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Alternate mechanisms alter the emergent properties of self-organization in mussel beds
Phase separation explains a new class of self-organized spatial patterns in ecological systems
Biogenic gradients in algal density affects the emergent properties of spatially self-organized mussel beds
Pattern formation at multiple spatial scales drives the resilience of mussel bed ecosystems
Phase separation driven by density-dependent movement: a novel mechanism for ecological patterns
Bridging physics and biology
Quanxing LIU
Jianzhong Ge
Marine Microplastics Monitoring and Ecological Risk Assessment Technology Research
Use of the enhanced frog embryo teratogenesis assay-Xenops (FETAX) to determine chemically-induced phenotypic effects
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