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Publication


Featured researches published by Isa Woo.


Scientific Reports | 2018

Accuracy and Precision of Tidal Wetland Soil Carbon Mapping in the Conterminous United States

James R. Holmquist; Lisamarie Windham-Myers; Norman Bliss; Stephen Crooks; James T. Morris; J. Patrick Megonigal; Tiffany G. Troxler; Donald E. Weller; John C. Callaway; Judith Z. Drexler; Matthew C. Ferner; Meagan Eagle Gonneea; Kevin D. Kroeger; Lisa Schile-Beers; Isa Woo; Kevin J. Buffington; Joshua L. Breithaupt; Brandon M. Boyd; Lauren Brown; Nicole Dix; Lyndie Hice; Benjamin P. Horton; Glen M. MacDonald; Ryan P. Moyer; William G. Reay; Timothy J. Shaw; Erik M. Smith; Joseph M. Smoak; Christopher K. Sommerfield; Karen M. Thorne

Tidal wetlands produce long-term soil organic carbon (C) stocks. Thus for carbon accounting purposes, we need accurate and precise information on the magnitude and spatial distribution of those stocks. We assembled and analyzed an unprecedented soil core dataset, and tested three strategies for mapping carbon stocks: applying the average value from the synthesis to mapped tidal wetlands, applying models fit using empirical data and applied using soil, vegetation and salinity maps, and relying on independently generated soil carbon maps. Soil carbon stocks were far lower on average and varied less spatially and with depth than stocks calculated from available soils maps. Further, variation in carbon density was not well-predicted based on climate, salinity, vegetation, or soil classes. Instead, the assembled dataset showed that carbon density across the conterminous united states (CONUS) was normally distributed, with a predictable range of observations. We identified the simplest strategy, applying mean carbon density (27.0u2009kg Cxa0m−3), as the best performing strategy, and conservatively estimated that the top meter of CONUS tidal wetland soil contains 0.72 petagrams C. This strategy could provide standardization in CONUS tidal carbon accounting until such a time as modeling and mapping advancements can quantitatively improve accuracy and precision.


Scientific Reports | 2018

Author Correction: Accuracy and Precision of Tidal Wetland Soil Carbon Mapping in the Conterminous United States

James R. Holmquist; Lisamarie Windham-Myers; Norman Bliss; Stephen Crooks; James T. Morris; J. Patrick Megonigal; Tiffany G. Troxler; Donald E. Weller; John C. Callaway; Judith Z. Drexler; Matthew C. Ferner; Meagan Eagle Gonneea; Kevin D. Kroeger; Lisa Schile-Beers; Isa Woo; Kevin J. Buffington; Joshua L. Breithaupt; Brandon M. Boyd; Lauren Brown; Nicole Dix; Lyndie Hice; Benjamin P. Horton; Glen M. MacDonald; Ryan P. Moyer; William G. Reay; Timothy J. Shaw; Erik M. Smith; Joseph M. Smoak; Christopher K. Sommerfield; Karen M. Thorne

A correction to this article has been published and is linked from the HTML and PDF versions of this paper. The error has not been fixed in the paper.


Archive | 2012

Bird Communities: Effects of Fragmentation, Disturbance, and Sea Level Rise on Population Viability

John Y. Takekawa; Isa Woo; Karen M. Thorne; Kevin J. Buffington; Nadav Nur; Michael L. Casazza; Joshua T. Ackerman


Fact Sheet | 2016

Assessing wildlife benefits and carbon storage from restored and natural coastal marshes in the Nisqually River Delta: Determining marsh net ecosystem carbon balance

Frank Anderson; Brian A. Bergamaschi; Lisamarie Windham-Myers; Isa Woo; Susan De La Cruz; Judith Z. Drexler; Kristin B. Byrd; Karen M. Thorne


Archive | 2018

Accuracy and Precision of Tidal Wetland Soil Carbon Mapping in the Conterminous United States: Public Soil Carbon Data Release

James R. Holmquist; Lisamarie Windham-Myers; Norman Bliss; Stephen Crooks; James T. Morris; J. Patrick Megonigal; Tiffany G. Troxler; Donald E. Weller; John C. Callaway; Judith Z. Drexler; Matthew C. Ferner; Meagan Eagle Gonneea; Kevin D. Kroeger; Lisa Schile-Beers; Isa Woo; Kevin J. Buffington; Brandon M. Boyd; Joshua L. Breithaupt; Lauren Brown; Nicole Dix; Lyndie Hice; Benjamin P. Horton; Glen M. MacDonald; Ryan P. Moyer; William G. Reay; Timothy J. Shaw; Erik M. Smith; Joseph M. Smoak; Christopher K. Sommerfield; Karen M. Thorne


Archive | 2017

River Delta Eelgrass Supports Extended Estuary Residence and Foraging by Outmigrating Chinook Salmon

Stephen P. Rubin; Michael C. Hayes; Christopher S. Ellings; Eric E. Grossman; Walker Duval; Isa Woo; Melanie Davis; Susan De La Cruz; Sierra Blakely; Karl D. Stenberg


Archive | 2017

Elucidating patterns of channel erosion, sediment deposition, and vegetative regrowth on the restored Nisqually River Delta

Melanie Davis; Isa Woo; Christopher S. Ellings; Glynnis Nakai


Archive | 2017

Assessing the Impact of Periodic Dredging on Macroinvertebrate-Prey Availability for Benthic Foraging Fishes: Final Study Plan and Preliminary Pilot Study Results

Susan De La Cruz; Isa Woo; Alison Flanagan; Hannah Mittelstaedt


Archive | 2017

Assessing the restoring landscape within the Nisqually River Delta for invertebrate prey production

Isa Woo; Susan De La Cruz; Melanie Davis; Christopher S. Ellings; Glynnis Nakai


Archive | 2017

A framework for assessing restoration performance: a case study from the Nisqually River Delta

Isa Woo; Susan De La Cruz; Melanie Davis; Christopher S. Ellings; Sayre Hodgson; Walker Duval; Sierra Blakely; Glynnis Nakai; Eric E. Grossman; Renee K. Takesue; Stephen P. Rubin; Kim Larsen; Angie Null

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Karen M. Thorne

United States Geological Survey

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Eric E. Grossman

United States Geological Survey

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Judith Z. Drexler

United States Geological Survey

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Kevin J. Buffington

United States Geological Survey

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Lisamarie Windham-Myers

United States Geological Survey

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Melanie Davis

United States Geological Survey

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Donald E. Weller

Smithsonian Environmental Research Center

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Erik M. Smith

University of South Carolina

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