Nagoya University, Nagoya, Aichi, Japan.
Dev Neurobiol. 2012 Mar;72(3):282-301. doi: 10.1002/dneu.20875.
The cerebellum, a structure derived from the dorsal part of the most anterior hindbrain, is important for integrating sensory perception and motor control. While the structure and development of the cerebellum have been analyzed most extensively in mammals,recent studies have shown that the anatomy and development of the cerebellum is conserved between mammals and bony fish (teleost) species, including zebrafish. In the mammalian and teleost cerebellum,Purkinje and granule cells serve, respectively, as the major GABAergic and glutamatergic neurons. Purkinje cells originate in the ventricular zone (VZ), and receive inputs from climbing fibers. Granule cells originate in the upper rhombic lip (URL) and receive inputs from mossy fibers. Thus, the teleost cerebellum shares many features with the cerebellum of other vertebrates, and isa good model system for studying cerebellar function and development. The teleost cerebellum also has features that are specific to teleosts or have not been elucidated in mammals, including eurydendroid cells and adult neurogenesis. Furthermore, the neural circuitry in part of the optic tectum and the dorsal hindbrain closely resembles the circuitry of the teleost cerebellum; hence,these are called cerebellum-like structures. Here we describe the anatomy and development of cerebellar neurons and their circuitry, and discuss the possible roles of the cerebellum and cerebellum-like structures in behavior and higher cognitive functions. We also consider the potential use of genetics and novel techniques for studying the cerebellum in zebrafish.
小脑,源自最前脑后脑背侧的结构,对于整合感觉感知和运动控制非常重要。虽然小脑的结构和发育在哺乳动物中已经得到了最广泛的分析,但最近的研究表明,小脑的解剖结构和发育在哺乳动物和硬骨鱼(硬骨鱼)物种之间是保守的,包括斑马鱼。在哺乳动物和硬骨鱼的小脑,浦肯野细胞和颗粒细胞分别作为主要的 GABA 能和谷氨酸能神经元。浦肯野细胞起源于脑室区(VZ),并接收来自攀附纤维的输入。颗粒细胞起源于上菱唇(URL),并接收来自苔藓纤维的输入。因此,硬骨鱼的小脑与其他脊椎动物的小脑有许多共同特征,是研究小脑功能和发育的良好模型系统。硬骨鱼的小脑也有一些特征是硬骨鱼特有的,或者在哺乳动物中尚未阐明,包括 eurydendroid 细胞和成年神经发生。此外,部分视顶盖和背后脑的神经回路与硬骨鱼小脑的回路非常相似;因此,这些被称为小脑样结构。在这里,我们描述了小脑神经元及其回路的解剖结构和发育,并讨论了小脑和小脑样结构在行为和更高认知功能中的可能作用。我们还考虑了在斑马鱼中使用遗传学和新技术研究小脑的潜力。