Dear MARMAM community,

My co-authors and I are pleased to share our recent Open Access publication in 
Aquatic Conservation: Marine and Freshwater Ecosystems:

Findlay, C.R., Hastie, G.D., Farcas, A., Merchant, N.D., Risch, D., & Wilson, 
B. (2022). Exposure of individual harbour seals (Phoca vitulina) and waters 
surrounding protected habitats to acoustic deterrent noise from aquaculture. 
Aquatic Conservation: Marine and Freshwater Ecosystems.
https://doi.org/10.1002/aqc.3800

Abstract:

  1.  Pinniped depredation at aquaculture sites is a globally recognized 
problem. To mitigate depredation, the aquaculture sector uses acoustic 
deterrent devices (ADDs) as a non-lethal alternative to shooting pinnipeds 
interacting with caged finfish. However, it is unclear whether sound emissions 
from ADDs have the potential to also impact non-target pinnipeds at spatial 
scales relevant to populations.
  2.  Global Positioning System (GPS) tracking data from seven harbour seals 
tagged in a non-aquaculture context, on the west coast of Scotland, in 2017 
were combined with modelled maps of ADD noise to quantify sound exposure and 
estimate the potential for auditory impairment. The acoustic model applied an 
energy flux approach across the main frequency range of ADDs (2–40 kHz). 
Predictions of temporary and permanent auditory threshold shifts were made 
using seal location data and published noise exposure criteria. The acoustic 
exposure of waters (10-km buffers) surrounding protected habitats (i.e. 
designated haul outs and Special Areas of Conservation (SACs)) on the west 
coast of Scotland was also assessed.
  3.  All tagged seals and waters surrounding 51 of 56 protected sites were 
predicted to be exposed to ADD noise exceeding median ambient sound levels. 
Temporary auditory impairment was predicted to occur in one of the seven tagged 
harbour seals and across 1.7% of waters surrounding protected habitats over a 
24-hour period, when assuming a 100% ADD duty cycle.
  4.  Although the predicted risk of auditory impairment appears to be 
relatively low, these findings suggest that harbour seals inhabiting inshore 
waters off western Scotland are routinely exposed to ADD noise that exceeds 
median ambient sound levels. This chronic exposure risks negative consequences 
for individual harbour seals among the wider population in this region. The use 
of ADDs to mitigate pinniped depredation should be carefully considered to 
reduce unintended habitat-wide impacts on non-target species, including 
pinnipeds that are not specifically interacting with aquaculture.

The full article is available open access at: 
https://onlinelibrary.wiley.com/doi/full/10.1002/aqc.3800

Please feel free to contact us with any questions.

Best wishes,

Charlotte Findlay
----------------------------------------
Postdoctoral Research Fellow,
Marine Bioacoustics Lab<http://www.marinebioacoustics.com/>
Zoophysiology - Department of Biology
Aarhus University
C.F. Møllers Allé 3, Building 1130
8000 Aarhus C, Denmark

Email: [email protected] / [email protected]
Twitter: @chazz_findlay

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