Langer T P, Kaneko C R
Department of Physiology and Biophysics, University of Washington, Seattle 98195.
J Comp Neurol. 1990 May 15;295(3):413-27. doi: 10.1002/cne.902950306.
To determine how saccade-related areas in the brainstem address the saccade generator, we examined the afferents to the nucleus raphe interpositus. This region contains the omnipause neurons, which are pivotal in the generation of saccades. Horseradish peroxidase injected iontophoretically into the nucleus raphe interpositus retrogradely labeled a variety of brainstem nuclei. The greatest numbers of labeled neurons were in the paramedian pontomedullary reticular formation, in the nuclei reticularis gigantocellularis, and paragigantocellularis lateralis. Labeling was more modest but consistent in the interstitial nucleus of Cajal and the adjacent mesencephalic reticular formation, the middle gray of the superior colliculi, the region dorsolateral to the nucleus reticularis tegmenti pontis, and the medial vestibular nucleus. A few neurons were labeled around the habenulopeduncular tract and in the medial portion of the nucleus of the fields of Forel, in the nucleus reticularis medullaris ventralis, and in the spinal nucleus of the trigeminal nerve, the cochlear nucleus, and the superior olivary complex. The distribution and density of labeling suggest that omnipause neurons in the monkey are more intimately connected with other oculomotor structures than those in the cat. In addition, the rhombencephalic reticular afferents to the monkey omnipause neurons are more concentrated in their immediate vicinity than in the cat. The label consistently found dorsolateral to the nucleus reticularis tegmenti pontis may be a newly discovered link in saccade generation.
为了确定脑干中与扫视相关的区域如何作用于扫视发生器,我们研究了中间缝际核的传入神经。该区域包含全暂停神经元,它们在扫视的产生中起关键作用。将辣根过氧化物酶通过离子电渗法注入中间缝际核,逆行标记了多种脑干核团。标记神经元数量最多的是脑桥延髓旁正中网状结构、巨细胞网状核和外侧旁巨细胞网状核。在 Cajal 间质核和相邻的中脑网状结构、上丘的中间灰质、脑桥被盖网状核背外侧区域以及内侧前庭核中,标记数量较少但较为一致。在缰核脚间束周围、Forel 场核内侧部分、延髓腹侧网状核、三叉神经脊髓核、耳蜗核和上橄榄复合体中也有少数神经元被标记。标记的分布和密度表明,猴子的全暂停神经元与其他动眼神经结构的联系比猫更为紧密。此外,猴子全暂停神经元的后脑网状传入神经在其紧邻区域比猫更为集中。在脑桥被盖网状核背外侧持续发现的标记可能是扫视产生中一个新发现的联系。