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首页> 外文期刊>The Journal of Applied Ecology >Assessing biodiversity by remote sensing in mountai nous terrain: the potential of LiDAR to predict forest beetle assemblages
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Assessing biodiversity by remote sensing in mountai nous terrain: the potential of LiDAR to predict forest beetle assemblages

机译:遥感评估生物多样性群山常识地形:激光雷达的潜力预测森林甲虫组合

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摘要

1. Effective biodiversity management can only be implemented if data are available on assem_blage-environment relationships. The level of detail needs to be relevant to the scale of planning and decision making. A number of remote-sensing methods are available, but there are few studies that link information collected at both landscape and local scales. This is particularly true for arthropods even though these organisms are ecologically very important. 2. We assessed the predictive power of habitat variables measured by airborne laser scanning (light detection and ranging; LiDAR) to model the activity, richness and composition of assemblages of forest-dwelling beetles. We compared the results with data acquired using conventional field methods. We sampled beetles with pitfall traps and flight-interception traps at 171 sampling stations along an elevation gradient in a montane forest. 3. We found a high predictive power of LiDAR-derived variables, which captured most of the pre_dictive power of variables measured in ground surveys. In particular, mean body size and species composition of assemblages showed considerable predictability using LiDAR-derived variables. The differences in the predictability of species richness and diversity of assemblages between trap types can be explained by sample size. We expect predictabilities with R~2 of up to 0.6 for samples with 250 individuals on average. 4. The statistical response of beetle data and the ecological interpretability of results showed that airborne laser scanning can be used for cost-effective mapping (LiDAR : field survey : beetles 15 : 100: 260 ê ha~(-1)) of biodiversity even in remote mountain areas and in structurally complex habitats, such as forests. 5. Synthesis and applications. The strong relationship between characteristics of beetle assemblages to variables derived by laser scanning provides an opportunity to link data from local ground sur_veys of hyperdiverse taxa to data collected remotely at the landscape scale. This will enable conser_vation managers to evaluate habitats, define hotspots or map activity, richness and composition of assemblages at scales relevant for planning and management. In addition to the large area that can be sampled remotely, the grain of the data allows a single tree to be identified, which opens up the possibility of planning management actions at local scales.
机译:1. 如果数据实现的assem_blage-environment关系。相关的细节需要的规模规划和决策。遥感方法是可用的,但是很少有研究链接信息收集景观和当地的尺度。特别适用于节肢动物即使这些生物生态很重要。2. 变量由机载激光扫描测量(光探测和测距;活动,丰富和组合的成分森林的甲虫。结果与使用传统数据获得场的方法。陷阱和flight-interception陷阱,享年171岁取样站沿海拔梯度山地的森林。的力量LiDAR-derived变量,而被捕大多数pre_dictive变量的力量以地面调查。身体大小和物种组成的集合体显示相当大的可预测性使用LiDAR-derived变量。可预见性的物种丰富度和多样性陷阱之间的组合类型用样本大小来解释。可预测性和R ~ 2的0.6样本平均有250个人。统计响应数据和甲虫结果表明生态可解释性机载激光扫描可用于具有成本效益的映射(激光雷达:实地调查:甲虫15:100:260 e哈~(1))的生物多样性即使在偏远的山区和结构复杂的栖息地,如森林。和应用程序。甲虫的特征组合导出了激光扫描提供了一个变量链接数据从本地地面的机会sur_veys hyperdiverse类群的数据收集在景观尺度远程。conser_vation经理评估栖息地,定义热点或地图活动,丰富性和成分组合的尺度有关规划和管理。可以远程采样区域,粮食的一棵树可以被识别的数据,打开计划的可能性在地区范围内管理操作。

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