
2026
Donaldson, A.; Callahan, R. P.; Hahm, W. J.; Dralle, D. N.; Noren, A.; Breunig, R. E.; Rasmussen, B. M. Hudsen; Krone, L. V.; Brantley, S. L.; West, A. J.; Ma, L.; Riebe, C. S.; Zimmer, M.; Dere, A.; Rempe, D.
Drilling Within the Critical Zone Journal Article
In: Hydrological Processes, vol. 40, pp. e70463, 2026.
@article{nokey,
title = {Drilling Within the Critical Zone},
author = {A. Donaldson and R. P. Callahan and W. J. Hahm and D. N. Dralle and A. Noren and R. E. Breunig and B. M. Hudsen Rasmussen and L. V. Krone and S. L. Brantley and A. J. West and L. Ma and C. S. Riebe and M. Zimmer and A. Dere and D. Rempe},
doi = {https://doi.org/10.1002/hyp.70463},
year = {2026},
date = {2026-02-17},
urldate = {2026-02-17},
journal = {Hydrological Processes},
volume = {40},
pages = {e70463},
keywords = {ERCZO},
pubstate = {published},
tppubtype = {article}
}
2025
Toskey, Elsa K.; Matsuoka, Toshio; Kiffney, Peter M.; Naman, Sean M.; Liermann, Martin C.; Bailey, Javan; Beauchamp, David A.; Bellmore, J. Ryan; Binckley, Christopher A.; Blumenshine, Steve; Caldwell, Timothy J.; Carey, Michael P.; Claeson, Shannon; Clawson, Chelsea; Cox, Rosa; Cromwell, Kara J.; Danehy, Robert J.; Dodrill, Michael J.; Duda, Jeffrey J.; Fellman, Jason B.; Grimm, Adrianne Z.; Hallbert, Tyson B.; Jordan, Chris E.; Keeley, Ernest R.; Kennedy, Brian P.; Kennedy, Theodore A.; Kohler, Andre E.; Lowery, Erin D.; MacNeale, Kate; Martens, Kyle D.; Morley, Sarah A.; O'Dowd, Alison; Pneh, Shelley; Power, Mary; Rhoades, Suzanne J.; Rosenfeld, Jordan; Rossi, Gabriel; Sanderson, Beth L.; Shelby, Katy K.; Starky-Owens, Thomas; Thompson, Jamie N.; Volk, Carol; Williamshen, Jasmine S.; Wisseman, Robert W.
DRIFTeRS: A dataset of drift invertebrate densities in streams and rivers across northwestern North Americ Online
2025, visited: 08.11.2025.
BibTeX | Tags:
@online{nokey,
title = { DRIFTeRS: A dataset of drift invertebrate densities in streams and rivers across northwestern North Americ},
author = {Elsa K. Toskey and Toshio Matsuoka and Peter M. Kiffney and Sean M. Naman and Martin C. Liermann and Javan Bailey and David A. Beauchamp and J. Ryan Bellmore and Christopher A. Binckley and Steve Blumenshine and Timothy J. Caldwell and Michael P. Carey and Shannon Claeson and Chelsea Clawson and Rosa Cox and Kara J. Cromwell and Robert J. Danehy and Michael J. Dodrill and Jeffrey J. Duda and Jason B. Fellman and Adrianne Z. Grimm and Tyson B. Hallbert and Chris E. Jordan and Ernest R. Keeley and Brian P. Kennedy and Theodore A. Kennedy and Andre E. Kohler and Erin D. Lowery and Kate MacNeale and Kyle D. Martens and Sarah A. Morley and Alison O'Dowd and Shelley Pneh and Mary Power and Suzanne J. Rhoades and Jordan Rosenfeld and Gabriel Rossi and Beth L. Sanderson and Katy K. Shelby and Thomas Starky-Owens and Jamie N. Thompson and Carol Volk and Jasmine S. Williamshen and Robert W. Wisseman},
year = {2025},
date = {2025-11-08},
urldate = {2025-11-08},
keywords = {},
pubstate = {published},
tppubtype = {online}
}
Fitzpatrick, Raina M.; Hungate, Bruce A.; Power, Mary; Foley, Megan; Samo, Ty; Schwartz, Egbert; Hayer, Micheala; Weber, Peter K.; Pett-Ridge, Jennifer; Marks, Jane C.
In: Environmental Microbiology, vol. 27, no. e70196, 2025.
@article{nokey,
title = {Composition, Growth, Succession, and Function in the Cladophora Microbiome: Insights From Quantitative Stable Isotope Probing and NanoSIMS Imaging Composition, growth, succession, and function in the Cladophora microbiome: insights from quantitative Stable Isotope Probing and NanoSIMS imaging},
author = {Raina M. Fitzpatrick and Bruce A. Hungate and Mary Power and Megan Foley and Ty Samo and Egbert Schwartz and Micheala Hayer and Peter K. Weber and Jennifer Pett-Ridge and Jane C. Marks},
doi = {https://doi.org/10.1111/1462-2920.70196},
year = {2025},
date = {2025-10-22},
urldate = {2025-10-22},
journal = {Environmental Microbiology},
volume = {27},
number = {e70196},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Lapides, D. A.; Dralle, D. N.; Hahm, W. J.; Dietrich, W. E.; Rempe, D. M.
Root water uptake resolved by distributed moisture storage changes through soil and weathered bedrock. Journal Article
In: Water Resources Research, vol. 61, iss. 10, 2025.
@article{nokey,
title = {Root water uptake resolved by distributed moisture storage changes through soil and weathered bedrock.},
author = {D. A. Lapides and D. N. Dralle and W. J. Hahm and W. E. Dietrich and D. M. Rempe},
doi = {https:// doi.org/10.1029/2025WR040778},
year = {2025},
date = {2025-10-15},
urldate = {2025-10-15},
journal = {Water Resources Research},
volume = {61},
issue = {10},
keywords = {ERCZO},
pubstate = {published},
tppubtype = {article}
}
Benitez-Nelson, N. K.; Dralle, D. N.; Hahm, W. J.; Rempe, D. M.
The Role of Vadose Zone Storage Deficits in Modulating Groundwater Recharge and Streamflow in Seasonally Dry Watersheds Journal Article
In: Water Resources Research, vol. 61, iss. 10, pp. p.e2024WR038788, 2025.
@article{nokey,
title = {The Role of Vadose Zone Storage Deficits in Modulating Groundwater Recharge and Streamflow in Seasonally Dry Watersheds},
author = {N. K. Benitez-Nelson and D. N. Dralle and W. J. Hahm and D. M. Rempe},
doi = {https://doi.org/10.1029/ 2024WR038788},
year = {2025},
date = {2025-09-11},
journal = {Water Resources Research},
volume = {61},
issue = {10},
pages = {p.e2024WR038788},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Marks, J. C.; Zampini, M. C.; Fitzpatrick, R.; Kariunga, S.; Sitati, A.; Samo, T. J.; Weber, P. K.; Thomas, S.; Hungate, B. A.; Ramon, C. E.; Wulf, M.; Leshyk, V. O.; Schwartz, E.; P-R, J.; Power., M. E.
Ecosystem Consequences of a Nitrogen-Fixing Proto-Organelle Journal Article
In: Proceedings of the National Academy of Sciences, vol. 122, iss. 37, pp. e2503108122, 2025.
@article{nokey,
title = { Ecosystem Consequences of a Nitrogen-Fixing Proto-Organelle},
author = {J.C. Marks and M.C. Zampini and R. Fitzpatrick and S. Kariunga and A. Sitati and T.J. Samo and P.K. Weber and S. Thomas and B.A. Hungate and C.E. Ramon and M. Wulf and V.O. Leshyk and E. Schwartz and J. P-R and M.E. Power. },
doi = {https://doi.org/10.1073/pnas.},
year = {2025},
date = {2025-09-08},
urldate = {2025-09-08},
journal = {Proceedings of the National Academy of Sciences},
volume = {122},
issue = {37},
pages = {e2503108122},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Zampini, M. C.
Carbon and nitrogen pathways in stream ecosystems: Temperature, succession, and symbioses PhD Thesis
2025.
BibTeX | Tags:
@phdthesis{nokey,
title = {Carbon and nitrogen pathways in stream ecosystems: Temperature, succession, and symbioses},
author = {M. C. Zampini},
year = {2025},
date = {2025-06-15},
keywords = {},
pubstate = {published},
tppubtype = {phdthesis}
}
Osorio-Leon, I. D.; Rempe, D. M.; Golla, J. K.; Bouchez, J.; Druhan, J. L.
Deep Roots Supply Reactivity and Enhance Silicate Weathering in the Bedrock Vadose Zone Journal Article
In: AGU Advances, vol. 6, iss. 3, pp. e2025AV001692, 2025.
@article{nokey,
title = {Deep Roots Supply Reactivity and Enhance Silicate Weathering in the Bedrock Vadose Zone},
author = {I. D. Osorio-Leon and D. M. Rempe and J. K. Golla and J. Bouchez and J. L. Druhan},
doi = {https://doi.org/10.1029/2025AV001692},
year = {2025},
date = {2025-05-25},
urldate = {2025-05-25},
journal = {AGU Advances},
volume = {6},
issue = {3},
pages = {e2025AV001692},
keywords = {ERCZO},
pubstate = {published},
tppubtype = {article}
}
Carlson, Stephanie M.; Pregler, Kasey C.; Obedzinski, Mariska; Gallagher, Sean P.; Rhoades, Suzanne J.; Woelfle-Hazard, Cleo; Queener, Nathan; Thompson, Sally E.; Power, Mary E.
Anatomy of a range contraction: Flow-phenology mismatches threaten salmonid fishes near their trailing edge Journal Article
In: Proceedings of the National Academy of Sciences, vol. 122, iss. 14, no. e2415670122, 2025.
@article{nokey,
title = {Anatomy of a range contraction: Flow-phenology mismatches threaten salmonid fishes near their trailing edge},
author = {Stephanie M. Carlson and Kasey C. Pregler and Mariska Obedzinski and Sean P. Gallagher and Suzanne J. Rhoades and Cleo Woelfle-Hazard and Nathan Queener and Sally E. Thompson and Mary E. Power},
doi = {https://doi.org/10.1073/pnas.2415670122},
year = {2025},
date = {2025-04-03},
urldate = {2025-04-03},
journal = {Proceedings of the National Academy of Sciences},
volume = {122},
number = {e2415670122},
issue = {14},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Crutchfield-Peters, K. L.; Rempe, D. M.; Tune, A. K.; Dawson, T. E.
Linked nitrogen and carbon dynamics reveal distinct pools andpatterns in a deep, weathered bedrock rhizosphere Journal Article
In: Proceedings of the National Academy of Sciences, vol. 122, iss. 19, pp. e2400452122, 2025.
@article{nokey,
title = {Linked nitrogen and carbon dynamics reveal distinct pools andpatterns in a deep, weathered bedrock rhizosphere},
author = {K.L. Crutchfield-Peters and D. M. Rempe and A. K. Tune and T. E. Dawson},
doi = {https://doi.org/10.1073/pnas.2400452122},
year = {2025},
date = {2025-03-25},
urldate = {2025-03-25},
journal = {Proceedings of the National Academy of Sciences},
volume = {122},
issue = {19},
pages = {e2400452122},
keywords = {ERCZO},
pubstate = {published},
tppubtype = {article}
}
Grear, Daniel A.; Adams, Michael J.; Backlin, Adam R.; Barichivich, William J.; Brand, Adrianne B.; Gary M. Bucciarelli,; Calhoun, Daniel L.
Pan‐amphibia distribution of the fungal parasite Batrachochytrium dendrobatidis varies with species and temperature Journal Article
In: Ecological Monographs, vol. 95, iss. 1, no. e70001, 2025.
@article{nokey,
title = {Pan‐amphibia distribution of the fungal parasite Batrachochytrium dendrobatidis varies with species and temperature},
author = {Daniel A. Grear and Michael J. Adams and Adam R. Backlin and William J. Barichivich and Adrianne B. Brand and Gary M. Bucciarelli, and Daniel L. Calhoun},
doi = {https://doi.org/10.1002/ecm.70001},
year = {2025},
date = {2025-03-05},
urldate = {2025-03-05},
journal = {Ecological Monographs},
volume = {95},
number = {e70001},
issue = {1},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
2024
Rempe, D; McCormick, EL; Hahm, WJ; Persad, GG; Cummins, C
Resilience of woody ecosystems to precipitation variability Journal Article
In: EarthArXiv, 2024.
Links | BibTeX | Tags: climate change, Drought, ERCZO, precipitation, woody plants
@article{Rempe2022,
title = {Resilience of woody ecosystems to precipitation variability},
author = {D Rempe and EL McCormick and WJ Hahm and GG Persad and C Cummins},
doi = {https://doi.org/10.31223/X5XW7D},
year = {2024},
date = {2024-12-31},
urldate = {2024-12-31},
journal = {EarthArXiv},
keywords = {climate change, Drought, ERCZO, precipitation, woody plants},
pubstate = {published},
tppubtype = {article}
}
Peckarsky, B. L.; Power, M. E.
The Ecology of Place Book Chapter
In: Cross, W. F.; Benstead, J. P.; Marcarelli, A. M.; Sponseller, R. A. (Ed.): Chapter 10, pp. 137-163, University of Chicago Press, Stream and River Ecology, 2024.
BibTeX | Tags:
@inbook{nokey,
title = {The Ecology of Place},
author = {B. L. Peckarsky and M. E. Power},
editor = {W. F. Cross and J. P. Benstead and A. M. Marcarelli and R. A. Sponseller},
year = {2024},
date = {2024-12-11},
urldate = {2024-12-11},
pages = {137-163},
publisher = {University of Chicago Press},
edition = {Stream and River Ecology},
chapter = {10},
keywords = {},
pubstate = {published},
tppubtype = {inbook}
}
Lapides, DA; Hahm, WJ; Rempe, DM; Dralle, DN
Causes of missing snowmelt following drought Journal Article
In: Geophysical Research Letters, 2024.
@article{Lapides2024,
title = {Causes of missing snowmelt following drought},
author = {DA Lapides and WJ Hahm and DM Rempe and DN Dralle},
doi = {https://doi.org/10.31223/X5591F},
year = {2024},
date = {2024-10-01},
urldate = {2024-10-01},
journal = {Geophysical Research Letters},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Rossi, GJ; Bellmore, JR; Armstrong, JB; C Jeffres,; Naman, SM; Carlson, SM; Grantham, TE; Kaylor, JM; White, S; Katz, J; Power, ME
Foodscapes for Salmon and Other Mobile Consumers in River Networks Journal Article
In: BioScience Overview, vol. 74, iss. 9, pp. 1-15, 2024.
@article{nokey,
title = {Foodscapes for Salmon and Other Mobile Consumers in River Networks},
author = {GJ Rossi and JR Bellmore and JB Armstrong and C Jeffres, and SM Naman and SM Carlson and TE Grantham and JM Kaylor and S White and J Katz and ME Power },
doi = {https://doi.org/10.1093/biosci/biae064},
year = {2024},
date = {2024-08-10},
urldate = {2024-08-10},
journal = {BioScience Overview},
volume = {74},
issue = {9},
pages = {1-15},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Power, M. E.; Chandra, S.; Gleick, P.; Dietrich, W. E.
Supporting Information for: Anticipating responses to climate change and planning for resilience in California’s freshwater ecosystems Online
2024, visited: 29.07.2024.
BibTeX | Tags:
@online{nokey,
title = {Supporting Information for: Anticipating responses to climate change and planning for resilience in California’s freshwater ecosystems},
author = {M. E. Power and S. Chandra and P. Gleick and W. E. Dietrich},
year = {2024},
date = {2024-07-29},
urldate = {2024-07-29},
keywords = {},
pubstate = {published},
tppubtype = {online}
}
Power, M. E.; Chandra, S.; Gleick, P.; Dietrich, W. E.
Anticipating responses to climate change and planning for resilience in California’s freshwater ecosystems Journal Article
In: Proceedings of the National Academy of Sciences, vol. 121, iss. 32, 2024.
Abstract | Links | BibTeX | Tags:
@article{nokey,
title = {Anticipating responses to climate change and planning for resilience in California’s freshwater ecosystems},
author = {M. E. Power and S. Chandra and P. Gleick and W. E. Dietrich},
doi = {https://doi.org/10.1073/pnas.2310075121},
year = {2024},
date = {2024-07-29},
urldate = {2024-07-29},
journal = {Proceedings of the National Academy of Sciences},
volume = {121},
issue = {32},
abstract = {As human-caused climate changes accelerate, California will experience hydrologic and temperature conditions different than any encountered in recorded history. How will these changes affect the state’s freshwater ecosystems? Rivers, lakes, and wetlands are managed as a water resource, but they also support a complex web of life, ranging from bacteria, fungi, and algae to macrophytes, woody plants, invertebrates, fish, amphibians, reptiles, birds, and mammals. In much of the state, native freshwater organisms already struggle to survive massive water diversions and dams, deteriorating water quality, extensive land cover modification for agriculture and urban development, and invasions of exotic species. In the face of climate change, we need to expand efforts to recover degraded ecosystems and to protect the resilience, health, and viability of existing ecosystems. For this, more process-based understanding of river, lake, and wetlands ecosystems is needed to forecast how systems will respond to future climate change and to our interventions. This will require 1) expanding our ability to model mechanistically how freshwater biota and ecosystems respond to environmental change; 2) hypothesis-driven monitoring and field studies; 3) education and training to build research, practitioner, stewardship, and policy capabilities; and 4) developing tools and policies for building resilient ecosystems. A goals-driven, hypothesis-informed collaboration among tribes, state (and federal) agencies, nongovernmental organizations, academicians, and consultants is needed to accomplish these goals and to advance the skills and knowledge of the future workforce of practitioners, regulators, and researchers who must live with the climate changes that are already upon us and will intensify.},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
W. J. Hahm R. S. Ehlert, D. N. Dralle; Allen, D. M.
Bedrock controls on water and energy partitioning. Journal Article
In: Water Resources Research, vol. 60, iss. 8, 2024.
@article{nokey,
title = { Bedrock controls on water and energy partitioning.},
author = {R. S. Ehlert, W. J. Hahm, D. N. Dralle, D. M. Rempe, and D. M. Allen },
doi = {https://doi.org/10. 1029/2023WR036719},
year = {2024},
date = {2024-07-25},
urldate = {2024-07-25},
journal = {Water Resources Research},
volume = {60},
issue = {8},
keywords = {ERCZO},
pubstate = {published},
tppubtype = {article}
}
Benitez-Nelson, NK; Dralle, DN; Hahm, JW; Rempe, D
2024, visited: 15.07.2024.
Abstract | Links | BibTeX | Tags:
@online{nokey,
title = {Patterns of Intra-Seasonal Groundwater Recharge Inferred from Streamflow and Explained by Vadose Zone Storage Deficits},
author = {NK Benitez-Nelson and DN Dralle and JW Hahm and D Rempe},
doi = {10.22541/essoar.172107972.21508588/v1},
year = {2024},
date = {2024-07-15},
urldate = {2024-07-15},
journal = {Authorea Preprints},
abstract = {In forested, seasonally dry watersheds, winter rains commonly replenish water storage deficits in the vadose zone before recharging underlying hillslope groundwater systems that sustain streamflow. However, the relative inaccessibility of the subsurface has hindered efforts to include the role of storage deficits, primarily generated by plant-water uptake, in moderating groundwater recharge. Here, we compare groundwater recharge inferred from the storage-discharge relationship with independent, distributed estimates of vadose zone storage deficits across 12 undisturbed California watersheds, thereby tracking the evolution of the deficit-recharge relationship without intensive field instrumentation. We find accrued deficits during the dry season (driven by evapotranspiration) alone insufficiently explain differences in the wet season partitioning of rainfall due to the inter-storm behavior of the deficit during the subsequent wet season. Tracking the deficit at the storm event-scale within the wet season reveals a characteristic response in groundwater to increasing rainfall not captured in the seasonal analysis, and may improve estimates of the rainfall required to generate recharge and streamflow on a per-storm basis. Our findings demonstrate the potential for existing public datasets to better capture water partitioning within the subsurface using a combined deficit-recharge approach, though our analysis is currently limited to basins with select characteristics.},
keywords = {},
pubstate = {published},
tppubtype = {online}
}
D. N.; Lapides Hahm W. J.; Dralle, D. A. ; Ehlert
Geologic controls on apparent root‐zone storage capacity Journal Article
In: Water Resources Research, vol. 30, iss. 3, 2024.
@article{,
title = {Geologic controls on apparent root‐zone storage capacity},
author = {Hahm W. J.; Dralle, D. N.; Lapides, D. A.; Ehlert, R. S.; Rempe, D. M. },
doi = {https://doi.org/10. 1029/2023WR036719},
year = {2024},
date = {2024-07-01},
urldate = {2024-07-01},
journal = {Water Resources Research},
volume = {30},
issue = {3},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Bradman, E; Evans, E; Nguyen, J; Mai, T
Colony characteristics of the functions of Margaritifera falcata in the Eel River Journal Article
In: CEC Research, vol. 7, iss. 2, 2024.
@article{Bradman2024,
title = {Colony characteristics of the functions of Margaritifera falcata in the Eel River},
author = {E Bradman and E Evans and J Nguyen and T Mai},
doi = {https://doi.org/10.21973/N3R94R},
year = {2024},
date = {2024-06-30},
journal = {CEC Research},
volume = {7},
issue = {2},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Elshoff, K; Keen, A; Wohlenberg, E; Zechiel, C
In: CEC Research, vol. 7, iss. 2, 2024.
@article{Elshoff2024,
title = {Microhabitat, morphology, and physiology of two riparian liverwort species (Conocephalum conicum and Marchantia polymorpha) in northwest California},
author = {K Elshoff and A Keen and E Wohlenberg and C Zechiel},
doi = {https://doi.org/10.21973/N31Q17},
year = {2024},
date = {2024-06-30},
urldate = {2024-06-30},
journal = {CEC Research},
volume = {7},
issue = {2},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Lapides, DA; Hahm, WJ; Forrest, M; Rempe, DM; Hickler, T; Dralle, DN
Inclusion of bedrock vadose zone in dynamic global vegetation models is key for simulating vegetation structure and functioning Journal Article
In: EGUsphere, 2024.
@article{Lapides2023,
title = {Inclusion of bedrock vadose zone in dynamic global vegetation models is key for simulating vegetation structure and functioning},
author = {DA Lapides and WJ Hahm and M Forrest and DM Rempe and T Hickler and DN Dralle},
doi = {https://doi.org/10.5194/egusphere-2023-2572},
year = {2024},
date = {2024-06-30},
urldate = {2024-06-30},
journal = {EGUsphere},
keywords = {ERCZO},
pubstate = {published},
tppubtype = {article}
}
Rempe, DM; McCormick, EL; Hahm, WJ; Persada, G; Cummins, C; Lapides, DA; Chadwick, KD; Dralle, DN
Mechanisms underlying the vulnerability of seasonally dry ecosystems to drought Online
2024, visited: 30.06.2024.
@online{Rempe2024,
title = {Mechanisms underlying the vulnerability of seasonally dry ecosystems to drought},
author = {DM Rempe and EL McCormick and WJ Hahm and G Persada and C Cummins and DA Lapides and KD Chadwick and DN Dralle},
year = {2024},
date = {2024-06-30},
urldate = {2024-06-30},
journal = {Global Change Biology},
keywords = {ERCZO},
pubstate = {published},
tppubtype = {online}
}
Lapides, D; Hahm, WJ; Rempe, D; Dralle, DN
Missing snowmelt runoff following drought explained by root-zone storage deficits Journal Article
In: PNAS, 2024.
Links | BibTeX | Tags: Drought, ERCZO, root zone, snow melt
@article{Lapides2022,
title = {Missing snowmelt runoff following drought explained by root-zone storage deficits},
author = {D Lapides and WJ Hahm and D Rempe and DN Dralle},
doi = {http://doi.org/10.31223/X5591F},
year = {2024},
date = {2024-06-30},
urldate = {2024-06-30},
journal = {PNAS},
keywords = {Drought, ERCZO, root zone, snow melt},
pubstate = {published},
tppubtype = {article}
}
Golla, JK; Bouchez, J; Kuessner, ML; Druhan, JL
Weathering Incongruence in Mountainous Mediterranean Climates Recorded by Stream Lithium Isotope Ratios Journal Article
In: JGR Earth Surface, vol. 129, iss. 3, 2024.
@article{Golla2024,
title = {Weathering Incongruence in Mountainous Mediterranean Climates Recorded by Stream Lithium Isotope Ratios},
author = {JK Golla and J Bouchez and ML Kuessner and JL Druhan},
doi = {https://doi.org/10. 1029/2023JF007359},
year = {2024},
date = {2024-03-22},
journal = {JGR Earth Surface},
volume = {129},
issue = {3},
keywords = {ERCZO},
pubstate = {published},
tppubtype = {article}
}
Crutchfield-Peters, K; Rempe, DM; Tune, AK; Dawson, TE
Deep rhizospheres extend the nitrogen cycle meters below the base of soil into weathered bedrock Journal Article
In: bioRxiv, 2024.
Abstract | Links | BibTeX | Tags: ERCZO
@article{Crutchfield-Peters2024,
title = {Deep rhizospheres extend the nitrogen cycle meters below the base of soil into weathered bedrock},
author = {K Crutchfield-Peters and DM Rempe and AK Tune and TE Dawson},
doi = {https://doi.org/10.1101/2024.01.08.574278},
year = {2024},
date = {2024-01-19},
urldate = {2024-01-19},
journal = {bioRxiv},
abstract = {Nitrogen is the most limiting nutrient to forest productivity worldwide. Recently, it has been established that diverse ecosystems source a substantial fraction of their water from weathered bedrock, leading to questions about whether root-driven nitrogen cycling extends into weathered bedrock as well. In this study, we specifically examined nitrogen dynamics using specialized instrumentation distributed across a 16 m weathered bedrock vadose zone (WBVZ) underlying an old growth forest in northern California where the rhizosphere—composed of plant roots and their associated microbiome—extends meters into rock. We documented total dissolved nitrogen (TDN), dissolved organic carbon (DOC), inorganic N (ammonium and nitrate) and CO2 and O2 gasses every 1.5 m to 16 m depth for two years. We found that biologically available nitrogen in the weathered bedrock rhizosphere was comparable in concentration to temperate forest soils and primarily organic. TDN concentrations in the WBVZ exhibited distinct patterns with depth and were correlated with periods of increased whole-ecosystem metabolic activity as well as stream discharge, suggesting competing rhizosphere and leaching processes in the fate of TDN in the WBVZ. Carbon isotope composition of the DOC suggests that dissolved organic matter in the WBVZ is primarily derived from fresh plant sources. We conclude that N cycling in the WBVZ is driven by an active rhizosphere meters below the base of soil and represents an important and overlooked component of deeply rooted ecosystems that must be incorporated into future models and theory of ecosystem function.},
keywords = {ERCZO},
pubstate = {published},
tppubtype = {article}
}
2023
Georgakakos, PB; Dralle, DN; Power, ME
Spring temperature predicts upstream migration timing of invasive Sacramento pikeminnow within its introduced range Journal Article
In: Environ Biol Fish, vol. 106, pp. 2069–2082, 2023.
Abstract | Links | BibTeX | Tags: ERCZO, migration, Sacramento pikeminnow
@article{Georgakakos2023,
title = {Spring temperature predicts upstream migration timing of invasive Sacramento pikeminnow within its introduced range},
author = {PB Georgakakos and DN Dralle and ME Power},
doi = {https://doi.org/10.1007/s10641-023-01486-y},
year = {2023},
date = {2023-11-23},
urldate = {2023-11-23},
journal = {Environ Biol Fish},
volume = {106},
pages = {2069–2082},
abstract = {Rapid climate change and invasive species introductions threaten ecological communities across the globe. Freshwaters are particularly vulnerable and impacted, especially when these stresses coincide. We document the migration of an invasive piscine predator, the Sacramento pikeminnow (Ptychocheilus grandis), within its introduced range, the South Fork Eel River, California, USA. Snorkel surveys and temperature monitoring in 2015–2019 showed that pikeminnow migrate upstream during spring and early summer, with earlier migration in warmer years. We developed a statistical temperature model to forecast the timing and extent of upstream migration by pikeminnow under varying combinations of discharge and air temperature. Modeled river temperature increased with air temperature and downstream and decreased with discharge. In years with low discharge and high air temperature, we predict pikeminnow will move upstream earlier, increasing spatial and temporal overlap in their summer range with native fishes. Managing conditions that reduce pikeminnow co-occurrence with native fishes (i.e., decreasing river temperature) could increase amount and duration of predator-free habitat for native fishes. We predict invasive pikeminnow will have larger impacts on invaded riverine communities with global warming and increasing drought severity. Knowledge of life history and phenology, for pikeminnow and other organisms, can guide effective management as conditions change and help to limit adverse impacts of introduced organisms on native species.},
keywords = {ERCZO, migration, Sacramento pikeminnow},
pubstate = {published},
tppubtype = {article}
}
Tornabene, BJ; Hossack, B; Halstead, BJ; Eagles-Smith, CA; Adams, MJ; Backlin, AR; Brand, AB; Emery, CS; Fisher, RN; Fleming, J; Glorioso, BM; Grear, DA; Grant, EH Campbell; Kleeman, PM; Miller, DAW; Muths, E; Pearl, CA; Rowe, JC; Rumrill, CT; Waddle, JH; Winzeler, ME; Smalling, KL
Broad-Scale Assessment of Methylmercury in Adult Amphibians Journal Article
In: Environmental Science & Technology, 2023.
@article{Tornabene2023,
title = {Broad-Scale Assessment of Methylmercury in Adult Amphibians},
author = {BJ Tornabene and B Hossack and BJ Halstead and CA Eagles-Smith and MJ Adams and AR Backlin and AB Brand and CS Emery and RN Fisher and J Fleming and BM Glorioso and DA Grear and EH Campbell Grant and PM Kleeman and DAW Miller and E Muths and CA Pearl and JC Rowe and CT Rumrill and JH Waddle and ME Winzeler and KL Smalling},
doi = {https://doi.org/10.1021/acs.est.3c05549},
year = {2023},
date = {2023-10-30},
urldate = {2023-10-30},
journal = {Environmental Science & Technology},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Rose, JP; Kupferberg, SJ; Peek, RA; Ashton, D; Bettaso, JB; Bobzien, S; Bourque, RM; Breedveld, KGH; Catenazzi, A; Drennan, JE; Gonsolin, E; Grefsrud, M; Herman, AE; House, MR; Kluber, MR; Lind, AJ; Marlow, KR; Striegle, A; Hattem, M; Wheeler, CA; Wilcox, JT; Wiseman, KD; Halstead, BJ
Identifying drivers of population dynamics for a stream breeding amphibian using time series of egg mass counts Journal Article
In: Ecosphere, vol. 14, iss. 8, pp. e4645, 2023.
Abstract | Links | BibTeX | Tags: amphibian declines, amphibian populations, amphibians, Foothill yellow‐legged frog, population structure, stream ecosystems
@article{Rose2023,
title = {Identifying drivers of population dynamics for a stream breeding amphibian using time series of egg mass counts},
author = {JP Rose and SJ Kupferberg and RA Peek and D Ashton and JB Bettaso and S Bobzien and RM Bourque and KGH Breedveld and A Catenazzi and JE Drennan and E Gonsolin and M Grefsrud and AE Herman and MR House and MR Kluber and AJ Lind and KR Marlow and A Striegle and M Hattem and CA Wheeler and JT Wilcox and KD Wiseman and BJ Halstead},
editor = {AM Kramer},
url = {https://angelo.berkeley.edu/wp-content/uploads/sites/59/Ecosphere-2023-Rose.pdf},
doi = {10.1002/ecs2.4645},
year = {2023},
date = {2023-08-24},
urldate = {2023-08-24},
journal = {Ecosphere},
volume = {14},
issue = {8},
pages = {e4645},
abstract = {The decline in amphibian populations is one of the starkest examples of the biodiversity crisis. For stream breeding amphibians, alterations to natural flow regimes by dams, water diversions, and climate change have been implicated in declines and extirpations. Identifying drivers of amphibian declines requires long time series of abundance data because amphibian populations can exhibit high natural variability. Multiple population viability analysis (MPVA) models integrate abundance data and share information from different populations to estimate how environmental factors influence population growth. Flow alteration has been linked to declines and extirpations in the Foothill Yellow-legged Frog (Rana boylii), a stream breeding amphibian native to California and Oregon. To date, no study has jointly analyzed abundance data from populations throughout the range of R. boylii in an MPVA model. We compiled time series of egg mass counts (an index of adult female abundance) from R. boylii populations in 36 focal streams and fit an MPVA model to quantify how streamflow metrics, stream temperature, and surrounding land cover affect population growth. We found population growth was positively related to stream temperature and was higher in the years following a wet year with high total annual streamflow. Density dependence was weakest (i.e., carrying capacity was highest) for streams with high seasonality of streamflow and intermediate rates of change in streamflow during spring. Our results highlight how altered streamflow can further increase the risk of decline for R. boylii populations. Managing stream conditions to better match natural flow and thermal regimes would benefit the conservation of R. boylii populations.},
keywords = {amphibian declines, amphibian populations, amphibians, Foothill yellow‐legged frog, population structure, stream ecosystems},
pubstate = {published},
tppubtype = {article}
}
Dralle, DN; Hahm, WJ; Rempe, DM
Inferring hillslope groundwater recharge ratios from the storage-discharge relation Journal Article
In: Geophysical Research Letters, 2023.
Abstract | Links | BibTeX | Tags: ERCZO, groundwater, hillslope
@article{Dralle2023b,
title = {Inferring hillslope groundwater recharge ratios from the storage-discharge relation},
author = {DN Dralle and WJ Hahm and DM Rempe},
doi = {https://doi.org/10.1029/2023GL104255},
year = {2023},
date = {2023-07-25},
urldate = {2023-07-25},
journal = {Geophysical Research Letters},
abstract = {Accurate observation of hillslope groundwater storage and instantaneous recharge remains difficult due to limited monitoring and the complexity of mountainous landscapes. We introduce a novel storage-discharge method to estimate hillslope recharge and the recharge ratio—the fraction of precipitation that recharges groundwater. The method, which relies on streamflow data, is corroborated by independent measurements of water storage dynamics inside the Rivendell experimental hillslope at the Eel River Critical Zone Observatory, California USA. We find that along-hillslope patterns in bedrock weathering and plant-driven storage dynamics govern the seasonal evolution of recharge ratios. Thinner weathering profiles and smaller root-zone storage deficits near-channel are replenished before larger ridge-top deficits. Consequently, precipitation progressively activates groundwater from channel to divide, with an attendant increase in recharge ratios throughout the wet season. Our novel approach and process observations offer valuable insights into controls on groundwater recharge, enhancing our understanding of a critical flux in the hydrologic cycle.},
keywords = {ERCZO, groundwater, hillslope},
pubstate = {published},
tppubtype = {article}
}
Hudson-Rasmussen, B; Huang, MH; Hahm, WJ; Rempe, D; Dralle, DN
Mapping variations in bedrock weathering with slope aspect under a sedimentary ridge-valley system using near-surface geophysics and drilling Journal Article
In: ESSOAr, 2023.
Links | BibTeX | Tags: bedrock weathering, ERCZO, hillslopes, Mapping
@article{Hudson-Rasmussen2022,
title = {Mapping variations in bedrock weathering with slope aspect under a sedimentary ridge-valley system using near-surface geophysics and drilling},
author = {B Hudson-Rasmussen and MH Huang and WJ Hahm and D Rempe and DN Dralle},
doi = {https://doi.org/10.1029/2023JF007254},
year = {2023},
date = {2023-06-26},
urldate = {2023-06-19},
journal = {ESSOAr},
keywords = {bedrock weathering, ERCZO, hillslopes, Mapping},
pubstate = {published},
tppubtype = {article}
}
Tune, AK; Druhan, JL; Lawrence, CR; Rempe, DM
Deep root activity overprints weathering of petrogenic organic carbon in shale Journal Article
In: Earth and Planetary Science Letters, vol. 607, no. 118048, 2023.
Links | BibTeX | Tags: ERCZO, root zone, Weathering
@article{Tune2023,
title = {Deep root activity overprints weathering of petrogenic organic carbon in shale},
author = {AK Tune and JL Druhan and CR Lawrence and DM Rempe},
editor = {A Jacobson},
doi = {https://doi.org/10.1016/j.epsl.2023.118048},
year = {2023},
date = {2023-04-01},
urldate = {2023-04-01},
journal = {Earth and Planetary Science Letters},
volume = {607},
number = {118048},
keywords = {ERCZO, root zone, Weathering},
pubstate = {published},
tppubtype = {article}
}
Dralle, DN; Rossi, G; Georgakakos, PB; Hahm, WJ; Rempe, DM; Blanchard, M; Power, ME; Dietrich, WE; Carlson, SM
The salmonid and the subsurface: Hillslope storage capacity determines the quality and distribution of fish habitat Journal Article
In: Ecosphere, vol. 14, iss. 2, 2023.
@article{Dralle2023,
title = {The salmonid and the subsurface: Hillslope storage capacity determines the quality and distribution of fish habitat},
author = {DN Dralle and G Rossi and PB Georgakakos and WJ Hahm and DM Rempe and M Blanchard and ME Power and WE Dietrich and SM Carlson},
doi = {https://doi.org/10.1002/ecs2.4436},
year = {2023},
date = {2023-02-21},
journal = {Ecosphere},
volume = {14},
issue = {2},
keywords = {ERCZO},
pubstate = {published},
tppubtype = {article}
}
2022
Hill, K; Power, ME
Direct and indirect interactions of spiders, herbivorous insects, and native plants in native perennial vs exotic annual grass patches Journal Article
In: Ecology, 2022.
BibTeX | Tags: ecology, ERCZO, exotic plants, grasses, spiders
@article{Hill2022,
title = {Direct and indirect interactions of spiders, herbivorous insects, and native plants in native perennial vs exotic annual grass patches},
author = {K Hill and ME Power},
year = {2022},
date = {2022-12-31},
urldate = {2022-12-31},
journal = {Ecology},
keywords = {ecology, ERCZO, exotic plants, grasses, spiders},
pubstate = {published},
tppubtype = {article}
}
Golla, JK; Bouchez, J; Kuessner, ML; Rempe, DM; Druhan, JL
Subsurface weathering signatures in stream chemistry during an intense storm Journal Article
In: Earth and Planetary Science Letters, vol. 595, 2022.
Links | BibTeX | Tags: bedrock weathering, ERCZO, hydrochemistry, streams
@article{Golla2022,
title = {Subsurface weathering signatures in stream chemistry during an intense storm},
author = {JK Golla and J Bouchez and ML Kuessner and DM Rempe and JL Druhan},
url = {https://angelo.berkeley.edu/golla_subsurface_weathering/},
doi = {https://doi.org/10.1016/j.epsl.2022.117773},
year = {2022},
date = {2022-10-01},
urldate = {2022-10-01},
journal = {Earth and Planetary Science Letters},
volume = {595},
keywords = {bedrock weathering, ERCZO, hydrochemistry, streams},
pubstate = {published},
tppubtype = {article}
}
Parker-Shames, Phoebe
2022.
Abstract | Links | BibTeX | Tags: ecological impacts, Marijuana
@phdthesis{Parker-Shames2022,
title = {Ecological Outcomes of Cannabis Legalization: A multidisciplinary study of cannabis land use change, its social drivers, and environmental outcomes},
author = {Phoebe Parker-Shames},
url = {https://angelo.berkeley.edu/parkershamesdissertation/},
year = {2022},
date = {2022-08-10},
urldate = {2022-08-10},
abstract = {Recent state-level legalizations of recreational cannabis across the US have created a large-scale
policy experiment that could alter land use patterns and shape wildlife communities. Cannabis
legalization provides a rare opportunity to study the consequences of land use change in a rural
agriculture frontier. This dissertation explores the ecological outcomes of cannabis legalization
by approaching cannabis landscapes as social-ecological systems and combining multiple
disciplinary approaches. My research takes an interdisciplinary approach to quantifying land use
change and contributes to our context-specific understanding of wildlife responses to human
development. Ultimately, this research provides results that are timely and may be useful for
policy, management, and land use decision-making.
I begin with an introduction on cannabis landscapes as social-ecological systems. I outline a brief
history of cannabis farming in the western US, as well as an explanation of my focus on small-
scale legacy cannabis farming. Then, in Chapter 1, I produce baseline distribution data on
cannabis land use in southern Oregon, and examine the overlap with sensitive ecological
features. This chapter addresses the questions: How is cannabis production distributed? Where
might we be concerned about its environmental impact? In Chapter 2, I use cannabis farmer
interviews to generate model covariates which contextualize the cannabis land use data from the
first chapter. Here, I ask: What drives cannabis land use over time? What is the socio-ecological
context for these drivers? In Chapter 3, I use wildlife camera data to examine the outcomes of
cannabis land use for animals on and surrounding cannabis farms. This chapter focuses on the
question: How do wildlife respond to cannabis farming? In Chapter 4, I detail the methodology
for field experiments that address specific mechanisms of wildlife response to cannabis
cultivation, asking: What is the role of light and noise disturbance in multi-taxa wildlife response
to cannabis? Finally, I conclude with a summary of the broad implications of this work, as well
as future research and policy recommendations.},
keywords = {ecological impacts, Marijuana},
pubstate = {published},
tppubtype = {phdthesis}
}
policy experiment that could alter land use patterns and shape wildlife communities. Cannabis
legalization provides a rare opportunity to study the consequences of land use change in a rural
agriculture frontier. This dissertation explores the ecological outcomes of cannabis legalization
by approaching cannabis landscapes as social-ecological systems and combining multiple
disciplinary approaches. My research takes an interdisciplinary approach to quantifying land use
change and contributes to our context-specific understanding of wildlife responses to human
development. Ultimately, this research provides results that are timely and may be useful for
policy, management, and land use decision-making.
I begin with an introduction on cannabis landscapes as social-ecological systems. I outline a brief
history of cannabis farming in the western US, as well as an explanation of my focus on small-
scale legacy cannabis farming. Then, in Chapter 1, I produce baseline distribution data on
cannabis land use in southern Oregon, and examine the overlap with sensitive ecological
features. This chapter addresses the questions: How is cannabis production distributed? Where
might we be concerned about its environmental impact? In Chapter 2, I use cannabis farmer
interviews to generate model covariates which contextualize the cannabis land use data from the
first chapter. Here, I ask: What drives cannabis land use over time? What is the socio-ecological
context for these drivers? In Chapter 3, I use wildlife camera data to examine the outcomes of
cannabis land use for animals on and surrounding cannabis farms. This chapter focuses on the
question: How do wildlife respond to cannabis farming? In Chapter 4, I detail the methodology
for field experiments that address specific mechanisms of wildlife response to cannabis
cultivation, asking: What is the role of light and noise disturbance in multi-taxa wildlife response
to cannabis? Finally, I conclude with a summary of the broad implications of this work, as well
as future research and policy recommendations.
Hahm, WJ
Understanding forest resilience to drought: the role of bedrock water storage Presentation
03.08.2022.
BibTeX | Tags: bedrock water, Drought, ERCZO
@misc{Hahm2022c,
title = {Understanding forest resilience to drought: the role of bedrock water storage},
author = {WJ Hahm},
year = {2022},
date = {2022-08-03},
urldate = {2022-08-03},
issue = {ESA 2022},
keywords = {bedrock water, Drought, ERCZO},
pubstate = {published},
tppubtype = {presentation}
}
Bilir, T. Eren
Microclimates mediate water fluxes from vegetation PhD Thesis
2022.
@phdthesis{Bilir2022,
title = {Microclimates mediate water fluxes from vegetation},
author = {T. Eren Bilir},
editor = {John Chiang Todd Dawson Inez Fung (Chair) and Charlie Koven},
year = {2022},
date = {2022-08-01},
keywords = {ERCZO, Fluxes},
pubstate = {published},
tppubtype = {phdthesis}
}
Grant, G
Where’s water — now and in the future — in the Western US? Implications for forest management. Presentation
15.07.2022.
BibTeX | Tags: ERCZO, forested watershed
@misc{Grant2022,
title = {Where’s water — now and in the future — in the Western US? Implications for forest management.},
author = {G Grant},
year = {2022},
date = {2022-07-15},
issue = {USDA Forest Service ScienceX},
keywords = {ERCZO, forested watershed},
pubstate = {published},
tppubtype = {presentation}
}
Lapides, D
The Case of California’s Missing Streamflow Presentation
07.07.2022.
BibTeX | Tags: California, ERCZO, Stream Flow
@misc{Lapides2022c,
title = {The Case of California’s Missing Streamflow},
author = {D Lapides},
year = {2022},
date = {2022-07-07},
issue = {US Forest Service Pacific Southwest},
keywords = {California, ERCZO, Stream Flow},
pubstate = {published},
tppubtype = {presentation}
}
Dawson, T. E.
The Role of Trees in the Function of the Critical Zone Presentation
01.07.2022.
BibTeX | Tags: critical zone structure, ERCZO, trees
@misc{Dawson2022,
title = {The Role of Trees in the Function of the Critical Zone},
author = {T. E. Dawson},
year = {2022},
date = {2022-07-01},
urldate = {2022-07-01},
issue = {Invited seminar (remote)},
keywords = {critical zone structure, ERCZO, trees},
pubstate = {published},
tppubtype = {presentation}
}
Rossi, G; Power, ME; Carlson, SM; Grantham, TE
Seasonal growth potential of Oncorhynchus mykiss in streams with contrasting prey phenology and streamflow Journal Article
In: Ecosphere, 2022.
Links | BibTeX | Tags: ERCZO, predator-prey dynamics, steelhead/rainbow trout, streams
@article{Rossi2022,
title = {Seasonal growth potential of Oncorhynchus mykiss in streams with contrasting prey phenology and streamflow},
author = {G Rossi and ME Power and SM Carlson and TE Grantham},
url = {https://angelo.berkeley.edu/ecs24211/},
doi = {https://doi.org/10.1002/ecs2.4211},
year = {2022},
date = {2022-06-16},
urldate = {2022-06-16},
journal = {Ecosphere},
keywords = {ERCZO, predator-prey dynamics, steelhead/rainbow trout, streams},
pubstate = {published},
tppubtype = {article}
}
Schmidt, LM
Monitoring bedrock vadose zone water storage dynamics with time-lapse borehole nuclear magnetic resonance well logging Masters Thesis
University of Austin at Texas, 2022.
BibTeX | Tags: bedrock, ERCZO, neutron moderation nuclear magnetic resonance, vadose zone
@mastersthesis{Schmidt2022,
title = {Monitoring bedrock vadose zone water storage dynamics with time-lapse borehole nuclear magnetic resonance well logging},
author = {LM Schmidt},
year = {2022},
date = {2022-05-01},
school = {University of Austin at Texas},
keywords = {bedrock, ERCZO, neutron moderation nuclear magnetic resonance, vadose zone},
pubstate = {published},
tppubtype = {mastersthesis}
}
Hahm, WJ; Dralle, DN; Sanders, M; Bryk, AB; Fauria, KE; Huang, MH; Hudson-Rasmussen, B; Nelson, MD; Pedrazas, MA; Schmidt, L; Whiting, J; Dietrich, WE; Rempe, DM
Bedrock water storage dynamics under extreme drought: consequences for plant water availability, recharge, and runoff Bachelor Thesis
2022.
@bachelorthesis{Hahm2022b,
title = {Bedrock water storage dynamics under extreme drought: consequences for plant water availability, recharge, and runoff},
author = {WJ Hahm and DN Dralle and M Sanders and AB Bryk and KE Fauria and MH Huang and B Hudson-Rasmussen and MD Nelson and MA Pedrazas and L Schmidt and J Whiting and WE Dietrich and DM Rempe},
doi = {https://doi.org/10.1029/2021WR031781},
year = {2022},
date = {2022-04-08},
journal = {Water Resources Research},
volume = {58},
issue = {4},
keywords = {ERCZO},
pubstate = {published},
tppubtype = {bachelorthesis}
}
Hahm, WJ; Dralle, DN; Sanders, M; Bryk, AB; Fauria, KE; Huang, MH; Hudson-Rasmussen, B; Nelson, MD; Pedrazas, MA; and, L Schmidt
Bedrock vadose zone storage dynamics under extreme drought: consequences for plant water availability, recharge, and runoff Journal Article
In: Water Resources Research, vol. 58, iss. 4, 2022.
Links | BibTeX | Tags: bedrock, Drought, ERCZO, water storage
@article{Hahm2022,
title = {Bedrock vadose zone storage dynamics under extreme drought: consequences for plant water availability, recharge, and runoff},
author = {WJ Hahm and DN Dralle and M Sanders and AB Bryk and KE Fauria and MH Huang and B Hudson-Rasmussen and MD Nelson and MA Pedrazas and L Schmidt and},
url = {https://angelo.berkeley.edu/hahm_bedrock_vadose_storage/},
doi = {https://doi.org/10.1029/2021WR031781},
year = {2022},
date = {2022-04-08},
urldate = {2022-04-08},
journal = {Water Resources Research},
volume = {58},
issue = {4},
keywords = {bedrock, Drought, ERCZO, water storage},
pubstate = {published},
tppubtype = {article}
}
Lapides, D; Hahm, WJ; Rempe, DM; Dietrich, WE; Dralle, DN
Controls on stream water age in a saturation overland flow-dominated catchment Journal Article
In: Water Resources Research, vol. 58, iss. 4, 2022.
Links | BibTeX | Tags: catchment, ERCZO, stream flows
@article{Lapides2022b,
title = {Controls on stream water age in a saturation overland flow-dominated catchment},
author = {D Lapides and WJ Hahm and DM Rempe and WE Dietrich and DN Dralle},
url = {https://angelo.berkeley.edu/lapides_streamwater_age-compressed/},
doi = {https://doi.org/10.1029/2021WR031665},
year = {2022},
date = {2022-04-01},
journal = {Water Resources Research},
volume = {58},
issue = {4},
keywords = {catchment, ERCZO, stream flows},
pubstate = {published},
tppubtype = {article}
}
LaFollette, PT; Hahm, WJ; Rempe, DM; Dietrich, WE; Brauer, CC; Weerts, AH; Dralle, DN
Multicriteria analysis on rock moisture and streamflow in a rainfall-runoff model improves accuracy of model results Journal Article
In: Hydrological Processes, vol. 36, iss. 3, 2022.
Links | BibTeX | Tags: ERCZO, hydrologic modeling, rainfall, rock moisture, Stream Flow
@article{LaFollette2022,
title = {Multicriteria analysis on rock moisture and streamflow in a rainfall-runoff model improves accuracy of model results},
author = {PT LaFollette and WJ Hahm and DM Rempe and WE Dietrich and CC Brauer and AH Weerts and DN Dralle},
url = {https://angelo.berkeley.edu/lafollette_rockmoisture_streamflow_model/},
doi = {https://doi.org/10.1002/hyp.14536},
year = {2022},
date = {2022-03-09},
journal = {Hydrological Processes},
volume = {36},
issue = {3},
keywords = {ERCZO, hydrologic modeling, rainfall, rock moisture, Stream Flow},
pubstate = {published},
tppubtype = {article}
}
2021
Tune, AK
Interactions between carbon cycling and bedrock weathering in a forest of the Northern California Coast Ranges PhD Thesis
2021.
BibTeX | Tags: bedrock weathering, carbon flow, ERCZO, mixed evergreen forests, northern California
@phdthesis{Tune2021,
title = {Interactions between carbon cycling and bedrock weathering in a forest of the Northern California Coast Ranges},
author = {AK Tune},
year = {2021},
date = {2021-12-31},
keywords = {bedrock weathering, carbon flow, ERCZO, mixed evergreen forests, northern California},
pubstate = {published},
tppubtype = {phdthesis}
}
Kupferberg, Sarah J.
Rana Boylii (Foothill Yellow-legged Frog) Reproductive Behavior and Habitat Use Journal Article
In: Herpetological Review, vol. 52, no. 4, 2021.
BibTeX | Tags: natural history notes, Rana boylii
@article{Kupferberg2021,
title = {Rana Boylii (Foothill Yellow-legged Frog) Reproductive Behavior and Habitat Use},
author = {Sarah J. Kupferberg},
year = {2021},
date = {2021-12-17},
urldate = {2021-12-17},
journal = {Herpetological Review},
volume = {52},
number = {4},
keywords = {natural history notes, Rana boylii},
pubstate = {published},
tppubtype = {article}
}