91 results
Environment
PROJECT NUMBER • 2012-027
PROJECT STATUS:
COMPLETED

Determining when and where to fish: Linking scallop spawning, settlement, size and condition to collaborative spatial harvest and industry in-season management strategies

Spatially explicit harvest strategies employed in the southeast Australian commercial scallop fisheries aim to buffer against recruitment variation to increase both production and continuity between seasons. As part of these harvest strategies, biomass surveys determine areas to be opened the...
ORGANISATION:
University of Tasmania (UTAS)
Environment
PROJECT NUMBER • 2011-039
PROJECT STATUS:
COMPLETED

FRDC-DCCEE: preparing fisheries for climate change: identifying adaptation options for four key fisheries in South Eastern Australia

Over the next century, the marine ecosystems of south-eastern Australia are expected to exhibit some of the largest climate-driven changes in the Southern Hemisphere. The effects of these changes on communities and businesses will depend, in part, on how well fishing industries and resource managers...
ORGANISATION:
University of Tasmania (UTAS)
SPECIES
Environment
Environment
PROJECT NUMBER • 2004-071
PROJECT STATUS:
COMPLETED

National Strategy for the Survival of Released Line Caught Fish: maximising post-release survival of line caught flathead taken in sheltered coastal waters

Flathead represent the largest catch of any fish group taken by recreational fishers in Australia and, after bream, account for the greatest numbers of fish released by recreational fishers (National Recreational Fishing Survey). Flathead are taken around Australia, with catches concentrated...
ORGANISATION:
University of Tasmania (UTAS)
Adoption
Blank
PROJECT NUMBER • 2009-719
PROJECT STATUS:
COMPLETED

SCRC: SCRC RTG: Dr Barbara Nowak "Research exchange to the University of Edinburgh and the University of Stirling"

The purpose of this travel grant was to conduct collaborative research to: Investigate gene expression in early amoebic gill disease (AGD), including gene expression in different cell types to investigate AGD pathogenesis using metabonomics and assess further applications of metabonomics to...
ORGANISATION:
University of Tasmania (UTAS)
Environment
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