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Differentiating Acute and Chronic Stress in Norway Spruce using Hyperspectral and Thermal Remote Sensing in Experimental Plots

The result's identifiers

  • Result code in IS VaVaI

    <a href="https://www.isvavai.cz/riv?ss=detail&h=RIV%2F86652079%3A_____%2F25%3A00644902" target="_blank" >RIV/86652079:_____/25:00644902 - isvavai.cz</a>

  • Result on the web

    <a href="https://isprs-archives.copernicus.org/articles/XLVIII-2-W11-2025/index.html" target="_blank" >https://isprs-archives.copernicus.org/articles/XLVIII-2-W11-2025/index.html</a>

  • DOI - Digital Object Identifier

    <a href="http://dx.doi.org/10.5194/isprs-archives-XLVIII-2-W11-2025-133-2025" target="_blank" >10.5194/isprs-archives-XLVIII-2-W11-2025-133-2025</a>

Alternative languages

  • Result language

    angličtina

  • Original language name

    Differentiating Acute and Chronic Stress in Norway Spruce using Hyperspectral and Thermal Remote Sensing in Experimental Plots

  • Original language description

    Norway spruce forests across Europe are increasingly threatened by acute and chronic stressors, particularly thermal exposure and drought, exacerbated by climate change. This study investigates the physiological and spectral responses of spruce trees under experimentally induced stress using high resolution thermal and hyperspectral remote sensing from UAV and aircraft platforms. Field experiments were conducted in Slovakia and the Czech Republic across three plot types: edge exposed (acute thermal stress), roofed (chronic drought stress), and unmanipulated controls. nBy integrating remote sensing data with sap flow, VOC emissions, and soil microclimate measurements, we show that acute stress from sudden edge exposure triggers rapid physiological responses, including increased transpiration, elevated crown temperatures, and distinctive VOC profiles. In contrast, chronic drought stress, simulated through rainfall exclusion, leads to sustained reductions in sap flow, lower water availability, and declines in key spectral indices such as MRENDVI and NDWI. Bark beetle attacks occurred only in drought stressed trees, suggesting a link between prolonged physiological decline and pest vulnerability. Generalised Additive Models revealed that crown temperature, soil water potential, and canopy structure strongly influence sap flow, while thermal traits were shaped by canopy density and solar radiation. Remote sensing data captured these relationships, enabling early detection of stress before visible symptoms emerged. nOur findings confirm that thermal and hyperspectral imaging, supported by ground truth data, can reliably distinguish between acute and chronic stress in Norway spruce. This multi sensor approach supports proactive forest health monitoring and early intervention against bark beetle outbreaks under changing climatic conditions.

  • Czech name

  • Czech description

Classification

  • Type

    D - Article in proceedings

  • CEP classification

  • OECD FORD branch

    20705 - Remote sensing

Result continuities

  • Project

  • Continuities

    I - Institucionalni podpora na dlouhodoby koncepcni rozvoj vyzkumne organizace

Others

  • Publication year

    2025

  • Confidentiality

    S - Úplné a pravdivé údaje o projektu nepodléhají ochraně podle zvláštních právních předpisů

Data specific for result type

  • Article name in the collection

    The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences

  • ISBN

  • ISSN

    1682-1750

  • e-ISSN

  • Number of pages

    5

  • Pages from-to

  • Publisher name

    Copernicus Publications

  • Place of publication

    Göttingen

  • Event location

    Espoo

  • Event date

    Sep 10, 2025

  • Type of event by nationality

    WRD - Celosvětová akce

  • UT code for WoS article