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Thermal imaging in plant and ecosystem ecology: applications and challenges

机译:植物和生态系统生态学的热成像:应用和挑战

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Temperature is a primary environmental control on ecological systems and processes at a range of spatial and temporal scales. The surface temperature of organisms is often more relevant for ecological processes than air temperature, which is much more commonly measured. Surface temperature influences—and is influenced by—a range of biological, physical, and chemical processes, providing a unique view of temperature effects on ecosystem function. Furthermore, surface temperatures vary markedly over a range of temporal and spatial scales and may diverge from air temperature by 40°C or more. Surface temperature measurements have been challenging due to sensor and computational limitations but are now feasible at high spatial and temporal resolutions using thermal imaging. Thus, significant advances in our understanding of plant and ecosystem thermal regimes and their functional consequences are now possible. Thermal measurements may be used to address many ecological questions, such as the thermal controls on plant and ecosystem metabolism and the impact of heat waves and drought. Further advances in this area will require interdisciplinary collaborations among practitioners in fields ranging from physiology to ecosystem ecology to remote sensing and geospatial analysis. In this overview, we demonstrate the feasibility, utility, and potential of thermal imaging for measuring vegetation surface temperatures across a range of scales and from measurement, analysis, and synthesis perspectives.
机译:温度是关于生态系统和一系列空间和时间尺度的过程的主要环境控制。生物体的表面温度通常与生态过程更相关,而不是空气温度,这比空气温度更常见。表面温度影响 - 受到一系列生物,物理和化学过程,为生态系统功能提供了独特的温度效应视图。此外,表面温度在一系列的时间和空间尺度上显着变化,并且可能从空气温度偏离40°C或更多。由于传感器和计算限制,表面温度测量一直在具有挑战性,但现在使用热成像在高空间和时间分辨率下可行。因此,现在,我们对植物和生态系统的理解以及其功能后果的理解显着进展。热测量可用于解决许多生态问题,例如植物和生态系统代谢的热控制以及热波和干旱的影响。该领域的进一步进展将需要在从生理学到生态系统生态学到遥感和地理空间分析的领域的跨学科合作。在此概述中,我们展示了热成像的可行性,效用和潜力,用于测量植被表面温度跨一系列秤和测量,分析和合成观点。

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