Larson-Prior L J, Cruce W L
Department of Organismal Biology and Anatomy, University of Chicago, Ill.
Brain Behav Evol. 1992;40(6):273-86. doi: 10.1159/000113918.
Movement control in vertebrates is a complex function that is known to involve several parallel systems. In amphibians, which lack the isocortical structures shown in mammals to initiate and control voluntary movements, supraspinal motor control systems have received surprisingly little attention. Because amphibians lack a corticospinal equivalent, coordination and control of all movement strategies must take place in non-cortical, supraspinal integrating centers. The rubro-cerebello-rubrospinal circuit is likely to represent a major motor control system in such vertebrates. In this anatomical investigation four mesencephalic tegmentospinal projection nuclei are described in ranid amphibians (Rana catesbiana and Rana pipiens): reticular formation, accessory optic complex, interstitial nucleus of Cajal, and the red nucleus. The red nucleus, which shows no distinct somatotopic organization, can be distinguished because it is the only one of the four that is predominantly contralateral in its projections. Horseradish peroxidase injections into the tegmentum and the cerebellum demonstrated that the red nucleus also maintains reciprocal connections with the cerebellum via the deep cerebellar nucleus. These connections could not be localized to any distinct region in the deep cerebellar nuclear mass, suggesting that this represents a single cerebellar recipient nucleus. Thus, anuran amphibians are shown to possess the major pathways that comprise the rubro-cerebello-rubrospinal circuitry in mammals.
脊椎动物的运动控制是一项复杂的功能,已知涉及多个并行系统。在两栖动物中,它们缺乏哺乳动物中所示的用于启动和控制自主运动的同皮质结构,但其脊髓上运动控制系统却出人意料地很少受到关注。由于两栖动物缺乏类似皮质脊髓的结构,所有运动策略的协调和控制必须在非皮质的脊髓上整合中心进行。红核 - 小脑 - 红核脊髓回路可能是这类脊椎动物的主要运动控制系统。在这项解剖学研究中,描述了蛙科两栖动物(牛蛙和豹蛙)中的四个中脑被盖脊髓投射核:网状结构、副视复合体、 Cajal间质核和红核。红核没有明显的躯体定位组织,因其是四个核中唯一在投射上主要为对侧的核而得以区分。将辣根过氧化物酶注射到被盖和小脑中表明,红核还通过小脑深部核与小脑保持相互连接。这些连接无法定位到小脑深部核团的任何特定区域,这表明它代表一个单一的小脑接收核。因此,无尾两栖动物被证明拥有构成哺乳动物红核 - 小脑 - 红核脊髓回路的主要通路。