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This video is one of the supplemental video for publication of papers addressing snake predation on cavity-nesting birds.
本视频为探讨蛇类捕食洞巢鸟类的学术论文发表配套补充视频之一。
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An integrated analysis of micro- and macro-habitat features as a tool to detect weather-driven constraints: A case study with cavity nesters
The effects of climate change on animal populations may be shaped by habitat characteristics at both micro- and macro-habitat level, however, empirical studies integrating these two scales of observat
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GLMs obtained to explain the probability of cavity occupancy by a given species and by all species together as a function of cavity traits (entrance size and height) and tree species.
The number of cavities occupied by each species is reported in Table 1, and the number of unoccupied (available) cavities was 561. % dev: percentage of deviance explained.
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Electronic datasets association with Snake Predators of Bird Eggs: A Review and Bibliography. Journal of Field Ornithology.
Electronic datasets S1 and S2 from Barends and Maritz 2022. Snake Predators of Bird Eggs: A Review and Bibliography. Journal of Field Ornithology. In Press.
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Tree cavity density is a limiting factor for a secondary cavity nester in second-growth Andean temperate rainforests
AbstractCavity-nesting bird populations are most frequently limited by the number of tree cavities available in second-growth forests. However, this possible limitation of a key resource is less clear
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Data from: Consequences of habitat change and resource selection specialization for population limitation in cavity-nesting birds
Resource selection specialization may increase vulnerability of populations to environmental change. One environmental change that may negatively impact some populations is the broad decline of quakin
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