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Research ArticleArticles

Comparison of Five Methods for Estimating Leaf Area Index of Open-Grown Deciduous Trees

Paula J. Peper and E. Gregory McPherson
Arboriculture & Urban Forestry (AUF) March 1998, 24 (2) 98-111; DOI: https://doi.org/10.48044/jauf.1998.013
Paula J. Peper
Western Center for Urban Forest Research and Education, Pacific Southwest Research Station, USDA Forest Service, c/o Department of Environmental Horticulture, University of California, Davis, CA 95616-8587
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E. Gregory McPherson
Western Center for Urban Forest Research and Education, Pacific Southwest Research Station, USDA Forest Service, c/o Department of Environmental Horticulture, University of California, Davis, CA 95616-8587
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Literature Cited

  1. ↵
    1. Baskerville, G.L.
    1972. Use of logarithmic regression in the estimation of plant biomass. Can. J. For. 2:49–53.
    OpenUrl
  2. ↵
    1. Bonhomme, R., and
    2. P. Chartier
    . 1972. The interpretation and automatic measurement of hemispherical photographs to obtain sunlit foliage area and gap frequency. Isr. J. Agric. Res. 22:53–61.
    OpenUrl
  3. ↵
    1. Botkin, D.B.
    1986. Remote Sensing of the Biosphere. National Academy of Sciences, Report of the Committee on Planetary Biology, National Research Council, Washington, DC.
  4. ↵
    1. Conkling, B.L. and
    2. G.E. Byers
    1. Burkman, W.G.,
    2. R. Anderson,
    3. K. Stolte, V.J. LaBau,
    4. I. Millers,
    5. M. Miller-Weeks, and
    6. M. Schomaker
    . 1993. Crown condition classification. In Conkling, B.L. and G.E. Byers (Eds. Forest Health Monitoring Field Methods Guide, Internal report. U.S. Environmental Protection Agency, Las Vegas, NV.
  5. ↵
    1. Campbell, G.S.
    1986. Extinction coefficients for radiation in plant canopies calculated using an ellipsoidal inclination angle distribution. Agric. For. Meteorol. 36:317–321.
    OpenUrl
  6. ↵
    1. Russell, G.,
    2. B. Marshall, and
    3. P.G. Jarvis
    1. Campbell, G.S., and
    2. J.M. Norman
    . 1988. The description and measurement of plant canopy structure, pp 1–19. In Russell, G., B. Marshall, and P.G. Jarvis (Eds.). (ed. G. Russell), Plant Canopies: Their Growth, Form and Function Society for Experimental Biology, Seminar Series 29, Cambridge University Press, Cambridge, England.
  7. ↵
    1. Gardner, T.J., and
    2. T.D. Sydnor
    . 1987. Preliminary studies in photographic determination of tree shade capacity. HortScience 22 (1):145–148.
    OpenUrl
  8. ↵
    1. Gholz, H.L.,
    2. S.A. Vogel,
    3. W.P. Cropper,
    4. K. McKelvey,
    5. K.C. Ewel,
    6. R.O. Teskey, and
    7. P.J. Curran
    , 1991. Dynamics of canopy structure and light interception in Pinus elliottii stands, North Florida. Ecol. Monogr. 6:33–51.
    OpenUrl
  9. ↵
    1. Lang, A.R.G.
    1987. Simplified estimate of leaf area index from transmittance of the sun’s beam. Agric. For. Meteorol. 41:179–186.
    OpenUrl
  10. ↵
    1. Lang, A.R.G., and
    2. R.E. McMurtrie
    . 1992. Total leaf areas of single trees of Eucalyptus grandis estimated from transmittances of the sun’s beam. Agric. For. Meteorol.58: 79–92.
    OpenUrl
  11. ↵
    1. Lang, A.R.G., and
    2. X. Yueqin
    . 1986. Estimation of leaf area index from transmission of direct sunlight in discontinuous canopies. Agric. For. Meteorol. 37:229–243.
    OpenUrl
  12. ↵
    1. Lindsey, P.A., and
    2. N.L. Bassuk
    . 1992. A nondestructive image analysis technique for estimating whole-tree leaf area. HortTechnology. 2(1):66–72.
    OpenUrl
  13. ↵
    1. Marshall, J.D., and
    2. R.H. Waring
    . 1986. Comparison of methods of estimating leaf-area index in old-growth Douglas-fir. Ecology. 67:975–979.
    OpenUrlCrossRef
  14. ↵
    1. Martens, S.N.,
    2. S.L. Ustin, and
    3. R.A. Rosseau
    . 1993. Estimation of tree canopy leaf area index by gap fraction analysis. For. Ecol. Manage. 61:91–108.
    OpenUrl
  15. ↵
    1. McPherson, E.G.
    1992. Accounting for benefits and costs of urban greenspace. Landscape Urban Plann. 22:41–51.
    OpenUrl
    1. McPherson, E.G.,
    2. E. Dougherty, and
    3. J.R. Simpson
    . Unpublished data. Crown density estimates for six tree species. USDA For. Serv., Pac. Southw. Res. Sta.
  16. ↵
    1. Mori, S.
    1996. Letter to P. Peper on statistical methods for study analysis.
  17. ↵
    1. Nel, E.M., and
    2. C.A. Wessman
    . 1993. Canopy transmittance models for estimating forest leaf area index. Can. J. For. Res. 23:2579–2586.
    OpenUrl
  18. ↵
    1. Neumann, H.H.,
    2. G. DenHartog, and
    3. R.H. Shaw
    . 1989. Leaf area measurements based on hemispheric photographs and leaf-litter collection in a deciduous forest during autumn leaf-fall. Agric. For. Meteorol. 45:325–345.
    OpenUrl
  19. ↵
    1. Pearcy, R.W.,
    2. J. Ehleringer,
    3. H.A. Mooney, and
    4. P.W. Rundel
    1. Norman, J.M., and
    2. G.S. Campbell
    . 1989. Canopy structure, pp 301–325. In Pearcy, R.W., J. Ehleringer, H.A. Mooney, and P.W. Rundel (Eds.). Plant Physiological Ecology: Field Methods and Instrumentation. Chapman and Hall, New York, NY.
  20. ↵
    1. Norman, J.M., and
    2. J.M. Welles
    . 1983. Radiative transfer in an array of canopies. Agron. J. 75: 481–488.
    OpenUrlCrossRefWeb of Science
    1. McPherson, E.G.,
    2. D.J. Nowak and
    3. R.A. Rowntree
    1. Nowak, D.J.
    1994. Urban forest structure: The state of Chicago’s urban forest, pp 3–18. In McPherson, E.G., D.J. Nowak and R.A. Rowntree (Eds.). Chicago’s Urban Forest Ecosystem: Results of the Chicago Urban Forest Climate Project. USDA For. Serv. Gen. Tech. Rep. NE-186. Radnor, PA.
  21. ↵
    1. Nowak, D.J
    . 1996. Estimating leaf area and leaf biomass of open-grown deciduous urban trees. For. Sci. 42(4):504–507.
    OpenUrl
  22. ↵
    1. Pierce, L.L., and
    2. S.W. Running
    . 1988. Rapid estimation of coniferous forest leaf area index using a portable integrating radiometer. Ecology. 69:1762–1767.
    OpenUrlCrossRefWeb of Science
  23. ↵
    1. Welles, J.M., and
    2. J.M. Norman
    . 1991. Instrument for indirect measurement of canopy architecture. Agron. J. 83:818–825.
    OpenUrlCrossRefWeb of Science
  24. ↵
    1. Whittaker, R.H., and
    2. G.M. Woodwell
    . 1968. Dimension and production relations of trees and shrubs in the Brookhaven forest, New York. J. Ecol. 56:1–25.
    OpenUrlCrossRefWeb of Science
  25. ↵
    1. Wilkinson, D.M.
    1991. Can photographic methods be used for measuring the light attenuation characteristics of trees in leaf? Landscape Urban Plann. 20:347–350.
    OpenUrl
  26. ↵
    1. Wagar, J.A., and
    2. G.M. Heisler
    . 1986. Reduction of solar radiation by tree crowns. Progress in Solar Energy. American Section of the International Solar Energy Society, Inc.
  27. ↵
    1. Winer, A.M.,
    2. L. Chinken,
    3. J. Arey, and
    4. R. Atkinson
    . 1995. Critical Evaluation of a Biogenic Emission System for Photochemical Grid Modeling in California. Final report to the California Air Resources Board, Contract No. 93–725, Sacramento, CA.
  28. ↵
    1. Yan, Y.
    1996. Letter to the author from CID, Inc. application engineer. 6 May.
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Vol. 24, Issue 2
March 1998
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Comparison of Five Methods for Estimating Leaf Area Index of Open-Grown Deciduous Trees
Paula J. Peper, E. Gregory McPherson
Arboriculture & Urban Forestry (AUF) Mar 1998, 24 (2) 98-111; DOI: 10.48044/jauf.1998.013

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Comparison of Five Methods for Estimating Leaf Area Index of Open-Grown Deciduous Trees
Paula J. Peper, E. Gregory McPherson
Arboriculture & Urban Forestry (AUF) Mar 1998, 24 (2) 98-111; DOI: 10.48044/jauf.1998.013
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Keywords

  • LAI
  • Leaf area
  • hemispheric photography
  • Allometry
  • ceptometer
  • image processing
  • plant canopy analyzer

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