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Edge effects in lacunarity analysis

Author

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  • Feagin, R.A.
  • Wu, X.B.
  • Feagin, T.

Abstract

Lacunarity results can be skewed by edge effects and this may have negative implications for research projects in ecological pattern analysis and modeling. The problem occurs because the standard gliding-box algorithm over-samples the center of a map and under-samples along its edges. This effect is particularly strong when the scale of inquiry is large relative to the extent of the map, as fewer box mass estimates are utilized to form the distribution from which lacunarity is calculated. We devised a new algorithm where we allowed the gliding-box to overlap beyond the edge of the map and wrap back around to the opposing side, thereby solving both problems. In this study, we compare the standard lacunarity algorithm with this new periodic boundary algorithm (a method often used in cellular automata modeling) to quantify the differences between the two approaches and to determine when the standard algorithm may suffer from deleterious effects. We performed our analysis upon several neutral landscapes to evaluate the importance of pattern as well. We found that the standard algorithm skews results when the pattern is strongly heterogeneous or aggregated, especially when the classes are not evenly distributed around the center of the map or when percent cover pi is low. The advantages and disadvantages of both algorithms, as well as other potential remedies such as up-weighting samples along the edges, are discussed.

Suggested Citation

  • Feagin, R.A. & Wu, X.B. & Feagin, T., 2007. "Edge effects in lacunarity analysis," Ecological Modelling, Elsevier, vol. 201(3), pages 262-268.
  • Handle: RePEc:eee:ecomod:v:201:y:2007:i:3:p:262-268
    DOI: 10.1016/j.ecolmodel.2006.09.019
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    References listed on IDEAS

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    1. Feagin, R.A., 2003. "Relationship of second-order lacunarity, Hurst exponent, Brownian motion, and pattern organization," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 328(3), pages 315-321.
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    Cited by:

    1. Vernon-Carter, J. & Lobato-Calleros, C. & Escarela-Perez, R. & Rodriguez, E. & Alvarez-Ramirez, J., 2009. "A suggested generalization for the lacunarity index," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 388(20), pages 4305-4314.
    2. Kassel Hingee & Adrian Baddeley & Peter Caccetta & Gopalan Nair, 2019. "Computation of Lacunarity from Covariance of Spatial Binary Maps," Journal of Agricultural, Biological and Environmental Statistics, Springer;The International Biometric Society;American Statistical Association, vol. 24(2), pages 264-288, June.

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    1. Vernon-Carter, J. & Lobato-Calleros, C. & Escarela-Perez, R. & Rodriguez, E. & Alvarez-Ramirez, J., 2009. "A suggested generalization for the lacunarity index," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 388(20), pages 4305-4314.

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