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सर्किटस्केप विश्लेषण×जनसंख्या व्यवहार्यता विश्लेषण (Population Viability Analysis)×
क्षेत्रपारिस्थितिकीपारिस्थितिकी
परिवारProcess / pipelineProcess / pipeline
उद्भव वर्ष20081981
प्रवर्तकBrad McRaeMark Shaffer
प्रकारmovement and connectivity modelingextinction risk assessment
मौलिक स्रोतBradford, D. F., McCreary, D. D., & Groves, C. R. (2014). Optimizing sampling for large-area habitat assessment. Ecological Monographs, 84(3), 351-375. link ↗Shaffer, M. L. (1981). Minimum population sizes for species conservation. BioScience, 31(2), 131-134. DOI ↗
उपनामcircuit theory, resistance distance, connectivity analysis, landscape conductancePVA, extinction risk, minimum viable population, MVP
संबंधित44
सारांशCircuitscape, developed by Brad McRae (2008), applies circuit theory from electrical engineering to predict organism movement and genetic connectivity across landscapes. The method treats landscapes as electrical networks where habitat quality is resistance and organism movement is electrical current. By analogy, organisms diffusing through a landscape follow paths determined by landscape resistance: corridors of low resistance (good habitat) are preferentially used. Circuitscape predicts movement probabilities, identifies critical corridors, and quantifies connectivity between habitat patches.Population Viability Analysis (PVA), introduced by Shaffer (1981), estimates the probability that a population will persist over a given time period under specified conditions. PVA combines demographic models (Leslie matrices, IPMs) with stochastic simulation to project population trajectories, quantifying extinction risk. This allows conservation planners to assess whether a population will likely persist, evaluate management scenarios, and estimate the minimum viable population (MVP) size for long-term persistence. PVA is a decision-support tool, not a precise predictor.
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  3. PUBLISHED

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ScholarGateविधियों की तुलना करें: Circuitscape · Population Viability Analysis. 2026-06-18 को यहाँ से प्राप्त https://scholargate.app/hi/compare