首页> 外文会议>SPIE Conference on Bioinspiration, Biomimetics, and Bioreplication >Superior visual performance in nocturnal insects: Neural principles and bio-inspired technologies
【24h】

Superior visual performance in nocturnal insects: Neural principles and bio-inspired technologies

机译:夜间昆虫的卓越视觉性能:神经原理和生物启发技术

获取原文

摘要

At night, our visual capacities are severely reduced, with a complete loss in our ability to see colour and a dramatic loss in our ability to see fine spatial and temporal details. This is not the case for many nocturnal animals, notably insects. Our recent work - particularly on fast-flying moths and bees and on ball-rolling dung beetles - has shown that nocturnal animals are able to distinguish colours, to detect faint movements, to learn visual landmarks, to orient to the faint pattern of polarised light produced by the moon and to navigate using the stars. These impressive visual abilities are the result of exquisitely adapted eyes and visual systems, the product of millions of years of evolution. Nocturnal animals typically have highly sensitive eye designs and visual neural circuitry that is optimised for extracting reliable information from dim and noisy visual images. Even though we are only at the threshold of understanding the neural mechanisms responsible for reliable nocturnal vision, growing evidence suggests that the neural summation of photons in space and time is critically important: even though vision in dim light becomes necessarily coarser and slower, it also becomes significantly more reliable. We explored the benefits of spatiotemporal summation by creating a computer algorithm that mimicked nocturnal visual processing strategies. This algorithm dramatically increased the reliability of video collected in dim light - including the preservation of colour - strengthening evidence that summation strategies are essential for nocturnal vision.
机译:在晚上,我们的视觉能力严重减少,在我们看到颜色和戏剧性损失的能力方面具有完全的损失,在我们看到精细的空间和时间细节。许多夜间动物的情况并非如此,特别是昆虫。我们最近的工作 - 特别是在飞行飞蛾和蜜蜂和滚珠肺甲虫上 - 表明夜行动物能够区分颜色,检测微弱的运动,学习视觉地标,以定向偏振光的微弱模式。由月亮产生并使用星星导航。这些令人印象深刻的视觉能力是精致改装的眼睛和视觉系统的结果,该系统数百万年的进化。夜间动物通常具有高度敏感的眼睛设计和视觉神经电路,该视觉神经电路经过优化,用于从昏暗和嘈杂的视觉图像中提取可靠的信息。尽管我们只是理解负责可靠夜间视野的神经机制的门槛,但日益增长的证据表明,空间和时间的光子的神经总和是至关重要的:即使在昏暗的光线中的视觉变得粗糙,也是如此变得明显更可靠。我们通过创建模仿夜间视觉处理策略的计算机算法来探讨了时尚求和的好处。该算法显着提高了昏暗的灯光中的视频的可靠性 - 包括保持颜色的保存证据,即总结策略对于夜间视野至关重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号