Book contents
- Leaf Optical Properties
- Leaf Optical Properties
- Copyright page
- Contents
- Preface
- Symbols
- Acknowledgments
- 1 A Brief History of Leaf Color
- 2 Leaf Biophysics
- 3 Spectroscopy of Leaf Molecules
- 4 Measurement of Leaf Optical Properties
- 5 Leaf Optical Properties in Different Wavelength Domains
- 6 Variation Due to Leaf Structural, Chemical, and Physiological Traits
- 7 Variations Due to Leaf Abiotic and Biotic Factors
- 8 Comprehensive Reviews of Leaf Optical Properties Models
- 9 Modeling Leaf Optical Properties: prospect
- 10 Modeling Three-Dimensional Leaf Optical Properties: raytran
- 11 Extraction of Leaf Traits
- 12 Applications of Leaf Optics
- Conclusion
- Book part
- References
- Index
- Plate Section (PDF Only)
6 - Variation Due to Leaf Structural, Chemical, and Physiological Traits
Published online by Cambridge University Press: 19 August 2019
- Leaf Optical Properties
- Leaf Optical Properties
- Copyright page
- Contents
- Preface
- Symbols
- Acknowledgments
- 1 A Brief History of Leaf Color
- 2 Leaf Biophysics
- 3 Spectroscopy of Leaf Molecules
- 4 Measurement of Leaf Optical Properties
- 5 Leaf Optical Properties in Different Wavelength Domains
- 6 Variation Due to Leaf Structural, Chemical, and Physiological Traits
- 7 Variations Due to Leaf Abiotic and Biotic Factors
- 8 Comprehensive Reviews of Leaf Optical Properties Models
- 9 Modeling Leaf Optical Properties: prospect
- 10 Modeling Three-Dimensional Leaf Optical Properties: raytran
- 11 Extraction of Leaf Traits
- 12 Applications of Leaf Optics
- Conclusion
- Book part
- References
- Index
- Plate Section (PDF Only)
Summary
Changes in leaf internal structure may affect leaf optical properties to varying degrees in different parts of the solar spectrum, but they are most evident in the near infrared (NIR) where absorption by pigments is minimal. The mesophyll anatomy of leaves of terrestrial plants is highly variable. To illustrate the effect of such variability on leaf optical properties, Gausman et al. (1971c) selected 11 species displaying a wide range of internal structures (compact, dorsiventral, isolateral, and succulent) and thicknesses.
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- Leaf Optical Properties , pp. 170 - 194Publisher: Cambridge University PressPrint publication year: 2019
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