首页> 外文期刊>Emerging Topics in Life Sciences >Automated video monitoring of insect pollinators in the field
【24h】

Automated video monitoring of insect pollinators in the field

机译:对现场昆虫传粉媒介的自动视频监测

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Ecosystems are at increasing risk from the global pollination crisis. Gaining better knowledge about pollinators and their interactions with plants is an urgent need. However, conventional methods of manually recording pollinator activity in the field can be time- and cost-consuming in terms of labour. Field-deployable video recording systems have become more common in ecological studies as they enable the capture of plant-insect interactions in fine detail. Standard video recording can be effective, although there are issues with hardware reliability under field-conditions (e.g. weatherproofing), and reviewing raw video manually is a time-consuming task. Automated video monitoring systems based on motion detection partly overcome these issues by only recording when activity occurs hence reducing the time needed to review footage during post-processing. Another advantage of these systems is that the hardware has relatively low power requirements. A few systems have been tested in the field which permit the collection of large datasets. Compared with other systems, automated monitoring allows vast increases in sampling at broad spatiotemporal scales. Some tools such as post-recording computer vision software and data-import scripts exist, further reducing users' time spent processing and analysing the data. Integrated computer vision and automated species recognition using machine learning models have great potential to further the study of pollinators in the field. Together, it is predicted that future advances in technology-based field monitoring methods will contribute significantly to understanding the causes underpinning pollinator declines and, hence, developing effective solutions for dealing with this global challenge.
机译:生态系统正在增加全球授粉危机的风险。迫切需要获得有关传粉媒介及其与植物的相互作用的更好的知识。但是,在劳动方面,手动记录授粉媒介活动的常规方法可能是时间和成本耗尽的。在生态学研究中,由于可以详细捕捉植物内相互作用,因此可以详细地捕获野外视频记录系统。标准视频录制可能是有效的,尽管在现场条件下存在硬件可靠性(例如防风雨),并且手动审查原始视频是一项耗时的任务。基于运动检测的自动视频监控系统仅通过在活动发生时就可以通过记录来部分克服这些问题,从而减少在后处理过程中查看录像所需的时间。这些系统的另一个优点是硬件的功率要求相对较低。在现场测试了一些系统,这些系统允许收集大型数据集。与其他系统相比,自动监测可以在广泛的时空尺度下大大增加采样。存在一些工具,例如录制计算机视觉软件和数据IMPORT脚本,进一步减少用户花费的时间处理和分析数据。使用机器学习模型的集成计算机视觉和自动化物种识别具有进一步研究授粉媒介的巨大潜力。共同预测,基于技术的现场监测方法的未来进展将对理解基础传粉媒介基础的原因下降,从而为应对这一全球挑战而开发有效的解决方案。

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