Nuutila Juha, Honkanen Anna E, Heimonen Kyösti, Weckström Matti
Nano and Molecular Systems Research Unit, University of Oulu, P.O. Box 3000, FIN-90014, Oulu, Finland.
Lund Vision Group, Department of Biology, Lund University, 22362 Lund, Sweden.
J Exp Biol. 2020 Jan 1. doi: 10.1242/jeb.204768.
Using tethered American cockroaches walking on a trackball in a spherical virtual reality environment, we tested optomotor responses to horizontally moving black-and-white gratings of different vertical extent under six different light intensities. We found that shortening the vertical extent of the wide-field stimulus grating within a light level weakened response strength, reduced average velocity, and decreased angular walking distance. Optomotor responses with the vertically shortened stimuli persisted down to light intensity levels of 0.05 lx. Response latency seems to be independent of both the height of the stimulus and light intensity. The optomotor response started saturating at the light intensity of 5 lx, where the shortest behaviourally significant stimulus was 1°. This indicates that the number of vertical ommatidial rows needed to elicit an optomotor response at 5 lx and above is in the single digits, maybe even just one. Our behavioural results encourage further inquiry into the interplay of light intensity and stimulus size in insect dim-light vision.
我们使用被束缚的美国蟑螂在球形虚拟现实环境中的轨迹球上行走,测试了在六种不同光照强度下对不同垂直范围的水平移动黑白光栅的视动反应。我们发现,在一个光照水平内缩短宽视野刺激光栅的垂直范围会削弱反应强度、降低平均速度并减少角向行走距离。垂直缩短刺激的视动反应在光照强度低至0.05勒克斯时仍持续存在。反应潜伏期似乎与刺激高度和光照强度均无关。视动反应在5勒克斯的光照强度时开始饱和,此时行为上最显著的最短刺激为1°。这表明在5勒克斯及以上引发视动反应所需的垂直小眼排数为个位数,甚至可能只有一排。我们的行为学结果鼓励进一步探究昆虫弱光视觉中光照强度与刺激大小之间的相互作用。