Code and Data to Fit an Integrated Population Model for the Foothill Yellow-legged Frog, Rana boylii, in Northern California
March 30, 2021
These data include egg mass counts and adult capture-mark-recapture histories for Foothill Yellow-legged frogs (Rana boylii) at two streams in northern California. Data were collected from the South Fork Eel River and its tributary, Fox Creek, from 1993-2019. Data from Hurdygurdy Creek were collected from 2002-2008.
This code and data support the following publication:
Rose, JP, Kupferberg, SJ, Wheeler, CA, Kleeman, PM, and Halstead, BJ. 2021. Estimating the survival of unobservable life stages for a declining frog with a complex life history. Ecosphere. 12(2):e03381.
Citation Information
Publication Year | 2021 |
---|---|
Title | Code and Data to Fit an Integrated Population Model for the Foothill Yellow-legged Frog, Rana boylii, in Northern California |
DOI | 10.5066/P9N019EK |
Authors | Jonathan P Rose, Sarah J Kupferberg, Clara A. Wheeler, Patrick M Kleeman, Brian J Halstead |
Product Type | Data Release |
Record Source | USGS Asset Identifier Service (AIS) |
USGS Organization | Western Ecological Research Center - Headquarters |
Rights | This work is marked with CC0 1.0 Universal |
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Estimating the survival of unobservable life stages for a declining frog with a complex life-history Estimating the survival of unobservable life stages for a declining frog with a complex life-history
Demographic models enhance understanding of drivers of population growth and inform conservation efforts to prevent population declines and extinction. For species with complex life histories, however, parameterizing demographic models is challenging because some life stages can be difficult to study directly. Integrated population models (IPMs) empower researchers to estimate vital...
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Related
Estimating the survival of unobservable life stages for a declining frog with a complex life-history Estimating the survival of unobservable life stages for a declining frog with a complex life-history
Demographic models enhance understanding of drivers of population growth and inform conservation efforts to prevent population declines and extinction. For species with complex life histories, however, parameterizing demographic models is challenging because some life stages can be difficult to study directly. Integrated population models (IPMs) empower researchers to estimate vital...
Authors
Jonathan P. Rose, Sarah Kupferberg, Clara A Wheeler, Patrick M. Kleeman, Brian J. Halstead
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Email
Phone
Brian Halstead
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Email
Phone
Patrick M Kleeman
Supervisory Ecologist
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Email
Phone
Brian Halstead
Research Wildlife Biologist
Research Wildlife Biologist
Email
Phone