[161] |
|
Nanopore sequencing of microbial communities reveals the potential role of sea lice as a reservoir for fish pathogens |
Scientific reports |
2020 |
[162] |
|
Trends in de-lousing of Norwegian farmed salmon from 2000-2019-Consumption of medicines, salmon louse resistance and non-medicinal control methods |
PloS one |
2020 |
[163] |
|
Effect of handling and crowding on the susceptibility of Atlantic salmon (Salmo salar L.) to Lepeophtheirus salmonis (Krøyer) copepodids |
Journal of fish diseases |
2020 |
[164] |
|
Host gill attachment causes blood-feeding by the salmon louse (Lepeophtheirus salmonis) chalimus larvae and alters parasite development and transcriptome |
Parasites & vectors |
2020 |
[165] |
|
Effect of cleaner fish on sea lice in Norwegian salmon aquaculture: a national scale data analysis |
International journal for parasitology |
2020 |
[166] |
|
Anti-chemotactic activity in the secretory/excretory products of Lepeophtheirus salmonis |
Fish & shellfish immunology |
2020 |
[167] |
|
Transcriptomic Profiling in Fins of Atlantic Salmon Parasitized with Sea Lice: Evidence for an Early Imbalance Between Chalimus-Induced Immunomodulation and the Host's Defense Response |
International journal of molecular sciences |
2020 |
[168] |
|
Effects of laboratory salmon louse infection on osmoregulation, growth and survival in Atlantic salmon |
Conservation physiology |
2020 |
[169] |
|
Investigation of deltamethrin resistance in salmon lice (Lepeophtheirus salmonis) provides no evidence for roles of mutations in voltage-gated sodium channels |
Pest management science |
2020 |
[170] |
|
Simulating crude oil exposure, uptake and effects in North Atlantic Calanus finmarchicus populations |
Marine environmental research |
2020 |