Results 191 to 200 of about 1,198,736 (251)

Macroalgae and Bivalve Interactions: A Review of Trophic and Feeding Studies to Assess the Contribution of Macroalgal Detritus to Bivalves

open access: yesReviews in Aquaculture, Volume 18, Issue 4, September 2026.
ABSTRACT There is growing interest in the co‐culture of macroalgae and filter‐feeding bivalves due to anticipated trophic benefits that may enhance the productivity of both organisms. Detritus from cultured macroalgae has the potential to supplement bivalve diets, yet few studies have directly examined this relationship in co‐culture systems.
Fiona P. MacKechnie, Andrew G. Jeffs
wiley   +1 more source

Commercially Exploited Seaweed Species in Africa: Occurrences, Chemical Composition, Current Value Chain and Opportunities for Value Addition

open access: yesReviews in Aquaculture, Volume 18, Issue 4, September 2026.
Commercially exploited seaweed species in Africa, their biochemical composition, current uses, and value chain are reviewed. Potential value‐addition of seaweed is suggested regionally in Africa amongst countries producing similar seaweed species. ABSTRACT Africa has a wide range of coastal environments that support a diverse array of seaweed species ...
Mondli Abednicko Masanabo   +6 more
wiley   +1 more source

Hydrological restoration of coastal wetlands: optimizing site selection and implementation strategies

open access: yesRestoration Ecology, Volume 34, Issue 7, September 2026.
Abstract Introduction Coastal wetlands, despite their importance in providing ecosystem services like carbon sequestration, water quality improvement, and coastal protection, have suffered extensive degradation and loss in the past two centuries. Hydrological restoration of these degraded ecosystems presents an emerging opportunity for mitigating and ...
Aushij Gupta   +3 more
wiley   +1 more source

Intertidal pools as alternative nursery habitats for coastal fishes

open access: yes, 2016
M. Dias   +6 more
semanticscholar   +1 more source

Time and tide wait for no fish: intertidal fishes out of water

Environmental Biology of Fishes, 1995
Hypoxic conditions are rare in the open ocean, but may occur during low tides in tidepools. Intertidal fishes respond to low tides in a variety of ways, including avoiding the intertidal zone during low tides, respiring in the well-oxygenated layer at the surface of the water, or simply tolerating hypoxic water. A number of intertidal fish species have
Karen Martin
exaly   +3 more sources

Intertidal Fishes

Encyclopedia of Ocean Sciences, 2019
R. Gibson
exaly   +3 more sources

Tropical intertidal seagrass beds: An overlooked foraging habitat for fishes revealed by underwater videos

Journal of Experimental Marine Biology and Ecology, 2020
Intertidal seagrass beds occur throughout the tropical Indo-Pacific region and several studies have shown that small fishes inhabit them when inundated during the tidal regime.
Yohei Nakamura   +2 more
exaly   +2 more sources

Theme and variations: amphibious air-breathing intertidal fishes.

Journal of Fish Biology, 2014
Over 70 species of intertidal fishes from 12 families breathe air while emerging from water. Amphibious intertidal fishes generally have no specialized air‐breathing organ but rely on vascularized mucosae and cutaneous surfaces in air to exchange both oxygen and carbon dioxide. They differ from air‐breathing freshwater fishes in morphology, physiology,
K. L. Martin
semanticscholar   +3 more sources

8 - Osmoregulation in Estuarine and Intertidal Fishes

, 2012
Intertidal and estuarine fishes stand out among euryhaline fishes because of their physiological plasticity in response to frequent salinity changes and other environmental challenges, including polar ice and tropical heat. Examples are the northern killifish and tropical Nile tilapia.
W. S. Marshall
semanticscholar   +2 more sources

Intertidal fishes : life in two worlds

Copeia, 1999
K.L.M. Martin, M.A. Chotkowski, and M.H. Horn, Introduction. R.N. Gibson, Methods for Studying Intertidal Fishes. C.D. Zander, J. Nieder, and K.L.M. Martin, Vertical Distribution Patterns. K.L.M. Martin and C.R. Bridges, Respiration in Air and Water. D.H. Evans, J.B. Claiborne, and G.A.
M. Horn, K. Martin, M. Chotkowski
semanticscholar   +3 more sources

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