Temple S E, Manietta D, Collin S P
Sensory Neurobiology Group, School of Biomedical Sciences, The University of Queensland, St. Lucia, Queensland, Australia.
Vision Res. 2013 May 3;83:1-8. doi: 10.1016/j.visres.2013.02.014. Epub 2013 Mar 1.
Archerfish forage by shooting jets of water at insects above the water's surface. The challenge of detecting small prey items against a complex background suggests that they have good visual acuity, but to date this has never been tested, despite archerfish becoming an increasingly important model species for vertebrate vision. We used a modified Landolt C test to measure visual acuity behaviourally, and compared the results to their predicted minimum separable angle based on both photoreceptor and ganglion cell spacing in the retina. Both measures yielded similar estimates of visual acuity; between 3.23 and 3.57 cycles per degree (0.155-0.140° of visual arc). Such a close match between behavioural and anatomical estimates of visual acuity in fishes is unusual and may be due to our use of an ecologically relevant task that measured the resolving power of the part of the retina that has the highest photoreceptor density and that is used in aligning their spitting angle with potential targets.
射水鱼通过向水面上方的昆虫喷射水柱来觅食。在复杂背景下检测小型猎物的挑战表明它们具有良好的视力,但迄今为止,尽管射水鱼已成为脊椎动物视觉研究中越来越重要的模式物种,这一点从未得到过测试。我们使用改良的兰德尔特C测试来行为学测量视力,并将结果与基于视网膜中光感受器和神经节细胞间距预测的最小可分辨角度进行比较。两种测量方法得出了相似的视力估计值;每度3.23至3.57周(视弧为0.155 - 0.140°)。鱼类视力的行为学和解剖学估计之间如此紧密的匹配并不常见,这可能是因为我们使用了一个与生态相关的任务,该任务测量了视网膜中光感受器密度最高且用于将喷射角度与潜在目标对齐的部分的分辨能力。