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クロロフィル蛍光×葉面積指数×
分野農学農学
系統Process / pipelineProcess / pipeline
提唱年1931-20041947
提唱者Hans Kautsky, Ulrich Schreiber, Reto J. StrasserDonald J. Watson
種類Non-invasive photosynthetic measurementPlant morphometric measurement
原典Kautsky, H., & Hirsch, A. (1931). Neue Versuche zur Klärung der Assimilationstätigkeit. Naturwissenschaften, 19(48), 964-964. link ↗Watson, D. J. (1947). Comparative physiological studies on the growth of field crops: I. Variation in net assimilation rate and leaf area between species and varieties, and within and between years. Annals of Botany, 11(43), 375-407. DOI ↗
別名Fluorescence, Fv/Fm, OJIP curve, PAM fluorometryLAI, Leaf area, Canopy structure
関連33
概要Chlorophyll fluorescence is a non-invasive optical measurement of how efficiently the photosynthetic machinery converts absorbed light into chemical energy (photosynthesis) or heat and light (fluorescence). When photosynthesis is inhibited by stress (drought, cold, salt, pests), chlorophyll fluorescence increases because excitation energy cannot be used for photosynthesis and must be released as light or heat. Fluorescence parameters (Fv/Fm, OJIP curves) act as sensitive, rapid indicators of photosynthetic stress, enabling early detection of plant dysfunction before visible symptoms appear.Leaf Area Index (LAI) is a dimensionless quantity that measures the total one-sided area of leaves per unit ground area covered by a canopy. It quantifies canopy density and structure: LAI = 0 for bare soil, LAI = 1 for a thin crop, LAI = 3-6 for dense cereal or grass canopies, and LAI > 8 for dense forest. LAI is a key variable in crop growth models, evapotranspiration estimation, and remote sensing because it directly controls light interception, photosynthesis, and water loss from vegetation.
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ScholarGate手法を比較: Chlorophyll Fluorescence · Leaf Area Index. 2026-06-18に以下より取得 https://scholargate.app/ja/compare