It is widely assumed that phytoplankton abundance and productivity decline during temperate winters because of low irradiance and temperatures. However, winter phytoplankton blooms commonly occur in temperate estuaries, but they are often undocumented because of reduced water quality monitoring in winter. The small body of in situ work that has been done on winter blooms suggests they can be of enormous consequence to ecosystems. However, because monitoring is often reduced or stopped altogether during winter, it is unclear how widespread these blooms are or how long they can last. We analyzed an over 30-year record of monthly phytoplankton monitoring samples along with ad hoc sampling throughout Chesapeake Bay to assess the distributions o...
Algal blooms occur throughout the year in the tidal tributaries of Chesapeake Bay. The James River i...
The photosynthetic ciliate Mesodinium rubrum is a common member of coastal phytoplankton communities...
Variable climatic conditions strongly influence phytoplankton dynamics in estuaries globally. Our st...
It is widely assumed that phytoplankton abundance and productivity decline during temperate winters ...
It is widely assumed that phytoplankton abundance and productivity decline during temperate winters ...
Algal blooms occur seasonally in the Chesapeake Bay and its tributaries, and while the consequences ...
Sporadic algal bloom development within a 10 year monitoring program in Virginia tidal tributaries o...
Sporadic algal bloom development within a 10 year monitoring program in Virginia tidal tributaries o...
Monthly and annual phytoplankton productivity rates of four Virginia tidal rivers were determined ba...
Monthly and annual phytoplankton productivity rates of four Virginia tidal rivers were determined ba...
A multi-year study was conducted in the eutrophic Lafayette River, a sub-tributary of the lower Ches...
The influence of bottom-up and top-down controls on the formation and persistence of phytoplankton b...
Based on a continuous 20-year data base ofmonthly sampling in Chesapeake Bay and tidal regions of it...
Heterocapsa rotundata is a dinoflagellate species that is known to form winter blooms in coastal and...
Algal blooms are dynamic phenomena, often attributed to environmental parameters that vary on short ...
Algal blooms occur throughout the year in the tidal tributaries of Chesapeake Bay. The James River i...
The photosynthetic ciliate Mesodinium rubrum is a common member of coastal phytoplankton communities...
Variable climatic conditions strongly influence phytoplankton dynamics in estuaries globally. Our st...
It is widely assumed that phytoplankton abundance and productivity decline during temperate winters ...
It is widely assumed that phytoplankton abundance and productivity decline during temperate winters ...
Algal blooms occur seasonally in the Chesapeake Bay and its tributaries, and while the consequences ...
Sporadic algal bloom development within a 10 year monitoring program in Virginia tidal tributaries o...
Sporadic algal bloom development within a 10 year monitoring program in Virginia tidal tributaries o...
Monthly and annual phytoplankton productivity rates of four Virginia tidal rivers were determined ba...
Monthly and annual phytoplankton productivity rates of four Virginia tidal rivers were determined ba...
A multi-year study was conducted in the eutrophic Lafayette River, a sub-tributary of the lower Ches...
The influence of bottom-up and top-down controls on the formation and persistence of phytoplankton b...
Based on a continuous 20-year data base ofmonthly sampling in Chesapeake Bay and tidal regions of it...
Heterocapsa rotundata is a dinoflagellate species that is known to form winter blooms in coastal and...
Algal blooms are dynamic phenomena, often attributed to environmental parameters that vary on short ...
Algal blooms occur throughout the year in the tidal tributaries of Chesapeake Bay. The James River i...
The photosynthetic ciliate Mesodinium rubrum is a common member of coastal phytoplankton communities...
Variable climatic conditions strongly influence phytoplankton dynamics in estuaries globally. Our st...