Automated Author ProfileJohnson, Vivienne R
Johnson, Vivienne R
Current S-Index
Sum of Dataset Indices for all datasets
Average Dataset Index per Dataset
Average Dataset Index per dataset
Total Datasets
Total datasets for this author
Average FAIR Score
Average FAIR Score per dataset
Total Citations
Total citations to the author's datasets
Total Mentions
Total mentions of the author's datasets
S-Index Interpretation
The S-Index (Sharing Index) is a comprehensive metric that represents the cumulative impact of all your datasets. It is calculated as the sum of Dataset Index scores across all your claimed datasets.
What it means:
- A higher S-index indicates greater overall impact of your datasets relative to typical datasets in their fields of research
- The S-Index grows as you add more datasets or as existing datasets gain more citations and mentions
- It provides a single number to track your research data impact over time
Current S-Index: 5.5 (sum of 10 datasets Dataset Index scores)
More information here.
S-Index Over Time
Cumulative Citations Over Time
Cumulative Mentions Over Time
Datasets
No description available
Authors
- Johnson, Vivienne R ;
- Brownlee, Colin ;
- Rickaby, Rosalind E M ;
- Graziano, M ;
- Milazzo, Marco ;
- Hall-Spencer, Jason M
No description available
Authors
- Johnson, Vivienne R ;
- Brownlee, Colin ;
- Rickaby, Rosalind E M ;
- Graziano, M ;
- Milazzo, Marco ;
- Hall-Spencer, Jason M
The impacts of ocean acidification on coastal biofilms are poorly understood. Carbon dioxide vent areas provide an opportunity to make predictions about the impacts of ocean acidification. We compared biofilms that colonised glass slides in areas exposed to ambient and elevated levels of pCO2 along a coastal pH gradient, with biofilms grown at ambient and reduced light levels. Biofilm production was highest under ambient light levels, but under both light regimes biofilm production was enhanced in seawater with high pCO2. Uronic acids are a component of biofilms and increased significantly with high pCO2. Bacteria and Eukarya denaturing gradient gel electrophoresis profile analysis showed clear differences in the structures of ambient and reduced light biofilm communities, and biofilms grown at high pCO2 compared with ambient conditions. This study characterises biofilm response to natural seabed CO2 seeps and provides a baseline understanding of how coastal ecosystems may respond to increased pCO2 levels.
Authors
- Lidbury, Ian ;
- Johnson, Vivienne R ;
- Hall-Spencer, Jason M ;
- Munn, Colin B ;
- Cunliffe, Michael
No description available
Authors
- Johnson, Vivienne R ;
- Brownlee, Colin ;
- Rickaby, Rosalind E M ;
- Graziano, M ;
- Milazzo, Marco ;
- Hall-Spencer, Jason M
No description available
Authors
- Suggett, David J ;
- Hall-Spencer, Jason M ;
- Rodolfo-Metalpa, Riccardo ;
- Boatman, Toby G ;
- Payton, Ross ;
- Pettay, D Tye ;
- Johnson, Vivienne R ;
- Warner, Mark E ;
- Lawson, Tracy
No description available
Authors
- Suggett, David J ;
- Hall-Spencer, Jason M ;
- Rodolfo-Metalpa, Riccardo ;
- Boatman, Toby G ;
- Payton, Ross ;
- Pettay, D Tye ;
- Johnson, Vivienne R ;
- Warner, Mark E ;
- Lawson, Tracy
Predicting the impacts of ocean acidification on coastal ecosystems requires an understanding of the effects on macroalgae and their grazers, as these underpin the ecology of rocky shores. Whilst calcified coralline algae (Rhodophyta) appear to be especially vulnerable to ocean acidification, there is a lack of information concerning calcified brown algae (Phaeophyta), which are not obligate calcifiers but are still important producers of calcium carbonate and organic matter in shallow coastal waters. Here, we compare ecological shifts in subtidal rocky shore systems along CO2 gradients created by volcanic seeps in the Mediterranean and Papua New Guinea, focussing on abundant macroalgae and grazing sea urchins. In both the temperate and tropical systems the abundances of grazing sea urchins declined dramatically along CO2 gradients. Temperate and tropical species of the calcifying macroalgal genus Padina (Dictyoaceae, Phaeophyta) showed reductions in CaCO3 content with CO2 enrichment. In contrast to other studies of calcified macroalgae, however, we observed an increase in the abundance of Padina spp. in acidified conditions. Reduced sea urchin grazing pressure and significant increases in photosynthetic rates may explain the unexpected success of decalcified Padina spp. at elevated levels of CO2. This is the first study to provide a comparison of ecological changes along CO2 gradients between temperate and tropical rocky shores. The similarities we found in the responses of Padina spp. and sea urchin abundance at several vent systems increases confidence in predictions of the ecological impacts of ocean acidification over a large geographical range.
Authors
- Johnson, Vivienne R ;
- Russell, Bayden D ;
- Fabricius, Katharina Elisabeth ;
- Brownlee, Colin ;
- Hall-Spencer, Jason M
No description available
Authors
- Suggett, David J ;
- Hall-Spencer, Jason M ;
- Rodolfo-Metalpa, Riccardo ;
- Boatman, Toby G ;
- Payton, Ross ;
- Pettay, D Tye ;
- Johnson, Vivienne R ;
- Warner, Mark E ;
- Lawson, Tracy
No description available
Authors
- Suggett, David J ;
- Hall-Spencer, Jason M ;
- Rodolfo-Metalpa, Riccardo ;
- Boatman, Toby G ;
- Payton, Ross ;
- Pettay, D Tye ;
- Johnson, Vivienne R ;
- Warner, Mark E ;
- Lawson, Tracy
No description available
Authors
- Suggett, David J ;
- Hall-Spencer, Jason M ;
- Rodolfo-Metalpa, Riccardo ;
- Boatman, Toby G ;
- Payton, Ross ;
- Pettay, D Tye ;
- Johnson, Vivienne R ;
- Warner, Mark E ;
- Lawson, Tracy