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概率逻辑学基本定理的推广 被引量:41
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作者 王国俊 惠小静 《电子学报》 EI CAS CSCD 北大核心 2007年第7期1333-1340,共8页
通过引入生成状态集和生成概率等概念给出了概率逻辑学基本定理的简捷证明,并进一步通过引入自然合并概率的概念将概率逻辑学的基本定理推广到了更一般的形式,改进了对推理结论的不可靠度上界的估计.然后将概率逻辑学的基本方法引入计... 通过引入生成状态集和生成概率等概念给出了概率逻辑学基本定理的简捷证明,并进一步通过引入自然合并概率的概念将概率逻辑学的基本定理推广到了更一般的形式,改进了对推理结论的不可靠度上界的估计.然后将概率逻辑学的基本方法引入计量逻辑学,得出了带参数■的有限逻辑理论相容度概念,是δ-相容度的推广. 展开更多
关键词 不可靠度 生成状态集 生成概率 自然合并概率 计量逻辑学 p-相容度
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Hormones and phenotypic plasticity: Implications for the evolution of integrated adaptive phenotypes 被引量:1
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作者 Sean C. LEMA Jun KITANO 《Current Zoology》 SCIE CAS CSCD 2013年第4期506-525,共20页
It is generally accepted that taxa exhibit genetic variation in phenotypic plasticity, but many questions remain unan- swered about how divergent plastic responses evolve under dissimilar ecological conditions. Hormon... It is generally accepted that taxa exhibit genetic variation in phenotypic plasticity, but many questions remain unan- swered about how divergent plastic responses evolve under dissimilar ecological conditions. Hormones are signaling molecules that act as proximate mediators of phenotype expression by regulating a variety of cellular, physiological, and behavioral re- sponses. Hormones not only change cellular and physiological states but also influence gene expression directly or indirectly, thereby linking environmental conditions to phenotypic development. Studying how hormonal pathways respond to environ- mental variation and how those responses differ between individuals, populations, and species can expand our understanding of the evolution of phenotypic plasticity. Here, we explore the ways that the study of hormone signaling is providing new insights into the underlying proximate bases for individual, population or species variation in plasticity. Using several studies as exem- plars, we examine how a 'norm of reaction' approach can be used in investigations of hormone-mediated plasticity to inform the following: 1) how environmental cues affect the component hormones, receptors and enzymes that comprise any endocrine sig- naling pathway, 2) how genetic and epigenetic variation in endocrine-associated genes can generate variation in plasticity among these diverse components, and 3) how phenotypes mediated by the same hormone can be coupled and decoupled via independent plastic responses of signaling components across target tissues. Future studies that apply approaches such as reaction norms and network modeling to questions concerning how hormones link environmental stimuli to ecologically-relevant phenotypic re- sponses should help unravel how phenotypic plasticity evolves 展开更多
关键词 HORMONE ENDOCRINE Reaction norm Developmental plasticity PLEIOTROPY ECOLOGY Network
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