Open Access Policy Deposits
Parent: Integrative Oceanography Division
eScholarship stats: Breakdown by Item for December, 2024 through March, 2025
Item | Title | Total requests | Download | View-only | %Dnld |
---|---|---|---|---|---|
9dx6x89k | Challenges to the sustainability of deep-seabed mining | 383 | 170 | 213 | 44.4% |
4923w0fc | Energy Flow Through Marine Ecosystems: Confronting Transfer Efficiency | 156 | 9 | 147 | 5.8% |
78p410k2 | Biodiversity loss from deep-sea mining | 134 | 91 | 43 | 67.9% |
730558jh | STATE OF THE CALIFORNIA CURRENT 2015-16: COMPARISONS WITH THE 1997-98 EL NINO | 111 | 31 | 80 | 27.9% |
94h0q8sv | A Global Ocean Oxygen Database and Atlas for Assessing and Predicting Deoxygenation and Ocean Health in the Open and Coastal Ocean | 98 | 2 | 96 | 2.0% |
1569x53m | Taking the "waste" out of "wastewater" for human water security and ecosystem sustainability. | 94 | 75 | 19 | 79.8% |
9f01s42x | A Blueprint for an Inclusive, Global Deep-Sea Ocean Decade Field Program | 93 | 10 | 83 | 10.8% |
4mj5d2pp | Mystery behind Hitchcock's birds | 87 | 33 | 54 | 37.9% |
135407j9 | Reviews and syntheses: Biological Indicators of Oxygen Stress in Water Breathing Animals | 86 | 8 | 78 | 9.3% |
4bv3m5n3 | Turbulence and Coral Reefs. | 83 | 12 | 71 | 14.5% |
01v663tm | Understanding Microbial Community Dynamics in Up-Flow Bioreactors to Improve Mitigation Strategies for Oil Souring | 82 | 5 | 77 | 6.1% |
99r0v3xr | Stage‐specific mortality of Calanus spp. under different predation regimes | 81 | 2 | 79 | 2.5% |
4397d9jn | Integrating Multidisciplinary Observations in Vent Environments (IMOVE): Decadal Progress in Deep-Sea Observatories at Hydrothermal Vents | 80 | 8 | 72 | 10.0% |
0sw3j2md | Marine Genetic Resources in Areas Beyond National Jurisdiction: Promoting Marine Scientific Research and Enabling Equitable Benefit Sharing | 78 | 1 | 77 | 1.3% |
8wd8538k | Modelled connectivity between Walleye Pollock (Gadus chalcogrammus) spawning and age-0 nursery areas in warm and cold years with implications for juvenile survival | 77 | 4 | 73 | 5.2% |
8fg7r73z | Influence of nutrient supply on plankton microbiome biodiversity and distribution in a coastal upwelling region | 75 | 3 | 72 | 4.0% |
1ts499v5 | Body size dependence of euphausiid spatial patchiness | 73 | 2 | 71 | 2.7% |
79p1w0m6 | Relative exposure to microplastics and prey for a pelagic forage fish | 72 | 3 | 69 | 4.2% |
6n50q14s | Annual cycle observations of aerosols capable of ice formation in central Arctic clouds | 71 | 2 | 69 | 2.8% |
5255342w | Ocean commitments under the Paris Agreement | 70 | 56 | 14 | 80.0% |
59w6f850 | Biophysical transport model suggests climate variability determines distribution of Walleye Pollock early life stages in the eastern Bering Sea through effects on spawning | 70 | 9 | 61 | 12.9% |
9qd093rq | Iron limitation of heterotrophic bacteria in the California Current System tracks relative availability of organic carbon and iron. | 69 | 22 | 47 | 31.9% |
9tw814rr | Biological Impacts of the 2013–2015 Warm-Water Anomaly in the Northeast Pacific: Winners, Losers, and the Future | 65 | 32 | 33 | 49.2% |
6ph3g3zz | ENSO impacts on ecosystem indicators in the California Current System | 61 | 21 | 40 | 34.4% |
4707d0pz | BEHAVIORAL-RESPONSES OF ZOOPLANKTON TO PREDATION | 59 | 17 | 42 | 28.8% |
7vb903rd | WTO must ban harmful fisheries subsidies | 58 | 9 | 49 | 15.5% |
27t6h0cs | A comparison of zooplankton sampling methods in the CalCOFI time series | 55 | 43 | 12 | 78.2% |
6bb411mp | From nutrients to fish: Impacts of mesoscale processes in a global CESM-FEISTY eddying ocean model framework | 55 | 22 | 33 | 40.0% |
2mj410kk | Deepening the Decade: Collaborative Action for Advancing Deep‐Ocean Science and Policy in the United Nations Decade of Ocean Science for Sustainable Development | 54 | 10 | 44 | 18.5% |
1jp1f6d2 | From Rain Tanks to Catchments: Use of Low-Impact Development To Address Hydrologic Symptoms of the Urban Stream Syndrome. | 50 | 22 | 28 | 44.0% |
8700382s | Unraveling the functional dark matter through global metagenomics | 50 | 22 | 28 | 44.0% |
1tm4n6vk | The Astrobiology Primer v2.0 | 46 | 24 | 22 | 52.2% |
6hx1k0d2 | Future directions for deep ocean climate science and evidence-based decision making | 46 | 4 | 42 | 8.7% |
2ts8p5d8 | Evaluating the promise and pitfalls of a potential climate change–tolerant sea urchin fishery in southern California | 42 | 6 | 36 | 14.3% |
7zt6r1td | Actions to halt biodiversity loss generally benefit the climate | 42 | 20 | 22 | 47.6% |
2jm9g7cf | Anchovy boom and bust linked to trophic shifts in larval diet. | 41 | 8 | 33 | 19.5% |
3wv262m8 | Digital zooplankton image analysis using the ZooScan integrated system | 40 | 13 | 27 | 32.5% |
5sr4b53n | Effects of Mesoscale Eddies on Southern Ocean Biogeochemistry | 40 | 0 | 40 | 0.0% |
2q045796 | Dinoflagellate vertical migration fuels an intense red tide. | 39 | 9 | 30 | 23.1% |
607435zh | The demographic benefits of diel vertical migration by zooplankton | 39 | 15 | 24 | 38.5% |
6d60q36g | Expansion of the global RNA virome reveals diverse clades of bacteriophages | 39 | 18 | 21 | 46.2% |
10q755vc | Chapter 16 Life history of marine fishes and their implications for the future oceans | 38 | 29 | 9 | 76.3% |
9203g5st | An updated life‐history scheme for marine fishes predicts recruitment variability and sensitivity to exploitation | 37 | 16 | 21 | 43.2% |
0t9944v6 | A faunal inventory of methane seeps on the Pacific margin of Costa Rica | 36 | 0 | 36 | 0.0% |
0w48f05q | Assessment of scientific gaps related to the effective environmental management of deep-seabed mining | 36 | 14 | 22 | 38.9% |
4nh5c3f3 | Demersal fish biomass declines with temperature across productive shelf seas | 36 | 5 | 31 | 13.9% |
5pk9z7h1 | Long-term aging and degradation of microplastic particles: Comparing in situ oceanic and experimental weathering patterns | 36 | 23 | 13 | 63.9% |
65d8f4md | Land Use and Land Cover Shape River Water Quality at a Continental Caribbean Land-Ocean Interface | 36 | 16 | 20 | 44.4% |
3w74b59c | Machine learning techniques to characterize functional traits of plankton from image data | 35 | 1 | 34 | 2.9% |
1f33q562 | A comparison between Zooglider and shipboard net and acoustic mesozooplankton sensing systems | 34 | 4 | 30 | 11.8% |
Note: Due to the evolving nature of web traffic, the data presented here should be considered approximate and subject to revision. Learn more.