Saidel W M
Department of Biology, Rutgers University, Camden, NJ 08102, USA.
Philos Trans R Soc Lond B Biol Sci. 2000 Sep 29;355(1401):1177-81. doi: 10.1098/rstb.2000.0662.
One of the more unusual visual systems of the Actinopterygii is that of Pantodon buchholzi (Osteoglossomorpha: Osteoglossidae). Its adaptations associate neuroanatomy at different levels of the visual system with ecological and behavioural correlates and demonstrate that the visual system of this fish has adapted for simultaneous vision in air and water. The visual field is divided into three distinct areas: for viewing into the water column, into air, and for viewing the aquatic reflection from the underside of the water surface. Cone diameters in different retinal areas correlate with the differing physical constraints in the respective visual field. Retinal differentiation between the aquatic and aerial views is paralleled at different levels of the central nervous system. A diencephalic nucleus receives both direct and indirect (tectal) afferent input from only the aerial visual system and a specific type of cell in the optic tectum is preferentially distributed in the tectum processing aerial inputs. Distinctions within a single sensory system suggest that some behaviours may be organized according to visual field. For Pantodon, feeding is initiated by stimuli seen by the ventral hemiretina so the anatomical specializations may well play an important role as elements in a feeding circuit.
辐鳍鱼纲中较为独特的视觉系统之一是七星飞刀(骨舌鱼目:骨舌鱼科)的视觉系统。其适应性将视觉系统不同层次的神经解剖结构与生态和行为关联起来,表明这种鱼的视觉系统已适应在空气和水中同时视物。视野被分为三个不同区域:用于观察水柱内、观察空气中以及观察水面下的水生反射。不同视网膜区域的视锥直径与各自视野中不同的物理限制相关。在中枢神经系统的不同层次上,水生视野和空中视野之间的视网膜分化是平行的。间脑核仅从空中视觉系统接收直接和间接(顶盖)传入输入,并且视顶盖中的一种特定类型的细胞优先分布在处理空中输入的顶盖区域。单一感觉系统内的差异表明,某些行为可能是根据视野来组织的。对于七星飞刀来说,进食由腹侧半视网膜看到的刺激引发,因此这些解剖学特化很可能作为进食回路中的要素发挥重要作用。