Rectangular and hexagonal grids used for observation, experiment and simulation in ecology

被引:411
作者
Birch, Colin P. D. [1 ]
Oom, Sander P.
Beecham, Jonathan A.
机构
[1] Vet Labs Agcy, Weybridge KT15 3NB, Surrey, England
[2] DHV BV, NL-3800 BC Amersfoort, Netherlands
[3] Ctr Environm Fisheries & Aquaculture Sci, Lowestoft NR33 0HT, Suffolk, England
关键词
calluna uulgaris; connectivity; diagonal and orthogonal; interactions; dynamic spatial modelling; experimental design; grid map visualization; hierarchical patch dynamics; Moore and von Neumann nearest; neighbourhoods; square lattice;
D O I
10.1016/j.ecolmodel.2007.03.041
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Regular grids or lattices are frequently used to study ecosystems, for observations, experiments and simulations. The regular rectangular or square grid is used more often than the hexagonal grid, but their relative merits have been little discussed. Here we compare rectangular and hexagonal grids for ecological applications. We focus on the reasons some researchers have preferred hexagonal grids and methods to facilitate the use of hexagonal grids. We consider modelling and other applications, including the role of nearest neighbourhood in experimental design, the representation of connectivity in maps, and a new method for performing field surveys using hexagonal grids, which was demonstrated on montane heath vegetation. The rectangular grid is generally preferred because of its symmetrical, orthogonal coordinate system and the frequent use of rasters from Geographic information Systems. Cells in a rectangular grid can also easily be combined to produce new grids with lower resolutions. However, efficient co-ordinate systems and multi-resolution partitions using the hexagonal grid are available. The nearest neighbourhood in a hexagonal grid is simpler and less ambiguous than in a rectangular grid. When nearest neighbourhood, movement paths or connectivity are important, the rectangular grid may not be suitable. We also investigate important differences between visualizations using hexagonal and rectangular grids. A survey of recent uses of grids in Ecological Modelling suggested that hexagonal grids are rarely used, even in applications for which they are more suitable than rectangular grids, e.g. connectivity and movement paths. Researchers should consider their choice of grid at an early stage in project development, and authors should explain the reasons for their choices. (c) 2007 Elsevier B.V. All rights reserved.
引用
收藏
页码:347 / 359
页数:13
相关论文
共 108 条
[1]   Modelling fish spatial dynamics and local density-dependence relationships: detection of patterns at a global scale [J].
Anneville, O ;
Cury, P ;
Le Page, C ;
Treuil, JP .
AQUATIC LIVING RESOURCES, 1998, 11 (05) :305-314
[2]  
[Anonymous], COMPREHENSIVE GUIDE
[3]  
[Anonymous], MATH GEOLOGY
[4]   ANALYSIS OF FREQUENCY AND DENSITY EFFECTS ON GROWTH IN MIXTURES OF SALVIA-SPLENDENS AND LINUM-GRANDIFLORUM USING HEXAGONAL FAN DESIGNS [J].
ANTONOVICS, J ;
FOWLER, NL .
JOURNAL OF ECOLOGY, 1985, 73 (01) :219-234
[5]   The temporal transferability of calibrated parameters of a hydrological model [J].
Apaydin, H ;
Anli, AS ;
Ozturk, A .
ECOLOGICAL MODELLING, 2006, 195 (3-4) :307-317
[6]   Examining the colonization process of exotic species varying in competitive abilities using a cellular automaton model [J].
Arii, Ken ;
Parrott, Lael .
ECOLOGICAL MODELLING, 2006, 199 (03) :219-228
[7]   A method for improving landscape scale temperature predictions and the implications for vegetation modelling [J].
Ashcroft, M. B. .
ECOLOGICAL MODELLING, 2006, 197 (3-4) :394-404
[8]   Effects of fire size and frequency and habitat heterogeneity on forest age distribution [J].
Barclay, Hugh J. ;
Li, Chao ;
Hawkes, Brad ;
Benson, Laura .
ECOLOGICAL MODELLING, 2006, 197 (1-2) :207-220
[9]   Defoliation and site differences influence vegetative spread in grassland [J].
Barthram, GT ;
Elston, DA ;
Birch, CPD ;
Bolton, GR .
NEW PHYTOLOGIST, 2002, 155 (02) :257-264
[10]   Animal foraging from an individual perspective: an object orientated model [J].
Beecham, JA ;
Farnsworth, KD .
ECOLOGICAL MODELLING, 1998, 113 (1-3) :141-156