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- W1990288416 abstract "Predictive models to assess the potential impacts of anthropogenic activities are increasing being used to assess environmental impacts. The most accurate models are, arguably, individual-based models that integrate species-specific biological and area-specific environmental data such as the acoustic impact model. These models simulate the movement of animals in four dimensions and typically include responses to both acoustic and/or non-acoustic environmental variables. The predicted exposures of individuals to sound sources may be assessed with a risk function; however, a recent meta-analysis of behavioral response and acoustic dose [Southall et al. (2007)] did not find meaningful linear relationships that were generally applicable between low to medium received sound levels and behavioral response. There appears to be significant variability in both species-specific and individual animal responses that are mediated by various contextual factors. Since regulatory requirements are often focused on population impact, the simplest approach to considering individual variability in behavioral response is that averaged over the population. Therefore, a mathematically linear dose-response function may be most applicable, at least within species for certain activity patterns, even if it is not supported for individual animals in all conditions." @default.
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- W1990288416 date "2010-03-01" @default.
- W1990288416 modified "2023-09-25" @default.
- W1990288416 title "Predicting acoustic impact: Considering individuals versus populations." @default.
- W1990288416 doi "https://doi.org/10.1121/1.3384071" @default.
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