg suppresses the high-threshold afferent-evoked JOR. The JOR was evoked by electrical stimulation of the inferior alveolar nerve (IAN), and was recorded as the electromyographic response of the anterior belly of the digastric muscle. The stimulus intensity was 4.0 (high-threshold) times the threshold. Conditioning electrical stimulation of the RMg significantly suppressed the JOR. A further study then examined whether electrically induced lesions of the RN or microinjection of muscimol into the RN affects RMg-induced suppression of the JOR. Electrically induced lesions of the bilateral RN and microinjection of muscimol into the bilateral RN both reduced the RMg-induced suppression of the JOR. These results suggest that RMg-induced suppression of the high-threshold afferent-evoked JOR is mediated by a relay in the RN.
在先前的一项研究中,我们发现对红核(RN)进行电刺激和化学刺激可抑制高阈值传入神经诱发的张口反射(JOR)。据报道,RN接受来自中缝大核(RMg)的双侧投射纤维,并且刺激RMg可抑制牙髓诱发的伤害性JOR。这些事实表明,RMg对JOR的抑制作用可能是通过RN介导的。本研究首先考察刺激RMg是否会抑制高阈值传入神经诱发的JOR。JOR由对下牙槽神经(IAN)进行电刺激诱发,并记录为二腹肌前腹的肌电图反应。刺激强度为阈值的4.0倍(高阈值)。对RMg进行条件性电刺激可显著抑制JOR。随后的进一步研究考察了对RN进行电损伤或向RN内微量注射蝇蕈醇是否会影响RMg对JOR的抑制作用。对双侧RN进行电损伤以及向双侧RN内微量注射蝇蕈醇均降低了RMg对JOR的抑制作用。这些结果表明,RMg对高阈值传入神经诱发的JOR的抑制作用是通过RN中的一个中继站介导的。