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Live fish movement is considered as having an important role in the transmission of infectious diseases.
Estuarine barriers to fish movement have received less attention than riverine barriers in regards to refinement of fish passage.
Swimming patterns, presented as two-dimensional heat maps of fish movement and positioning, were obtained by geostatistical analyses.
If culverts built today cannot accommodate future channel conditions, then climate change could indirectly create barriers to fish movement and consequent loss of fish habitats.
In conclusion, using a Markov chain analysis of fish movement data, we were able to describe and quantify the FEZ of the sluiceway at The Dalles dam.
To map the FEZ, we applied a Markov chain analysis to fish movement data collected with an active fish tracking sonar.
The details of the topography were highly important in channeling fish movements and creating spatiotemporal patterns of fish movement and stranding.
Road crossings at rivers or streams are known to create barriers to fish movement when they are improperly designed or constructed.
In aquatic systems, in-stream structures such as dams, weirs and road crossings can act as barriers to fish movement along waterways.
These analyses were effective for detecting scales of periodicity, trends, and discontinuities in the distribution of species in relation to tributary junctions and obstacles to fish movement.
Similar(1)
It is a difficult subject to study, especially biologically, yet turbulence may affect fish movements and fish passage efficiency.
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