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먹이망 위상 분석×SIAR 혼합 모델×
분야생태학생태학
계열Process / pipelineProcess / pipeline
기원 연도20002010
창시자Richard Williams and Neo MartinezAndrew Parnell
유형ecological network characterizationdiet and source apportionment analysis
원전Dunne, J. A., Williams, R. J., & Martinez, N. D. (2002). Network structure and robustness of marine food webs. The American Naturalist, 160(1), 117-129. link ↗Parnell, A. C., Inger, R., Bearhop, S., & Jackson, A. L. (2010). Source partitioning using stable isotopes: coping with too much variation. PLoS ONE, 5(3), e9672. DOI ↗
별칭food web structure, network topology, trophic network, food chain analysisisotope mixing model, Bayesian mixing model, source apportionment, diet analysis
관련44
요약Food web topology analysis characterizes the structure of predator-prey interactions within ecological communities using network metrics. Pioneered by Williams and Martinez (2000) and extended by Dunne and colleagues (2002), this approach maps which species eat which and quantifies network properties (connectivity, clustering, robustness). Understanding food web structure reveals how ecosystems are organized, how stable they are to species loss, and what roles different species play in ecosystem function.The Stable Isotope Analysis in R (SIAR) mixing model is a Bayesian framework for estimating the proportional contributions of dietary sources to a consumer, using stable isotope ratios. Developed by Parnell and colleagues (2010) and implemented in the R package siar (and its successor MixSIAR), this method integrates isotopic data from potential food sources and consumers to infer diets. It accounts for uncertainty in isotope fractionation (the shift in isotope ratios between diet and tissue) and natural variation among source populations, producing probability distributions rather than point estimates of diet composition.
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ScholarGate방법 비교: Food Web Topology · SIAR Mixing Model. 2026-06-20에 다음에서 검색함: https://scholargate.app/ko/compare