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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Modeling plant phenology database: Blending near-surface remote phenology with on-the-ground observations
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Modeling plant phenology database: Blending near-surface remote phenology with on-the-ground observations

机译:模拟植物物候数据库:将近地表远程物候与地面观测相结合

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Phenology research handles multifaceted information that needs to be organized and made promptly accessed by scientific community. We propose the conceptual design and implementation of a database to store, manage, and manipulate phenological time series and associated ecological information and environmental data. The database was developed in the context of the e-phenology project and integrates ground-based conventional plant phenology direct observations with near-surface remote phenology using repeated images from digital cameras. It also includes site-base information, sensor derived data from the study site weather station and plant ecological traits (e.g., pollination and dispersal syndrome, flower and fruit color, and leaf exchange strategy) at individual and species level. We validated the database design through the implementation of a Web application that generates the time series based on queries, exemplified in two case studies investigating: the relationship between flowering phenology and local weather; and the consistency between leafing patterns derived from ground-based phenology on leaf flush and from vegetation image indices (%Green). The database will store all the information produced in the e-phenology project, monitoring of 12 sites from cerrado savanna to rainforest, and will aggregate the legacy information of other studies developed in the Phenology Laboratory (UNESP, Rio Claro, Brazil) over the last 20 years. We demonstrate that our database is a powerful tool that can be widely used to manage complex temporal datasets, integrating legacy and live phenological information from diverse sources (e.g., conventional, digital cameras, seed traps) and temporal scales, improving our capability of producing scientific and applied information on tropical phenology. (C) 2016 Elsevier B.V. All rights reserved.
机译:物候学研究处理需要组织的多方面信息,并且科学界必须及时进行访问。我们提出了数据库的概念设计和实现,以存储,管理和处理物候时间序列以及相关的生态信息和环境数据。该数据库是在电子物候项目的背景下开发的,并使用来自数码相机的重复图像,将基于地面的常规植物物候直接观察与近地表远程物候相结合。它还包括基于站点的信息,来自研究站点气象站的传感器衍生数据以及个体和物种级别的植物生态特征(例如,授粉和传播综合征,花朵和果实的颜色以及叶片交换策略)。我们通过一个Web应用程序的实施验证了数据库的设计,该Web应用程序基于查询生成时间序列,在两个案例研究中得到了证明:调查的开花物候与当地天气之间的关系;以及基于叶面冲洗的地面物候学和植被图像指数(%Green)的叶子模式之间的一致性。该数据库将存储在电子物候项目中产生的所有信息,监视从塞拉多大草原到热带雨林的12个站点,并将汇总在过去的一段时间里由物候实验室(UNESP,巴西里约克拉罗)开发的其他研究的遗留信息。 20年。我们证明了我们的数据库是一个功能强大的工具,可广泛用于管理复杂的时间数据集,整合来自各种来源(例如,传统相机,数码相机,种子陷阱)和时间尺度的遗留和实时物候信息,从而提高了我们产生科学数据的能力以及有关热带物候的应用信息。 (C)2016 Elsevier B.V.保留所有权利。

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