Appreciating Ecological Complexity: Habitat Contours as a Conceptual Landscape Model
- 28 September 2004
- journal article
- research article
- Published by Wiley in Conservation Biology
- Vol. 18 (5) , 1245-1253
- https://doi.org/10.1111/j.1523-1739.2004.00263.x
Abstract
Abstract: Organisms respond to their surroundings at multiple spatial scales, and different organisms respond differently to the same environment. Existing landscape models, such as the “fragmentation model” (or patch‐matrix‐corridor model) and the “variegation model,” can be limited in their ability to explain complex patterns for different species and across multiple scales. An alternative approach is to conceptualize landscapes as overlaid species‐specific habitat contour maps. Key characteristics of this approach are that different species may respond differently to the same environmental conditions and at different spatial scales. Although similar approaches are being used in ecological modeling, there is much room for habitat contours as a useful conceptual tool. By providing an alternative view of landscapes, a contour model may stimulate more field investigations stratified on the basis of ecological variables other than human‐defined patches and patch boundaries. A conceptual model of habitat contours may also help to communicate ecological complexity to land managers. Finally, by incorporating additional ecological complexity, a conceptual model based on habitat contours may help to bridge the perceived gap between pattern and process in landscape ecology. Habitat contours do not preclude the use of existing landscape models and should be seen as a complementary approach most suited to heterogeneous human‐modified landscapes.Keywords
This publication has 68 references indexed in Scilit:
- Countryside Biogeography of Tropical ButterfliesConservation Biology, 2003
- Stone‐Age Minds at Work on 21st Century ScienceConservation in Practice, 2001
- Effects of edges on plant communities in a managed landscape in northern WisconsinForest Ecology and Management, 2001
- Burrow choice by individuals of different sizes in the endangered pygmy blue tongue lizard Tiliqua adelaidensisBiological Conservation, 2000
- Using past and present habitat to predict the current distribution and abundance of a rare cryptic lizard, Delma impar (Pygopodidae)Australian Journal of Ecology, 1999
- Future landscapes and the future of landscape ecologyLandscape and Urban Planning, 1997
- Application of Fragmentation and Variegation Models to Epigaeic Invertebrates in South AfricaConservation Biology, 1996
- Ranking Conservation and Timber Management Options for Leadbeater’s Possum in Southeastern Australia Using Population Viability AnalysisConservation Biology, 1996
- Persistence of two species of gecko (Oedura reticulata and Gehyra variegata) in remnant habitatBiological Conservation, 1995
- A method for predicting the spatial distribution of arboreal marsupialsWildlife Research, 1995