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이질적 경관에서의 연결성 측정 : 리뷰 및 적용 / 송원경 ; 김은영 ; 이동근 1
Abstract 1
I. 서론 2
II. 연결성 측정 방법론 3
1. 구조적 연결성: 경관상태학과 그래프 이론의 결합 3
2. 기능적 연결성: 개체의 확산 및 이동 특성을 고려한 연결성 측정 5
3. 경관 연결성 측정의 한계 및 발전 6
III. 국내 적용가능성 및 고찰 7
1. 대상지 여건 7
2. 분석 재료 및 방법 7
3. 분석결과 해석 9
4. 보전생물학과 토지이용계획을 잇는 연결성 연구 11
IV. 결론 12
사사 13
참고문헌 13
The loss of connectivity and fragmentation of forest landscapes are seriously hindering
dispersal of many forest-dwelling species, which may be critical for their viability and
conservation by decreasing habitat area and increasing distance among habitats. For
understanding their environmental impacts, numerous spatial models exist to measure
landscape connectivity. However, general relationships between functional connectivity and
landscape structure are lacking, there is a need to develop landscape metrics that more
accurately measure landscape connectivity in whole landscape and individual patches. We
reviewed functional and structural definition of landscape connectivity, explained their
mathematical connotations, and applied representative 13 indices in 3 districts of Seoul having
fragmented forest patches with tits, the threshold distance was applied 500m by considering the
dispersal of tits. Results of correlation and principal component analysis showed that
connectivity indices could be divided by measurement methods whether they contain the area
attribute with distance or not. Betweenness centrality(BC), a representative index measuring
distance and distribution among patches, appreciated highly stepping stone forest patches, and
difference of probability of connectivity(dPC), an index measuring including area information,
estimated integrated connectivity of patches. Therefore, for evaluating landscape connectivity, it
is need to consider not only general information of a region and species’ characteristics but also
various measuring methods of landscape connectivity| 기사명 | 저자명 | 페이지 | 원문 | 목차 |
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| 유역모형을 이용한 비점배출계수 적용성 평가 | 이은정, 김태근 | pp.339-352 |
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| 음식물류폐기물 처리시설에서의 악취발생 특성 및 관리방안 | 유승성, 김영두, 이준연, 차영섭, 김은숙, 전재식, 선우영, 엄석원, 채영주 | pp.353-365 |
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| 대청호의 조류발생 분석 | 조완희, 염경택, 김진수, 반양진, 정세웅 | pp.367-380 |
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| AHP를 이용한 전력설비 입지선정 항목 중요도 분석 | 구자건, 김상호, 윤고산, 강현재, 정종철 | pp.381-389 |
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| 이질적 경관에서의 연결성 측정 : 리뷰 및 적용 | 송원경, 김은영, 이동근 | pp.391-407 |
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| LEAP 모델을 이용한 대학의 온실가스 배출량 및 감축잠재량 분석 | 우정호, 최경식 | pp.409-415 |
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| CALMET 및 ENVI-MET를 이용한 산업단지 입지에 따른 국지 바람장 분석 | 송동웅 | pp.417-429 |
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| 풍혈의 공간적 분포 특징과 관리 방안 | 공우석, 윤광희, 김인태, 이유미, 오승환 | pp.431-443 |
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| 황해 및 동중국해의 수질예측과 응답성 평가 | 이대인 | pp.445-460 |
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| 연안해역의 환경변화에 따른 저차 생태계 Pulsing Simulation 예비 진단 | 이대인 | pp.461-468 |
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| 이산화탄소 포집 및 저장에 대한 대중의 인식과 수용도 | 이상일, 성주식, 황진환 | pp.469-481 |
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| 호수생태계 환경영향평가를 위한 LEHA 다변수 모델 적용 및 생태건강성 평가 | 한정호, 안광국 | pp.483-501 |
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| Localizing agenda 21 program in Vietnam and its implementations in local government | Sang-Don Lee | pp.503-508 |
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| 번호 | 참고문헌 | 국회도서관 소장유무 |
|---|---|---|
| 1 | Articles : The Basic Theories for Restoration of Fragmented Habitats ![]() |
미소장 |
| 2 | 서울특별시, 2010, 2010 도시생태현황도 정비제작-2차년도-, 서울특별시. | 미소장 |
| 3 | 송원경, 2011, 공간그래프 이론을 적용한 삵 서식지네트워크 모형 개발, 서울대학교 박사학위논문. | 미소장 |
| 4 | Environment Friendly Urban Open Space Planning - Enhancing the Connectivity of Habitats in Seoul, Korea - | 소장 |
| 5 | A Study on the Analytic Unit of Habitat Suitability Assessment and Selection in Conservation Areas for Leopard Cat(Prionailurus bengalensis) - Focus on Chungcheong Province Area - | 소장 |
| 6 | Analysis of Scale Sensitivity of Landscape Indices for the Assessment of urban Green Areas | 소장 |
| 7 | Breeding ecology of tits parus spp. using artificial nest boxes in a deciduous forest | 소장 |
| 8 | Articles : A Study on the Analysis of Connectivity for Green Space Planning in Daejeon Metropolitan City ![]() |
미소장 |
| 9 | The application of ‘least-cost’ modelling as a functional landscape model ![]() |
미소장 |
| 10 | Biodiversity in urban habitat patches ![]() |
미소장 |
| 11 | Landscape connectivity and animal behavior: functional grain as a key determinant for dispersal ![]() |
미소장 |
| 12 | Baranyi, G., Saura, S., Podani, J. and Jordan, F., 2011, Contribution of habitat patches to network connectivity: Redundancy and uniqueness of topological indices, Ecological Indicators, 11, 1301-1310. | 미소장 |
| 13 | Bélisle, M., 2005, Measuring Landscape Connectivity: The Challenge of Behavioral Landscape Ecology, Ecology, 86, 1988- 1995. | 미소장 |
| 14 | Benton, T.G., Vickery, J.A. and Wilson, J.D.,2003, Farmland biodiversity: is habitatheterogeneity the key? Trends EcolEvol, 18, 182-188. | 미소장 |
| 15 | Genetic isolation by distance and landscape connectivity in the American marten (Martes americana) ![]() |
미소장 |
| 16 | Bunn, A.G., Urban, D.L. and Keitt, T.H., 2000, Landscape connectivity: A conservation application of graph theory, J Environ Manage, 59, 265-278. | 미소장 |
| 17 | An Experimental Test of Matrix Permeability and Corridor Use by an Endemic Understory Bird ![]() |
미소장 |
| 18 | A Conceptual Model of Land Conversion Processes: Predictions and Evidence from a Microlandscape Experiment with Grassland Insects ![]() |
미소장 |
| 19 | Landscape connectivity influences gene flow in a roe deer population inhabiting a fragmented landscape: an individual–based approach ![]() |
미소장 |
| 20 | Integrating GIS and homing experiments to study avian movement costs ![]() |
미소장 |
| 21 | Natal Dispersal and Personalities in Great Tits (Parus major) ![]() |
미소장 |
| 22 | Driezen, K., Adriaensen, F., Rondinini, C., Doncaster, C.P. and Matthysen, E., 2007, Evaluating least-cost model predictions with empirical dispersal data: A casestudy using radiotracking data of hedgehogs (Erinaceus europaeus), Ecological Modelling, 209, 314-322. | 미소장 |
| 23 | Optimizing dispersal and corridor models using landscape genetics ![]() |
미소장 |
| 24 | Spatial Graphs: Principles and Applications for Habitat Connectivity ![]() |
미소장 |
| 25 | State-Space Models Link Elk Movement Patterns to Landscape Characteristics in Yellowstone National Park ![]() |
미소장 |
| 26 | Hedgerows and hedgerow networks in landscape ecology ![]() |
미소장 |
| 27 | Centrality in social networks conceptual clarification ![]() |
미소장 |
| 28 | Permeability of three boreal forest landscape types to bird movements as determined from experimental translocations ![]() |
미소장 |
| 29 | Is landscape connectivity a dependent or independent variable? ![]() |
미소장 |
| 30 | Gurrutxaga, M., Rubio, L. and Saura, S., 2011,Key connectors in protected forest area networks and the impact of highways: A transnational case study from the Cantabrian Range to the Western Alps (SW Europe), Landscape and Urban Planning, 101, 310-320. | 미소장 |
| 31 | The Effect of Landscape Heterogeneity on the Probability of Patch Colonization ![]() |
미소장 |
| 32 | Metapopulation dynamics ![]() |
미소장 |
| 33 | Habitat Connectivity, Habitat Continuity, and Metapopulations in Dynamic Landscapes ![]() |
미소장 |
| 34 | Spatially realistic theory of metapopulation ecology ![]() |
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| 35 | James, P.M.A., Rayfield, B., Fortin, M.-J., Fall, A. and Farley, G., 2005, Reserve network design combining spatial graph theory and species’ spatial requirements, Geomatica, 59, 121-129. | 미소장 |
| 36 | Connectivity measures: a review ![]() |
미소장 |
| 37 | Krebs, J.R., N.B. Davies, 1981, An Introduction th Behavioural Ecology, Blackwell Science Inc, USA. | 미소장 |
| 38 | The permeability of highway in Gorski kotar (Croatia) for large mammals ![]() |
미소장 |
| 39 | Modelling potential dispersal corridors for cougars in midwestern North America using least-cost path methods ![]() |
미소장 |
| 40 | Levins, R., 1969, Some demographic and genetic consequences of environmental heterogeneity for biological control, Bull. Entom. Soc. Amer., 15, 237-240. | 미소장 |
| 41 | Combining a dispersal model with network theory to assess habitat connectivity ![]() |
미소장 |
| 42 | Do Sibling Tits (Parus major, P. caeruleus) Disperse over Similar Distances and in Similar Directions? ![]() |
미소장 |
| 43 | Merriam, G., 1984, Connectivity: a fundamental ecological characteristic of landscape pattern. - In: Brandt, J. and Agger P. (des), Proceedings of the 1st international seminar on methodology in landscape ecological research and planning, Roskilde Univ., Denmark, pp. 5-15. | 미소장 |
| 44 | A Multiscale Network Analysis of Protected‐Area Connectivity for Mammals in the United States ![]() |
미소장 |
| 45 | Graph Theory as a Proxy for Spatially Explicit Population Models in Conservation Planning ![]() |
미소장 |
| 46 | Moilanen, A. and Hanski, I., 1998, Metapopulation dynamics: Effects of habitat quality and landscape structure, Ecology, 79, 2503- 2515. | 미소장 |
| 47 | Indices of landscape pattern ![]() |
미소장 |
| 48 | O’Brien, D., Manseau, M., Fall, A. and Fortin, M.-J., 2006, Testing the importance of spatial configuration of winter habitat for woodland caribou: An application of graph theory, Biological Conservation, 130, 70-83. | 미소장 |
| 49 | Integrating landscape connectivity in broad-scale forest planning through a new graph-based habitat availability methodology: application to capercaillie (Tetrao urogallus) in Catalonia (NE Spain) ![]() |
미소장 |
| 50 | An Experimental Assessment of Landscape Connectivity ![]() |
미소장 |
| 51 | Maintaining or restoring connectivity of modified landscapes: evaluating the least-cost path model with multiple sources of ecological information ![]() |
미소장 |
| 52 | Modeling spatial distribution of amphibian populations: a GIS approach based on habitat matrix permeability ![]() |
미소장 |
| 53 | The sensitivity of least-cost habitat graphs to relative cost surface values ![]() |
미소장 |
| 54 | Quantitative comparison of the diversity of landscapes with actual vs. potential natural vegetation ![]() |
미소장 |
| 55 | The Matrix Matters: Effective Isolation in Fragmented Landscapes ![]() |
미소장 |
| 56 | Assessing the potential impacts of alternative landscape designs on amphibian population dynamics ![]() |
미소장 |
| 57 | Saura, S. and Pascual-Hortal, L., 2007, A new habitat availability index to integrate connectivity in landscape conservation planning: Comparison with existing indices and application to a case study, Landscape and Urban Planning, 83, 91- 103. | 미소장 |
| 58 | Saura, S., Vogt, P., Velazquez, J., Hernando, A. and Tejera, R., 2011, Key structural forest connectors can be identified by combining landscape spatial pattern and network analyses, Forest Ecology and Management, 262, 150-160. | 미소장 |
| 59 | Understanding movement data and movement processes: current and emerging directions ![]() |
미소장 |
| 60 | Singleton, P.H., 2001, Using weighted distance and least-cost corridor analysis to evaluate regional-scale large carnivore habitat connectivity in Washington, ICOET, pp. 583-594. | 미소장 |
| 61 | Singleton, P.H., Gaines, W.L. and Lehmkuhl, J.F., 2002, Landscape Permeability forLarge Carnivores in Washington: A Geographic Information System Weighted- Distance and Least-Cost Corridor Assessment, U.S. Department of Agriculture, Pacific Northewest Research Station, Portland. | 미소장 |
| 62 | Dispersal as a Means of Inbreeding Avoidance in a Wild Bird Population ![]() |
미소장 |
| 63 | Connectivity Is a Vital Element of Landscape Structure ![]() |
미소장 |
| 64 | Can landscape indices predict ecological processes consistently? ![]() |
미소장 |
| 65 | Tischendorf, L. and Fahrig, L., 2000a, How should we measure landscape connectivity? Landscape Ecology, 15, 633-641. | 미소장 |
| 66 | On the usage and measurement of landscape connectivity ![]() |
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| 67 | Landscape Ecology: The Effect of Pattern on Process ![]() |
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| 68 | Landscape Connectivity: A Graph-Theoretic Perspective ![]() |
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| 69 | Verbeylen, G., Bruyn, L.D., Adriaensen, F. and Matthysen, E., 2003, Does matrix resistance influence Red squirrel (Sciurus vulgaris L. 1758) distribution in an urban landscape? Landscape Ecology, 18, 791-805. | 미소장 |
| 70 | Metapopulation Dynamics in Changing Landscapes: A New Spatially Realistic Model for Forest Plants ![]() |
미소장 |
| 71 | Natal Dispersal of Great Tits in a Patchy Environment ![]() |
미소장 |
| 72 | Whitcomb, R.F., Robbins, C.S., Lynch, J.F., Whitcomb, B.L., Klimkiewicz, M.K. and Bystrak, D., 1981, Effects of forest fragmentation on avifauna of the Eastern Deciduous Forest, Springer- Verlag, New York, USA. | 미소장 |
| 73 | Testing Simple Indices of Habitat Proximity ![]() |
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| 74 | Landscape Connectivity and Population Distributions in Heterogeneous Environments ![]() |
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| 75 | Zetterberg, A., Mortberg, U.M. and Balfors, B.,2010, Making graph theory operationalfor landscape ecological assessments,planning, and design, Landscape andUrban Planning, 95, 181-191. | 미소장 |
| 76 | Recent fire history and connectivity patterns determine bird species distribution dynamics in landscapes dominated by land abandonment ![]() |
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