Mizunami M
Department of Biology, Faculty of Science, Kyushu University, Fukuoka, Japan.
Vision Res. 1995 Feb;35(4):443-52. doi: 10.1016/0042-6989(94)00192-o.
Most insects have simple eyes (ocelli), in addition to compound eyes. Although the ocelli can detect only changes in light intensity averaged over their large visual field, they do play various roles in the behavior of insects, as they have advantages over compound eyes in terms of photic sensitivity and the speed of signal transmission. I summarize here our present knowledge on the neural organization of ocellar systems of a number of insects, and propose that they can be classified into three types: (1) the "cockroach type" ocellar system where signals from the photoreceptors first converge onto a small number of second-order neurons, and then diverge to a large number of third-order neurons which project into a number of target neuropils of the brain; (2) the "bee type" ocellar system where photoreceptor signals are passed to various target neuropils by a large number of second-order neurons; and (3) the "locust type" ocellar system where ocellar signals are transmitted to various target neuropils by both second- and third-order neurons. I propose that: (1) the "cockroach type" ocellar system can be characterized as a sensitive type where higher sensitivity is attained because of the higher ratio of convergence of photoreceptor signals onto second-order neurons; (2) the "bee type" ocellar system is a fast type where a high speed of signal transmission is attained at the possible cost of sensitivity; and (3) the "locust type" ocellar system is an intermediate type where both speed and sensitivity are emphasized. A possible phylogenetic relationship between the three types of ocellar systems is discussed.
大多数昆虫除了复眼外还具有单眼。尽管单眼只能检测其大视野内平均光强度的变化,但它们在昆虫行为中确实发挥着各种作用,因为它们在光敏感性和信号传输速度方面比复眼具有优势。在此,我总结了我们目前对多种昆虫单眼系统神经组织的了解,并提出它们可分为三种类型:(1)“蟑螂型”单眼系统,其中来自光感受器的信号首先汇聚到少数二阶神经元上,然后发散到大量投射到大脑多个目标神经纤维网的三阶神经元;(2)“蜜蜂型”单眼系统,其中光感受器信号通过大量二阶神经元传递到各种目标神经纤维网;(3)“蝗虫型”单眼系统,其中单眼信号通过二阶和三阶神经元传递到各种目标神经纤维网。我提出:(1)“蟑螂型”单眼系统可被描述为敏感型,由于光感受器信号在二阶神经元上的汇聚比例较高而获得更高的敏感性;(2)“蜜蜂型”单眼系统是快速型,以可能牺牲敏感性为代价实现信号的高速传输;(3)“蝗虫型”单眼系统是中间型,强调速度和敏感性。本文还讨论了这三种单眼系统类型之间可能的系统发育关系。