April Robinson's picture

April Robinson

Environmental Scientist
Resilient Landscapes Program
510-746-7344

Bio coming soon.

Related Projects, News, and Events

Delta Landscapes Project (Project)

The Delta Landscapes Project, which began in 2012 and will run through 2016, has developed a body of work to inform landscape-scale restoration of the Sacramento-San Joaquin Delta ecosystem.

California Rapid Assessment Method (CRAM) (Project)

CRAM is a standardized, scientifically defensible rapid assessment method for monitoring the ecological conditions of wetlands throughout California. Because it is standardized, one can compare ecological conditions of wetlands locally, regionally and statewide.

Resilient Silicon Valley (Project)

Drawing on resilience science, regional data, and local expertise, we will develop the vision and tools that will allow stakeholders in the region ensure that local actions contribute toward the creation of a high-functioning and resilient Silicon Valley ecosystem.

SFEI is working with the Santa Clara Valley Water District to develop multi-benefit management tools (News)

In 2014, SFEI and the Santa Valley Water District launched a collaborative partnership aimed at sharing experience, knowledge and resources, and working toward a shared vision of watershed management. Through this partnership, the District has asked SFEI to develop a set of online tools to: 1) identify opportunities for multi-benefit management actions in and along the channels managed by the District; and 2) track the impacts of those actions towards meeting established management targets.

SFEI Scientists collaborate on Building Resilience paper (News)

Erin Beller led the effort to publish this article in BioScience. This important collaborative effort outlines seven important dimensions to consider when attempting ecological restoration in highly modified urban and agricultural landscapes.

North Bay Mercury Biosentinel Monitoring (Project)

In 2011-2014 SFEI and UC Davis developed and implemented a multi-species biosentinel monitoring approach as an effective and efficient way of monitoring methylmercury exposure in wetland restoration projects across the North Bay. The monitoring design for this project was developed with input from a Science Advisory Group (SAG) of regional and national experts and input from local stakeholders, in order to build a design that would address questions of management concern.

Russian River Watershed Projects at the San Francisco Estuary Institute (Project)

Our projects in the Russian River Watershed help us to understand our past, understand our present, and envision our future. Learn more about what SFEI is doing in partnership with others to advance our scientific understanding of this valuable landscape.

Understanding Change in Primary Production at a Landscape Scale in the Delta (Project)

Constraints on primary production and the relative importance of different production sources to the food web remain major uncertainties in the Delta ecosystem. Newly available spatial data developed as part of the Delta Historical Ecology and Delta Landscapes projects make it possible to explore the effects of landscape configuration and hydrodynamics on primary production in a way that was not previously possible. Proposed order-of-magnitude calculations estimating primary production can ‘bookend’ the potential magnitude of production in the Delta, and inform what is possible in terms of restoration and management options.

Santa Clara Valley Water District Priority D5 Project's Watershed Condition Assessments (2010 to 2018) (Project)

SFEI and the Santa Clara Valley Water District's Priority D-5 Project are assessing the distribution and abundance of wetlands, and the overall condition of streams in five major watersheds in Santa Clara County, CA by employing the District's Ecological Monitoring and Assessment Framework that includes BAARI and CRAM.

Announcing the release of Re-Oaking Silicon Valley: Building Vibrant Cities with Nature (News)

Could restoring lost ecosystems to cities play a role in building ecological resilience across landscapes? In Re-oaking Silicon Valley, a new report by SFEI, we explore this opportunity in our region. Both beautiful and functional, native oaks can be excellent choices for streetscapes, backyards, and landscaping. Requiring little water after establishment, oaks can save money by reducing irrigation requirements while sequestering more carbon than most other urban trees common to our region.

Baylands Ecosystem Habitat Goals Project (Project)

SFEI's Letitia Grenier served as lead scientist of the Baylands Ecosystem Habitat Goals Project, which yielded a report called The Baylands and Climate Change: What We Can Do. The report is an update to the 1999 Baylands Ecosystem Habitat Goals, which for the first time set comprehensive restoration goals for the San Francisco Bay estuary. Produced by a collaborative of 21 management agencies working with a multi-disciplinary team of over 100 scientists, it synthesizes the latest science—particularly advances in the understanding of climate change and sediment supply—and incorporates projected changes through 2100 to generate new recommendations for achieving and sustaining healthy baylands ecosystems.

Picture from Google Earth

South Bay Landscape Vision Workshop (News)

On June 7, SFEI, in partnership with the Santa Clara Valley Water District and South Bay Salt Ponds Restoration Project, hosted a landscape “visioning” workshop in San Jose. The goal of the workshop was to develop a resilient, multi-benefit vision highlighting opportunities along the South Bay shoreline for supporting both tidal marsh restoration and flood management.

SFEI work on Landscape Resilience and Urban Biodiversity featured in Google Blog and Fast Company Story (News)

Our partnership with Google to enhance the ecological resilience of urban landscapes is featured in a story by Fast Company, a Google Blog post, and an accompanying video.

"A Delta Renewed" report released at the 2016 Bay-Delta Science Conference (News)

The San Francisco Estuary Institute (SFEI) released A Delta Renewed – A Guide to Science-Based Ecological Restoration in the Sacramento-San Joaquin Delta.

South Baylands Mercury Project (SBMP) (Project)

We have developed biosentinel species indicators for wetlands to help the SBMP management team make decisions relative to mercury risk about where and how to restore salt ponds to wetlands. 2008 was the third and last year of a project to characterize and monitor bio-available mercury and its uptake into local food webs of the South Bay managed ponds and intertidal habitats, focusing initially on Pond A8 and Alviso Slough. Results indicated that this approach can be used to guide management decisions about wetlands restoration locations.

Montezuma Technical Review Team (Project)

The Montezuma wetland restoration project is returning ~2,000 acres of diked baylands to tidal, seasonal, and managed wetlands in an eastern portion of Suisun Bay near the town of Collinsville, California in Solano County.

Tahoe WRAMP Demonstration: Watershed Assessment (Project)

The Tahoe WRAMP Watershed Demontration Project transfered statewide wetland monitoring and asseement tools to Sierra Nevada environmental agencies and organizations through a pilot project that assessed the distribution and abundance of wetlands, and the overall ecologcial condition of streams in two watersheds within the Lake Tahoe Basin.

Santa Rosa Plain Wetlands Profile: A Demonstration of WRAMP (Project)

The Santa Rosa Plain WRAMP project demonstrated the use of the State’s standardized monitoring and assessment tools in a North Coast watershed setting and described how the results can support watershed based management and planning decisions to protect and manage the state’s wetlands at a landscape scale. 

California Rapid Assessment Method (CRAM): Bar-Built Estuarine Wetlands (Project)

 The CRAM Bar-Built Estuarine module is used for assessing reaches of coastal rivers and streams that are ecologically influenced by seasonal closures of their tidal inlets. 

California Rapid Assessment Method (CRAM): Slope Wetlands (Project)

CRAM is a cost-effective and scientifically defensible rapid assessment method for monitoring and assessing the ecologcial conditions of wetlands throughout California. It takes less than half a day to assess a wetland area, and is designed evaluate the condition of the wetland based on it's landscape setting, hydrology, physical structure and biological structure.  Because the methodology is standardized for over seven types of wetlands, ecological condition scores can be compared at the local, regional and statewide landscape scales.