Thermal Infrared Remote Sensing of Stress Responses in Forest Environments: a Review of Developments, Challenges, and Opportunities

IF 9 1区 农林科学 Q1 FORESTRY Current Forestry Reports Pub Date : 2023-12-08 DOI:10.1007/s40725-023-00207-z
Magdalena Smigaj, Avinash Agarwal, Harm Bartholomeus, Mathieu Decuyper, Ahmed Elsherif, Arjen de Jonge, Lammert Kooistra
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Abstract

Purpose of Review

The successful application of thermal infrared (TIR) remote sensing in the agricultural domain, largely driven by the arrival of new platforms and sensors that substantially increased thermal data resolution and availability, has sparked interest in thermography as a tool for monitoring forest health. In this review, we take a step back to reflect on what physiological responses are reflected in leaf and canopy temperature and summarise research activities on TIR remote sensing of stress responses in forest environments, highlighting current methodological challenges, open questions, and promising opportunities.

Recent Findings

This systematic literature review showed that whilst the focus still remains on satellite imagery, Uncrewed Aerial Vehicles (UAVs) are playing an increasingly important role in testing the capabilities and sensitivity to stress onset at the individual tree level. To date, drought stress has been the focal point of research, largely due to its direct link to stomatal functioning at leaf level. Though, research into thermal responses to other stressors, e.g. pathogens, is also gaining momentum.

Summary

Disentangling stress-induced canopy temperature variations from environmental factors and structural influences remains the main challenge for broader application of TIR remote sensing. Further development and testing of approaches for thermal data analysis, including their applicability for different tree species and sensitivity under different climatic conditions, are required to establish how TIR remote sensing can best complement existing forest health monitoring approaches.

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森林环境应激反应的热红外遥感:发展、挑战与机遇综述
综述目的 热红外(TIR)遥感技术在农业领域的成功应用,主要得益于新平台和传感器的出现,它们大大提高了热数据的分辨率和可用性。在这篇综述中,我们将回过头来思考叶片和冠层温度反映了哪些生理反应,并总结有关森林环境中胁迫反应的热成像仪遥感研究活动,突出强调当前的方法挑战、开放性问题和大有可为的机会。迄今为止,干旱胁迫一直是研究的重点,这主要是因为干旱胁迫与叶片层面的气孔功能直接相关。将胁迫引起的树冠温度变化与环境因素和结构影响相分离,仍然是更广泛应用红外遥感技术的主要挑战。需要进一步开发和测试热数据分析方法,包括对不同树种的适用性和不同气候条件下的敏感性,以确定红外遥感如何对现有的森林健康监测方法进行最佳补充。
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来源期刊
Current Forestry Reports
Current Forestry Reports Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
15.90
自引率
2.10%
发文量
22
期刊介绍: Current Forestry Reports features in-depth review articles written by global experts on significant advancements in forestry. Its goal is to provide clear, insightful, and balanced contributions that highlight and summarize important topics for forestry researchers and managers. To achieve this, the journal appoints international authorities as Section Editors in various key subject areas like physiological processes, tree genetics, forest management, remote sensing, and wood structure and function. These Section Editors select topics for which leading experts contribute comprehensive review articles that focus on new developments and recently published papers of great importance. Moreover, an international Editorial Board evaluates the yearly table of contents, suggests articles of special interest to their specific country or region, and ensures that the topics are up-to-date and include emerging research.
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