Differences in leaf traits, leaf internal structure, and spectral reflectance between two communities of lianas and trees: Implications for remote sensing in tropical environments
暂无分享,去创建一个
Margaret Kalacska | Benoit Rivard | Jilu Feng | John A. Gamon | S. Joseph Wright | Stefan A. Schnitzer | G. Arturo Sánchez-Azofeifa | J. Gamon | M. Kalacska | B. Rivard | Jilu Feng | S. Schnitzer | K. L. Castro | S. Wright | G. Sánchez-Azofeifa | K. Castro
[1] Benoit Rivard,et al. Continuous wavelets for the improved use of spectral libraries and hyperspectral data , 2008 .
[2] Jane R. Foster,et al. Spatial and temporal patterns of gap dominance by low-canopy lianas detected using EO-1 Hyperion and Landsat Thematic Mapper , 2008 .
[3] Terry Caelli,et al. Hyperspectral discrimination of tropical dry forest lianas and trees: Comparative data reduction approaches at the leaf and canopy levels , 2007 .
[4] L. Ziska,et al. Biomass and toxicity responses of poison ivy (Toxicodendron radicans) to elevated atmospheric CO2. , 2008, Proceedings of the National Academy of Sciences of the United States of America.
[5] Benoit Rivard,et al. Intra- and inter-class spectral variability of tropical tree species at La Selva, Costa Rica: Implications for species identification using HYDICE imagery , 2006 .
[6] Benoit Rivard,et al. Foliar spectral properties following leaf clipping and implications for handling techniques , 2006 .
[7] Helmi Zulhaidi Mohd Shafri,et al. Hyperspectral Remote Sensing of Vegetation Using Red Edge Position Techniques , 2006 .
[8] L. Ziska,et al. Biomass and toxicity responses of poison ivy (Toxicodendron radicans) to elevated atmospheric CO2 , 2006 .
[9] G. A. Sanchez-Azofeifa,et al. Canopy observations on the hyperspectral properties of a community of tropical dry forest lianas and their host trees , 2006 .
[10] Benoit Rivard,et al. Variability in leaf optical properties of Mesoamerican trees and the potential for species classification. , 2006, American journal of botany.
[11] Osvaldo Calderón,et al. Seasonal, El Niño and longer term changes in flower and seed production in a moist tropical forest. , 2005, Ecology letters.
[12] John A. Gamon,et al. Diverse Optical and Photosynthetic Properties in a Neotropical Dry Forest during the Dry Season: Implications for Remote Estimation of Photosynthesis 1 , 2005 .
[13] D. Roberts,et al. Hyperspectral discrimination of tropical rain forest tree species at leaf to crown scales , 2005 .
[14] M. Kalacska,et al. Calibration and assessment of seasonal changes in leaf area index of a tropical dry forest in different stages of succession. , 2005, Tree physiology.
[15] S. Schnitzer. A Mechanistic Explanation for Global Patterns of Liana Abundance and Distribution , 2005, The American Naturalist.
[16] A. Mathur,et al. Denoising and wavelet-based feature extraction of MODIS multi-temporal vegetation signatures , 2005, International Workshop on the Analysis of Multi-Temporal Remote Sensing Images, 2005..
[17] D. Pérez-Salicrup,et al. Number of Lianas per Tree and Number of Trees Climbed by Lianas at Los Tuxtlas, Mexico 1 , 2005 .
[18] G. Goldstein,et al. Water uptake and transport in lianas and co-occurring trees of a seasonally dry tropical forest , 2005, Trees.
[19] Terry Caelli,et al. Discrimination of lianas and trees with leaf-level hyperspectral data , 2004 .
[20] F. Putz,et al. Liana loads and post-logging liana densities after liana cutting in a lowland forest in Bolivia , 2004 .
[21] F. Putz,et al. Effects of lianas on growth and regeneration of Prioria copaifera in Darien, Panama , 2004 .
[22] S. Paton,et al. ARE LIANAS INCREASING IN IMPORTANCE IN TROPICAL FORESTS? A 17‐YEAR RECORD FROM PANAMA , 2004 .
[23] C. François,et al. Towards universal broad leaf chlorophyll indices using PROSPECT simulated database and hyperspectral reflectance measurements , 2004 .
[24] David A. Landgrebe,et al. Signal Theory Methods in Multispectral Remote Sensing , 2003 .
[25] Yadvinder Malhi,et al. Increasing dominance of large lianas in Amazonian forests , 2002, Nature.
[26] D. Sims,et al. Relationships between leaf pigment content and spectral reflectance across a wide range of species, leaf structures and developmental stages , 2002 .
[27] Frans Bongers,et al. The ecology of lianas and their role in forests , 2002 .
[28] Mark S. Nixon,et al. Feature Extraction and Image Processing , 2002 .
[29] Andrew D. Richardson,et al. An evaluation of noninvasive methods to estimate foliar chlorophyll content , 2002 .
[30] P. Reich,et al. Strategy shifts in leaf physiology, structure and nutrient content between species of high‐ and low‐rainfall and high‐ and low‐nutrient habitats , 2001 .
[31] Jiang Li,et al. Wavelets for computationally efficient hyperspectral derivative analysis , 2001, IEEE Trans. Geosci. Remote. Sens..
[32] F. Putz,et al. Lianas and Trees in a Liana Forest of Amazonian Bolivia1 , 2001 .
[33] Linda G. Shapiro,et al. Computer Vision , 2001 .
[34] E. Hunt,et al. Estimating near-infrared leaf reflectance from leaf structural characteristics. , 2001, American journal of botany.
[35] P. Fearnside,et al. RAIN FOREST FRAGMENTATION AND THE STRUCTURE OF AMAZONIAN LIANA COMMUNITIES , 2001 .
[36] M. Cochrane. Using vegetation reflectance variability for species level classification of hyperspectral data , 2000 .
[37] M. Cochrane,et al. Using vegetation reè ectance variability for species level classié cation of hyperspectral data , 2000 .
[38] Gerardo Avalos,et al. Leaf Optical Properties of Trees and Lianas in the Outer Canopy of a Tropical Dry Forest 1 , 1999 .
[39] Hendrik Poorter,et al. A comparison of specific leaf area, chemical composition and leaf construction costs of field plants from 15 habitats differing in productivity , 1999 .
[40] Ian J. Wright,et al. Differences in seedling growth behaviour among species: trait correlations across species, and trait shifts along nutrient compared to rainfall gradients , 1999 .
[41] John A. Richards,et al. Remote Sensing Digital Image Analysis: An Introduction , 1999 .
[42] P. Reich,et al. Relationships of leaf dark respiration to leaf nitrogen, specific leaf area and leaf life-span: a test across biomes and functional groups , 1998, Oecologia.
[43] D. Roberts,et al. Spectral changes with leaf aging in Amazon caatinga , 1998, Trees.
[44] J. Gamon,et al. The photochemical reflectance index: an optical indicator of photosynthetic radiation use efficiency across species, functional types, and nutrient levels , 1997, Oecologia.
[45] Robin L. Chazdon,et al. Tropical Forest Plant Ecophysiology , 1996, Springer US.
[46] K. Winter,et al. Diel Patterns of CO2 Exchange in Rainforest Canopy Plants , 1996 .
[47] M. R. Carter,et al. Soil Sampling and Methods of Analysis , 1993 .
[48] J. Peñuelas,et al. The reflectance at the 950–970 nm region as an indicator of plant water status , 1993 .
[49] Geoffrey G. Parker,et al. Access to the Upper Forest Canopy with a Large Tower Crane , 1992 .
[50] A. Gentry. The Biology of Vines : The distribution and evolution of climbing plants , 1992 .
[51] Richard A. Bone,et al. CORRELATES OF LEAF OPTICAL PROPERTIES IN TROPICAL FOREST SUN AND EXTREME‐SHADE PLANTS , 1990 .
[52] Harold A. Mooney,et al. Biology of vines , 1989 .
[53] F. Putz,et al. Liana phenology on Barro Colorado Island, Panama , 1987 .
[54] David W. Lee,et al. LEAF OPTICAL PROPERTIES OF RAINFOREST SUN AND EXTREME SHADE PLANTS , 1986 .
[55] F. Putz. The natural history of lianas on Barro Colorado Island, Panama , 1984 .
[56] R. Clark,et al. Reflectance spectroscopy: Quantitative analysis techniques for remote sensing applications , 1984 .
[57] F. Putz. Liana biomass and leaf area of a «Tierra Firme» forest in the Rio Negro Basin, Venezuela , 1983 .
[58] E. B. Knipling. Physical and physiological basis for the reflectance of visible and near-infrared radiation from vegetation , 1970 .
[59] H. Gausman,et al. Reflectance of cotton leaves and their structure , 1969 .
[60] A. Bhattacharyya. On a measure of divergence between two statistical populations defined by their probability distributions , 1943 .
[61] S. C. Kendeigh,et al. The Cardio‐Vibrometer: A New Instrument for Measuring the Heart Rate and Other Body Activities of Animals , 1940 .
[62] P. Mahalanobis. On the generalized distance in statistics , 1936 .