Affiliation:
1. Southern Shark Ecology Group, College of Science and Engineering, Flinders University, Adelaide, Australia
2. Fox Shark Research Foundation, Adelaide, South Australia, Australia
3. Global Ecology, College of Science and Engineering, Flinders University, Adelaide, Australia
Abstract
The number of shark-human interactions and shark bites per capita has been increasing since the 1980s, leading to a rise in measures developed to mitigate the risk of shark bites. Yet many of the products commercially available for personal protection have not been scientifically tested, potentially providing an exaggerated sense of security to the people using them. We tested five personal shark deterrents developed for surfers (Shark Shield Pty Ltd[Ocean Guardian]Freedom+ Surf, Rpela, SharkBanz bracelet, SharkBanz surf leash,andChillax Wax) by comparing the percentage of baits taken, distance to the bait, number of passes, and whether a shark reaction could be observed. We did a total of 297 successful trials at the Neptune Islands Group Marine Park in South Australia, during which 44 different white sharks (Carcharodon carcharias) interacted with the bait, making a total of 1413 passes. The effectiveness of the deterrents was variable, with theFreedom+ Surfaffecting shark behaviour the most and reducing the percentage of bait taken from 96% (relative to the control board) to 40%. The mean distance of sharks to the board increased from 1.6 ± 0.1 m (control board) to 2.6 ± 0.1 m when theFreedom Surf+was active. The other deterrents had limited or no measureable effect on white shark behavour. Based on our power analyses, the smallest effect size that could be reliably detected was ∼15%, which for the first time provides information about the effect size that a deterrent study like ours can reliably detect. Our study shows that deterrents based on similar principles—overwhelming a shark’s electroreceptors (the ampullae of Lorenzini) with electrical pulses—differ in their efficacy, reinforcing the need to test each product independently. Our results will allow private and government agencies and the public to make informed decisions about the use and suitability of these five products.
Funder
New South Wales Department of Primary Industries Shark Management Strategy (SMS) Competitive Annual Grants Program
Government of South Australia
Ocean Guardian Pty Ltd
Neiser Foundation
Subject
General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience
Reference45 articles.
1. Inferring trends and linkages between shark abundance and shark bites on humans for shark-hazard mitigation;Afonso;Marine and Freshwater Research,2017
2. Shark repellent: not yet, maybe never;Baldridge;Military Medecine,1990
3. The repulsive and feeding-deterrent effects of electropositive metals on juvenile sandbar sharks (Carcharhinus plumbeus);Brill;Fisheries Bulletin,2009
4. Factors contributing to shark attacks on humans: a Volusia County, Florida, case study;Burgess,2010
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