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Aquatic Noise Pollution: Implications for Individuals, Populations and Ecosystems
Kunc HP, McLaughlin KE, and Schmidt R
ESM 1. Studies investigating the effect of noise pollution on aquatic organisms. Studies were derived from a web of science search in June 2016 using the terms
"noise" and "invertebrate", or "reptile", or "fish", or "mammal". This search returned more than 2500 studies, each of which was screened. Those studies which do
not address aquatic noise pollution have been omitted, leading to the inclusion of 134 studies. The effect of noise (“yes” or “no”) was assigned according to the
statistical significance of any analysed parameter. Within a lineage, we compared the number of studies that found an effect with the number of studies that did not
using chi-square tests. Note: There could be a publication bias, because signficant results may be more likely to be published than non-signifcant results. However,
if anthropogenic noise would not have any effect, we would not expect to find any studies reporting a significant effect of noise.
Study
Title
Journal
Study species
Lineage
Effect of noise
Aguilar de Soto et al. 2013
Anthropogenic noise causes body
malformations and delays development in
marine larvae
Diversity in noise-induced temporary hearing
loss in otophysine fishes
Sci. Rep. 3, 2831.
Pecten novaezelandiae
invertebrate
yes
J. Acoust. Soc. Am. 113, 2170-2179.
Carassius auratus
fish
yes
Amoser & Ladich 2003
Diversity in noise-induced temporary hearing
loss in otophysine fishes
J. Acoust. Soc. Am. 113, 2170-2179.
Pimelodus pictus
fish
yes
Anderson et al. 2011
Sound, stress, and seahorses: The
consequences of a noisy environment to
animal health
Swimming behavior of roach (Rutilus rutilus)
and three-spined stickleback (Gasterosteus
aculeatus) in response to wind power noise
and single-stone frequencies
Swimming behavior of roach (Rutilus rutilus)
and three-spined stickleback (Gasterosteus
aculeatus) in response to wind power noise
and single-stone frequencies
Displacement responses of a mysticete, an
odontocete, and a phocid seal to
construction-related vessel traffic
Displacement responses of a mysticete, an
odontocete, and a phocid seal to
construction-related vessel traffic
Displacement responses of a mysticete, an
odontocete, and a phocid seal to
construction-related vessel traffic
Aquaculture. 311, 129-138.
Hippocampus erectus
fish
yes
Ambio. 36, 636-638.
Rutilus rutilus
fish
yes
Ambio. 36, 636-638.
Gasterosteus aculeatus
fish
yes
Endanger. Species. Res. 21, 231-240.
Balaenoptera acutorostrata
mammal
yes
Endanger. Species Res. 21, 231-240.
Tursiops truncatus
mammal
yes
Endanger. Species Res. 21, 231-240.
Halichoerus grypus
mammal
yes
Amoser & Ladich 2003
Andersson et al. 2007
Andersson et al. 2007
Anderwald et al. 2013
Anderwald et al. 2013
Anderwald et al. 2013
Andrews et al. 2014
Antunes et al. 2015
Belanger et al. 2010
Berthe & Lecchini 2016
Blackwell et al. 2015
Blackwell et al. 2013
Bolle et al. 2012
Bracciali et al. 2012
Brandt et al. 2011
Branstetter et al. 2013
Bruintjes & Radford 2014
Bruintjes & Radford 2013
Buckstaff 2004
Buckstaff et al. 2013
Buscaino et al. 2010
Identification of a gene set to evaluate the
potential effects of loud sounds from seismic
surveys on the ears of fishes: a study with
Salmo salar
High thresholds for avoidance of sonar by
free-ranging long-finned pilot whales
(Globicephala melas)
The effect of stimulus type and background
noise on hearing abilities of the round goby
Neogobius melanostomus
Influence of boat noises on escape behaviour
of white-spotted eagle ray Aetobatus ocellatus
at Moorea Island (French Polynesia)
Effects of Airgun Sounds on Bowhead Whale
Caling Rates. Evidence for Two Behavioral
Thresholds
Effects of airgun sounds on bowhead whale
calling rates in the Alaskan Beaufort Sea
J. Fish. Biol. 84, 1793-1819.
Salmo salar
fish
yes
Mar. Poll. Bull. 83, 165-180.
Globicephala melas
mammal
yes
J. Fish Biol. 77, 1488-1504.
Neogobius melanostomus
fish
yes
Comptes Renus Biologies. 339, 99-103.
Aetobantus acellatus
fish
yes
Plos ONE. 10, e0125720.
Baleana mysticetus
mammal
yes
Mar. Mamm. Sci. 29, E342-365.
Baleana mysticetus
mammal
yes
Common Sole Larvae Survive High Levels of
Pile-Driving Sound in Controlled Exposure
Experiments
Effects of Nautical Traffic and Noise on
Foraging Patterns of Mediterranean
Damselfish (Chromis chromis)
Responses of harbour porpoises to pile driving
at the Horns Rev II offshore wind farm in the
Danish North Sea
Auditory masking patterns in bottlenose
dolphins (Tursiops truncatus)with natural,
anthropogenic, and synthesized noise
Chronic playback of boat noise does not
impact hatching success or post-hatching
larval growth and survival in a cichlid fish
Context-dependent impacts of anthropogenic
noise on individual and social behaviour in a
cooperatively breeding fish
Effects of watercraft noise on the acoustic
behaviour of bottlenose dolphins (Tursiops
truncatus) ind Sarasota Bay, Florida
Responses of Bottlenose Dolphins (Tursiops
truncatus) to Construction and Demolition of
Coastal Marine Structures
Impact of an acoustic stimulus on the motility
and blood parameters of European sea bass
(Dicentrarchus labrax L.) and gilthead sea
bream (Sparus aurata L.)
Plos ONE. 7, e33052.
Solea solea
fish
no
PlOS ONE. 7, e40582.
Chromis chromis
fish
yes
Mar Ecol Progr Ser. 421, 205-216.
Phocoena phocoena
mammal
yes
J Acoust Soc Am. 133, 1811-1818.
Tursiops aduncus
mammal
yes
PeerJ. 2, e594.
Neolamprologus pulcher
fish
yes
Anim. Behav. 85, 1343-1349.
Neolamprologus pulcher
fish
yes
Mar. Mamm. Sci. 20, 709-725.
Tursiops truncatus
mammal
yes
Aquat. Mamm. 39, 174-186.
Tursiops truncatus
mammal
yes
Mar. Environm. Res. 69, 136-142.
Dicentrarchus labrax
fish
yes
Buscaino et al. 2010
Castellote et al. 2012
Celi et al. 2016
Cerchio et al. 2014
Codarin et al. 2009
Codarin et al. 2009
Codarin et al. 2009
Croll et al. 2001
Croll et al. 2001
Crovo et al. 2015
Dähne et al. 2013
Day et al. 2016
Debusschere et al. 2014
DeRuiter et al. 2013
DeRuiter et al. 2013
Impact of an acoustic stimulus on the motility
and blood parameters of European sea bass
(Dicentrarchus labrax L.) and gilthead sea
bream (Sparus aurata L.)
Acoustic and behavioural changes by fin
whales (Balaenoptera physalus) in response to
shipping and airgun noise
Vessel noise pollution as a human threat to
fish: assessment of the stress response in
gilthead sea bream (Sparus aurata, Linnaeus
1758)
Seismic Surveys Negatively Affect Humpback
Whale Singing Activity off Northern Angola
Effects of ambient and boat noise on hearing
and communication in three fish species living
in a marine protected area (Miramare, Italy)
Effects of ambient and boat noise on hearing
and communication in three fish species living
in a marine protected area (Miramare, Italy)
Effects of ambient and boat noise on hearing
and communication in three fish species living
in a marine protected area (Miramare, Italy)
Effect of anthropogenic low-frequency noise
on the foraging ecology of Balaenoptera
whales
Effect of anthropogenic low-frequency noise
on the foraging ecology of Balaenoptera
whales
Stress and Auditory Responses of the
Otophysan Fish, Cyprinella venusta, to Road
Mar. Environm. Res. 69, 136-142.
Sparus aurata
fish
yes
Biol. Cons. 147, 115-122.
Balaenoptera physalus
mammal
yes
Fish. Physiol. Biochem. 42, 631-641.
Sparus aurata
fish
yes
Plos ONE. 9, e86464.
Megaptera novaeanglia
mammal
yes
Mar. Poll. Bull. 58, 1880-1887.
Chromis chromis
fish
yes
Mar. Poll. Bull. 58, 1880-1887.
Gobius cruentatus
fish
yes
Mar. Poll. Bull. 58, 1880-1887.
Sciaena umbra
fish
yes
Anim. Cons. 4, 13-27.
Balaenoptera musculus
mammal
no
Anim. Cons. 4, 13-27.
Balaenoptera physalus
mammal
no
Plos ONE. 10, e0137290.
Cyprinella venusta
fish
yes
Effects of pile-driving on harbour porpoises
(Phocoena phocoena) at the first offshore
wind farm in Germany
Seismic air gun exposure during early-stage
embryonic affect spiny lobster Jasis edwardsii
larvae (Decapoda: Palinuridae)
In Situ Mortality Experiments with Juvenile
Sea Bass (Dicentrarchus labrax) in Relation to
Impulsive Sound Levels Caused by Pile Driving
of Windmill Foundations
First direct measurements of behavioural
responses by Cuvier's beaked whales to midfrequency active sonar
Delphinid whistle production and call
matching during playback of simulated
military sonar
Environ. Res. Lett. 8, 25002.
Phocoena phocoena
mammal
yes
Sci. Rep. 6, 22723.
Jasus edwardsii
invertebrate
no
Plos ONE. 9, e109280.
Dicentrarchus labrax
fish
no
Biol. Lett. 9, 20130223.
Ziphius cavirostris
mammal
yes
Mar. Mamm. Sci. 29, E46-E59.
Pseudorca crassidens
mammal
yes
DeRuiter et al. 2013
Delphinid whistle production and call
matching during playback of simulated
military sonar
Delphinid whistle production and call
matching during playback of simulated
military sonar
Exposure to seismic survey alters blue whale
acoustic communication
Behavior of captive herring exposed to naval
sonar transmissions (1.0-1.6 kHz) throughout
a yearly cycle
The effect of vessel noise on humpback whale,
Megaptera novaeangliae, communication
behaviour
The Behavioural Response of Humpback
Whales (Megaptera novaeangliae) to a 20
Cubic Inch Air Gun
Multivariate analysis of behavioural response
experiments in humpback whales (Megaptera
novaeangliae)
Harbour porpoises react to low levels of high
frequency vessel noise
Mar. Mamm. Sci. 29, E46-E59.
Peponocephala electra
mammal
yes
Mar. Mamm. Sci. 29, E46-E59.
Globicephala macrorhynchus
mammal
no
Biol. Lett. 6, 51-54.
Balaenoptera musculus
mammal
yes
J. Acoust. Soc. Am. 131, 1632-1342.
Clupea haerengus
fish
no
Anim. Behav. 111, 13-21.
Megaptera novaeanglia
mammal
yes
Aquat. Mamm. 41, 412-433.
Megaptera novaeanglia
mammal
yes
J. Exp. Biol. 216, 759-770.
Megaptera novaeanglia
mammal
yes
Sci. Rep. 5, 11083.
Phocoena phocoena
mammal
yes
Fewtrell & McCauley 2012
Impact of air gun noise on the behaviour of
marine fish and squid
Mar. Poll. Bull. 64, 984-993.
Pseudocaranx dentex
fish
yes
Fewtrell & McCauley 2012
Impact of air gun noise on the behaviour of
marine fish and squid
Mar. Poll. Bull. 64, 984-993.
Pagrus auratus
fish
yes
Fewtrell & McCauley 2012
Impact of air gun noise on the behaviour of
marine fish and squid
Mar. Poll. Bull. 64, 984-993.
Sepioteuthis australis
invertebrate
yes
Filiciotto et al. 2016
Underwater noise from boats: Measurement
of its influence on the behaviour and
biochemistry of the common prawn
(Palaemon serratus, Pennant1777)
Effect of acoustic environment on gilthead sea
bream (Sparus aurata): Sea and onshore
aquaculture background noise
Do pingers cause stress in fish? An
experimental tank study with European
sardine, Sardina pilchardus (Walbaum, 1792)
(Actinopterygii, Clupeidae), exposed to a 70
kHz dolphin pinger
Blue whales respond to simulated midfrequency military sonar
J. Exp. Mar. Biol. Ecol. 478, 24-33.
Palaemon serratus
invertebrate
yes
Aquaculture. 414, 36-45.
Sparus aurata
fish
yes
Hydrobiologia. 749, 83-96.
Sardinia pilchardus
fish
yes
Proc. R. Soc. Lond. B. 280, 20130657.
Balaenoptera musculus
mammal
yes
The effects of noise disturbance from various
recreational boating activities common to
inland waters on the cardiac physiology of a
Aquat. Conserv.: Mar. Freshw. Ecosyst. 18, 1315-1324.
Micropterus salmoides
fish
yes
DeRuiter et al. 2013
Di Iorio & Clark 2010
Doksaeter et al. 2012
Dunlop 2016
Dunlop et al. 2015
Dunlop et al. 2013
Dyndo et al. 2015
Filiciotto et al. 2013
Goetz et al. 2015
Goldbogen et al. 2013
Graham & Cooke 2008
Halvorsen et al. 2013
Halvorsen et al. 2013
freshwater fish, the largemouth bass
(Micropterus salmoides)
Effects of low-frequency naval sonar exposure
on three species of fish
Effects of low-frequency naval sonar exposure
on three species of fish
J. Acoust. Soc. Am. 134, EL205-EL210.
Ictalurus punctatus
fish
yes
J. Acoust. Soc. Am. 134, EL205-EL210.
Perca flavescens
fish
no
Halvorsen et al. 2013
Effects of low-frequency naval sonar exposure
on three species of fish
J. Acoust. Soc. Am. 134, EL205-EL210.
Micropterus salmoides
fish
no
Halvorsen et al. 2012
Threshold for Onset of Injury in Chinook
Salmon from Exposure to Impulsive Pile
Driving Sounds
Boat noise disrupts orientation behaviour in a
coral reef fish
Plos ONE. 7, e38968.
Oncorhynchus tshawytscha
fish
yes
Mar. Ecol. Progr. Ser. 485, 295-300.
Apogon doryssa
fish
yes
Holt et al. 2011
Effects of noise levels and call types on the
source levels of killer whale calls
J. Acoust. Soc. Am. 130, 3100-3106.
Orcinus orca
mammal
yes
Houser et al. 2013
Behavioral responses of California sea lions to
mid-frequency (3250e3450 Hz) sonar signals
Mar. Environm. Res. 92, 268-278.
Zalophus californianus
mammal
no
Jacobsen et al. 2014
Effect of boat noise and angling on lake fish
behaviour
J. Fish Biol. 84, 1768-1780.
Rutilus rutilus
fish
yes
Jacobsen et al. 2014
Effect of boat noise and angling on lake fish
behaviour
J. Fish Biol. 84, 1768-1780.
Perca fluviatilis
fish
yes
Jacobsen et al. 2014
Effect of boat noise and angling on lake fish
behaviour
J. Fish Biol. 84, 1768-1780.
Esox lucius
fish
no
Jung & Swearer 2011
Reactions of temperate reef fish larvae to
boat sound
Aquat. Conserv.: Mar. Freshw. Ecosyst. 21, 389-396.
Tripterygiidae
fish
yes
Jung & Swearer 2011
Reactions of temperate reef fish larvae to
boat sound
Aquat. Conserv.: Mar. Freshw. Ecosyst. 21, 389-396.
Engraulis australis
fish
no
Jung & Swearer 2011
Reactions of temperate reef fish larvae to
boat sound
Aquat. Conserv.: Mar. Freshw. Ecosyst. 21, 389-396.
Hemiramphus robustus
fish
no
Jung & Swearer 2011
Reactions of temperate reef fish larvae to
boat sound
Aquat. Conserv.: Mar. Freshw. Ecosyst. 21, 389-396.
Chrysophrys auratus
fish
no
Jung & Swearer 2011
Reactions of temperate reef fish larvae to
boat sound
Aquat. Conserv.: Mar. Freshw. Ecosyst. 21, 389-396.
Sardinops sagax
fish
no
Jung & Swearer 2011
Reactions of temperate reef fish larvae to
boat sound
Aquat. Conserv.: Mar. Freshw. Ecosyst. 21, 389-396.
Olisthops cyanomelas
fish
no
Jung & Swearer 2011
Reactions of temperate reef fish larvae to
boat sound
Aquat. Conserv.: Mar. Freshw. Ecosyst. 21, 389-396.
Odax acroptilus
fish
no
Jung & Swearer 2011
Reactions of temperate reef fish larvae to
boat sound
Aquat. Conserv.: Mar. Freshw. Ecosyst. 21, 389-396.
Platycephalus bassensis
fish
no
Jung & Swearer 2011
Reactions of temperate reef fish larvae to
boat sound
Aquat. Conserv.: Mar. Freshw. Ecosyst. 21, 389-396.
Gobiidae
fish
no
Holles et al. 2013
Jung & Swearer 2011
Reactions of temperate reef fish larvae to
boat sound
Aquat. Conserv.: Mar. Freshw. Ecosyst. 21, 389-396.
Monocanthidae
fish
no
Kane et al. 2010
Exposure of fish to high-intensity sonar does
not induce acute pathology
Exposure of fish to high-intensity sonar does
not induce acute pathology
J. Fish Biol. 76, 1825-1840.
Oncorhynchus mykiss
fish
no
J. Fish Biol. 76, 1825-1840.
Ictalurus punctatus
fish
no
Kane et al. 2010
Exposure of fish to high-intensity sonar does
not induce acute pathology
J. Fish Biol. 76, 1825-1840.
Lepomis sp.
fish
no
Kastelein et al. 2015
Behavioral Responses of a Harbor Porpoise
(Phocoena phocoena) to 25-kHz FM Sonar
Signals
Behavioral responses of a harbor porpoise
(Phocoena phocoena) to playbacks of
broadband pile driving sounds
Hearing frequency thresholds of a harbor
porpoise (Phocoena phocoena) temporarily
affected by a continuous 1.5kHz tone
Temporary threshold shifts and recovery in a
harbor porpoise (Phocoena phocoena) after
octave-band noise at 4kHz
Underwater detection of tonal signals
between 0.125 and 100 kHz by harbor seals
(Phoca vitulina)
The influence of 70 and 120 kHz tonal signals
on the behavior of harbor porpoises
(Phocoena phocoena) in a floating pen
Effects of acoustic alarms, designed to reduce
small cetacean bycatch in gillnet fisheries, on
the behaviour of North Sea fish species in a
large tank
Effects of acoustic alarms, designed to reduce
small cetacean bycatch in gillnet fisheries, on
the behaviour of North Sea fish species in a
large tank
Effects of acoustic alarms, designed to reduce
small cetacean bycatch in gillnet fisheries, on
the behaviour of North Sea fish species in a
large tank
Effects of acoustic alarms, designed to reduce
small cetacean bycatch in gillnet fisheries, on
the behaviour of North Sea fish species in a
large tank
Effects of acoustic alarms, designed to reduce
small cetacean bycatch in gillnet fisheries, on
the behaviour of North Sea fish species in a
Aquat. Mammals. 41, 311-326.
Phocoena phocoena
mammal
yes
Mar. Environm. Res. 92, 206-214.
Phocoena phocoena
mammal
yes
J. Acoust. Soc. Am. 134, 2286-2292.
Phocoena phocoena
mammal
no
J. Acoust. Soc. Am. 132, 3525-3537.
Phocoena phocoena
mammal
yes
J. Acoust. Soc. Am. 125, 1222-1229.
Phoca vitulina
mammal
yes
Mar. Environm. Res. 66, 319-326.
Phocoena phocoena
mammal
yes
Mar. Environm. Res. 64, 160-180.
Dicentrarchus labrax
fish
yes
Mar. Environm. Res. 64, 160-180.
Chelon labrosus
fish
yes
Mar. Environm. Res. 64, 160-180.
Clupea haerengus
fish
yes
Mar. Environm. Res. 64, 160-180.
Trisopterus luscus
fish
no
Mar. Environm. Res. 64, 160-180.
Gadus morhua
fish
no
Kane et al. 2010
Kastelein et al. 2013
Kastelein et al. 2013
Kastelein et al. 2012
Kastelein et al. 2009
Kastelein et al. 2008
Kastelein et al. 2007
Kastelein et al. 2007
Kastelein et al. 2007
Kastelein et al. 2007
Kastelein et al. 2007
large tank
Kastelein et al. 2006
Kastelein et al. 2006
Kastelein et al. 2006
Kastelein et al. 2005
Koschinski et al. 2003
Koschinski et al. 2003
Kunc et al. 2014
Kvadsheim et al. 2010
La Manna et al. 2013
Ladich & Schulz-Mirbach 2013
Ladich & Schulz-Mirbach 2013
Lalas et al. 2016
Liu et al. 2013
McCauley et al 2003
McLaughlin & Kunc 2015
Deterring effects of 8-45 kHz tone pulses on
harbour seals (Phoca vitulina) in a large pool
Differences in the response of a striped
dolphin (Stenella coeruleoalba) and a harbour
porpoise (Phocoena phocoena) to an acoustic
alarm
Differences in the response of a striped
dolphin (Stenella coeruleoalba) and a harbour
porpoise (Phocoena phocoena) to an acoustic
alarm
The influence of acoustic emissions for
underwater data transmission on the
behaviour of harbour porpoises (Phocoena
phocoena) in a floating pen
Behavioural reactions of free-ranging
porpoises and seals to the noise of a
simulated 2 MW windpower generator
Behavioural reactions of free-ranging
porpoises and seals to the noise of a
simulated 2 MW windpower generator
Anthropogenic Noise Affects Behavior across
Sensory Modalities
Behavioural and Physiological Responses of
Hooded Seals (Cystophora cristata) to 1 to 7
kHz Sonar Signals
Behavioural strategy of common bottlenose
dolphins (Tursiops truncatus) in response to
different kinds of boats in the waters of
Lampedusa Island (Italy)
Hearing in Cichlid Fishes under Noise
Conditions
Hearing in Cichlid Fishes under Noise
Conditions
Effects of seismic surveys on New Zealand fur
seals during daylight hours: Do fur seals
respond to obstacles rather than airgun noise?
Ship noise-induced temporary hearing
threshold shift in the Chinese sucker
Myxocyprinus asiaticus (Bleeker, 1864)
High intensity anthropogenic sound damages
fish ears
Changes in the acoustic environment alter the
foraging and sheltering behaviour of the
cichlid Amititlania nigrofasciata
Mar. Environm. Res. 61, 356-373.
Phoca vitulina
mammal
yes
Mar. Environm. Res. 61, 363-378.
Phocoena phocoena
mammal
yes
Mar. Environm. Res. 61, 363-378.
Stenella coeruleoalba
mammal
no
Mar. Environm. Res. 59, 287-307.
Phocoena phocoena
mammal
yes
Mar. Ecol. Progr. Ser. 265, 263-273.
Phocoena phocoena
mammal
yes
Mar. Ecol. Progr. Ser. 265, 263-273.
Phoca vitulina
mammal
yes
Am. Nat. 184, E93-E100.
Sepia officinalis
invertebrate
yes
Aquat. Mamm. 36, 239-247.
Cystophora cristata
mammal
yes
Aquat. Conserv.: Mar. Freshw. Ecosyst. 23, 745-757.
Tursiops aduncus
mammal
yes
Plos ONE. 8, e57588.
Etroplus maculatus
fish
yes
Plos ONE. 8, e57588.
Steatocranus tinanti
fish
yes
Mar. Mamm. Sci. 32, 643-663.
Arctocephalus forsteri
mammal
yes
J. Appl. Ichtyol. 29, 1416-1422.
Myxocyprinus asiaticus
fish
yes
J. Acoust. Soc. Am. 113, 638-642.
Pagrus auratus
fish
yes
Behav. Process. 116, 75-79.
Amatitlania negrofasciata
fish
yes
Melcón et al. 2012
Blue Whales Respond to Anthropogenic Noise
Plos ONE. 7, e32681.
Balanoptera musculus
mammal
yes
Miksis-Olds & Tyack 2009
Manatee (Trichechus manatus) vocalization
usage in relation to environmental noise levels
Using at-sea experiments to study the effects
of airguns on the foraging behavior of sperm
whales in the Gulf of Mexico
Sonar-induced temporary hearing loss in
dolphins
Displacement of Orcinus orca (L.) by high
amplitude sound in British Columbia, Canada
Gray whale densities during a seismic survey
off Sakhalin Island, Russia
Impacts of regular and random noise on the
behaviour, growth and development of larval
Atlantic cod (Gadus morhua)
Anthropogenic noise playback impairs
embryonic development and increases
mortality in a marine invertebrate
An investigation into the effects of
underwater piling noise on salmonids
Impulsive sounds change European seabass
swimming patterns: Influence of pulse
repetition interval
Behavioral changes in response to sound
exposure and no spatial avoidance of noisy
conditions in captive zebrafish
Temporal structure of sound affects
behavioural recovery from noise impact in
European seabass
Intermittent Noise Induces Physiological
Stress in a Coastal Marine Fish
Reduced Detection of Indo-Pacific Bottlenose
Dolphins (Tursiops aduncus) in an Inner
Harbour Channel During Pile Driving Activities
Dolphins Adjust Species-Specific Frequency
Parameters to Compensate for Increasing
Background Noise
Dolphins Adjust Species-Specific Frequency
Parameters to Compensate for Increasing
Background Noise
Dolphins Adjust Species-Specific Frequency
Parameters to Compensate for Increasing
Background Noise
Effect of musical stimuli and white noise on
rainbow trout (Oncorhynchus mykiss) growth
and physiology in recirculating water
J. Acoust. Soc. Am. 125, 1806-1815.
Tricheus manatus
mammal
yes
Deep-Sea. Res. 56, 1168-1181.
Physeter macrocephalus
mammal
yes
Biol. Lett. 5, 565-567.
Tursiops truncatus
mammal
yes
ICES J. Mar. Sci. 59, 71-80.
Orcinus orca
mammal
yes
Endanger. Species Res. 29, 211-227.
Eschrichtius robustus
mammal
yes
Proc. R. Soc. Lond. B. 282, 20151943.
Gadus morhua
fish
yes
Sci. Rep. 4, 5891.
Stylocheilus striatus
invertebrate
yes
J. Acoust. Soc. Am. 120, 2550-2554.
Salmo trutta
fish
no
Mar. Poll. Bull. 97, 111-117.
Dicentrarchus labrax
fish
yes
Front. Behav. Neurosci. 9, 28.
Danio rerio
fish
yes
Biol. Cons. 178, 65-73.
Dicentrarchus labrax
fish
yes
Plos ONE. 10, e0139157.
Heterostichus rostratus
fish
yes
Aquat. Mamm. 41, 455-468.
Tursiops aduncus
mammal
yes
Plos One. 10, e0121711.
Delphinus delphis
mammal
yes
Plos One. 10, e0121711.
Stenella coeruleoalba
mammal
yes
Plos One. 10, e0121711.
Stenella frontalis
mammal
yes
Aquacult. Eng. 55, 16-22.
Oncorhynchus mykiss
fish
yes
Miller et al. 2009
Mooney et al. 2009
Morton & Symonds 2002
Muir et al. 2016
Nedelec et al. 2015
Nedelec et al. 2014
Nedwell et al. 2009
Neo et al. 2015
Neo et al. 2015
Neo et al. 2014
Nichols et al. 2015
Paiva et al. 2015
Papale et al. 2015
Papale et al. 2015
Papale et al. 2015
Papaoutsoglu et al. 2013
conditions
Parks et al. 2011
Parks et al. 2007
Parks et al. 2007
Peng et al. 2016
Picciulin et al. 2012
Picciulin et al. 2010
Picciulin et al. 2010
Pirotta et al. 2015
Popper et al. 2007
Popper et al. 2005
Popper et al. 2005
Popper et al. 2005
Purser & Radford 2011
Purser et al. 2016
Risch et al. 2012
Individual right whales call louder in increased
environmental noise
Short- and long-term changes in right whale
calling behavior: The potential effects of noise
on acoustic communication
Short- and long-term changes in right whale
calling behavior: The potential effects of noise
on acoustic communication
Effects of anthropogenic sound on digging
behavior, metabolism, Ca2+/Mg2+ ATPase
activity, and metabolism-related gene
expression of the bivalve Sinonovacula
constricta
Brown meagre vocalization rate increases
during repetitive boat noise exposures: A
possible case of vocal compensation
In situ behavioural responses to boat noise
exposure of Gobius cruentatus (Gmelin, 1789;
fam. Gobiidae) and Chromis chromis
(Linnaeus, 1758; fam. Pomacentridae) living in
a Marine Protected Area
In situ behavioural responses to boat noise
exposure of Gobius cruentatus (Gmelin, 1789;
fam. Gobiidae) and Chromis chromis
(Linnaeus, 1758; fam. Pomacentridae) living in
a Marine Protected Area
Quantifying the effect of boat disturbance on
bottlenose dolphin foraging activity
The effects of high-intensity, low-frequency
active sonar on rainbow trout
Effects of exposure to seismic airgun use on
hearing of three fish species
Effects of exposure to seismic airgun use on
hearing of three fish species
Effects of exposure to seismic airgun use on
hearing of three fish species
Acoustic Noise Induces Attention Shifts and
Reduces Foraging Performance in ThreeSpined Sticklebacks (Gasterosteus aculeatus)
Condition-dependent physiological and
behavioural responses to anthropogenic noise
Changes in Humpback Whale Song Occurrence
in Response to an Acoustic Source 200 km
Away
Biol. Lett. 7, 33-35.
Eubalaena glacialis
mammal
yes
J. Acoust. Soc. Am. 122, 3725-3731.
Eubalaena glacialis
mammal
yes
J. Acoust. Soc. Am. 122, 3725-3731.
Eubalaena australis
mammal
yes
Sci. Rep. 6, 24266.
Sinonovacula constricta
invertebrate
yes
J. Acoust. Soc. Am. 132, 3118-3124.
Sciaena umbra
fish
yes
J. Exp. Mar. Biol. Ecol. 386, 125-132.
Chromis chromis
fish
yes
J. Exp. Mar. Biol. Ecol. 386, 125-132.
Gobius cruentatus
fish
yes
Biol. Cons. 181, 81-89.
Tursiops aduncus
mammal
no
J. Acoust. Soc. Am. 122, 623-635.
Oncorhynchus mykiss
fish
yes
J. Acoust. Soc. Am. 117, 3958-3971.
Esox lucius
fish
yes
J. Acoust. Soc. Am. 117, 3958-3971.
Couesius plumbeus
fish
yes
J. Acoust. Soc. Am. 117, 3958-3971.
Coregonus nasus
fish
no
Plos. ONE. 6, e17478.
Gasterosteus aculeatus
fish
yes
Physiol. Behav. 155, 157-161.
Anguilla anguilla
fish
yes
Plos ONE. 7, e29741.
Megaptera novaeanglia
mammal
yes
Roberts et al. 2015
Roberts et al. 2016
Romano et al. 2004
Romano et al. 2004
Sabet et al. 2015
Sabet et al. 2015
Samson et al. 2014
Sarà et al. 2007
Schleifele et al. 2005
Scholik & Yan 2002
Scholik & Yan 2001
Sebastianutto et al. 2011
Sierra-Flores et al. 2015
Simpson et al. 2016
Simpson et al. 2015
Simpson et al. 2010
Simpson et al. 2010
Sensitivity of the mussel Mytilus edulis to
substrate-borne vibration in relation to
anthropogenically generated noise
Sensitivity of Pagurus bernhardus (L.) to
substrate-borne vibration and anthropogenic
noise
Anthropogenic sound and marine mammal
health: measures of the nervous and immune
systems before and after intense sound
exposure
Anthropogenic sound and marine mammal
health: measures of the nervous and immune
systems before and after intense sound
exposure
The effect of temporal variation in sound
exposure on swimming and foraging
behaviour of captive zebrafish
The effect of temporal variation in sound
exposure on swimming and foraging
behaviour of captive zebrafish
Graded behavioral responses and habituation
to sound in the common cuttlefish Sepia
officinalis
Effect of boat noise on the behaviour of
bluefin tuna Thunnus thynnus in the
Mediterranean Sea
Indication of a Lombard vocal response in the
St. Lawrence River beluga
Effects of boat engine noise on the auditory
sensitivity of the fathead minnow, Pimephales
promelas
Effects of underwater noise on auditory
sensitivity of a cyprinid fish
How boat noise affects an ecologically crucial
behaviour: the case of territoriality in Gobius
cruentatus (Gobiidae)
Stress response to anthropogenic noise in
Atlantic cod Gadus morhua L.
Anthropogenic noise increases fish mortality
by predation
Anthropogenic noise compromises
antipredator behaviour in European eels
Behavioral plasticity in larval reef fish:
orientation is influenced by recent acoustic
experiences
Behavioral plasticity in larval reef fish:
Mar. Ecol. Progr. Ser. 538, 185-195.
Mytilus edulis
invertebrate
yes
J. Exp. Mar. Biol. Ecol. 474, 185-194.
Pagurus bernhardus
invertebrate
yes
Can. J. Fish Aquat. Sci. 61, 1124-1134.
Delphinapterus leucas
mammal
yes
Can. J. Fish Aquat. Sci. 61, 1124-1134.
Tursiops aduncus
mammal
yes
Anim. Behav. 107, 49-60.
Danio rerio
fish
yes
Anim. Behav. 107, 49-60.
Daphnia magna
invertebrate
no
J. Exp. Biol. 217, 4347-4355.
Sepia officinalis
invertebrate
no
Mar. Ecol. Progr. Ser. 331, 241-253.
Thunnus thynnus
fish
yes
J. Acoust. Soc. Am. 117, 1486-1492.
Delphinapterus leucas
mammal
yes
Environm. Biol. Fish. 63, 203-209.
Pimephales promelas
fish
yes
Hear. Res. 152, 17-24.
Pimephales promelas
fish
yes
Environm. Biol. Fish. 92, 207-215.
Gobius cruentatus
fish
yes
Aquacult. Eng. 67, 67-76.
Gadus morhua
fish
yes
Nat. Comm. 7, 10544.
Pomacentrus amboiensis
fish
yes
Glob. Change Biol. 21, 586-593.
Anguilla anguilla
fish
yes
Behav. Ecol. 21, 1098-1105.
Pomacentrus amboiensis
fish
yes
Behav. Ecol. 21, 1098-1105.
Pomacentrus brachialis
fish
yes
Simpson et al. 2010
Simpson et al. 2010
Simpson et al. 2005
Simpson et al. 2005
Sivle et al. 2015
Sivle et al. 2015
Sivle et al. 2015
Smith et al. 2006
Smith et al. 2004
Smith et al. 2004
Smith et al. 2004
Solan et al. 2016
Solan et al. 2016
Solan et al. 2016
Solé et al. 2013
orientation is influenced by recent acoustic
experiences
Behavioral plasticity in larval reef fish:
orientation is influenced by recent acoustic
experiences
Behavioral plasticity in larval reef fish:
orientation is influenced by recent acoustic
experiences
Response of embryonic coral reef fishes
(Pomacentridae: Amphiprion spp.) to noise
Response of embryonic coral reef fishes
(Pomacentridae: Amphiprion spp.) to noise
Severity of Expert-Identified Behavioural
Responses of Humpback Whale, Minke Whale,
and Northern Bottlenose Whale to Naval
Sonar
Severity of Expert-Identified Behavioural
Responses of Humpback Whale, Minke Whale,
and Northern Bottlenose Whale to Naval
Sonar
Severity of Expert-Identified Behavioural
Responses of Humpback Whale, Minke Whale,
and Northern Bottlenose Whale to Naval
Sonar
Anatomical and functional recovery of the
goldfish (Carassius auratus) ear following
noise exposure
Noise-induced stress response and hearing
loss in goldfish (Carassius auratus)
Acoustical stress and hearing sensitivity in
fishes: does the linear threshold shift
hypothesis hold water?
Acoustical stress and hearing sensitivity in
fishes: does the linear threshold shift
hypothesis hold water?
Anthropogenic sources of underwater sound
can modify how sediment-dwelling
invertebrates mediate ecosystem properties
Anthropogenic sources of underwater sound
can modify how sediment-dwelling
invertebrates mediate ecosystem properties
Anthropogenic sources of underwater sound
can modify how sediment-dwelling
invertebrates mediate ecosystem properties
Does exposure to noise from human activities
compromise sensory information from
Behav. Ecol. 21, 1098-1105.
Pomacetrus moluccensis
fish
yes
Behav. Ecol. 21, 1098-1105.
Pomacentrus nagasakiensis
fish
yes
Mar. Ecol. Progr. Ser. 287, 201-208.
Amphiprion ephippium
fish
yes
Mar. Ecol. Progr. Ser. 287, 201-208.
Amphiprion rubrocinctus
fish
yes
Aquat. Mamm. 41, 469-502.
Megaptera novaeanglia
mammal
yes
Aquat. Mamm. 41, 469-502.
Balaenoptera acutorostrata
mammal
yes
Aquat. Mamm. 41, 469-502.
Hyperodon ampullatus
mammal
yes
J. Exp. Biol. 209, 4193-4202.
Carassius auratus
fish
yes
J. Exp. Biol. 207, 427-435.
Carassius auratus
fish
yes
J. Exp. Biol. 207, 3591-3602.
Carassius auratus
fish
yes
J. Exp. Biol. 207, 3591-3602.
Oreochromis niloticus
fish
no
Sci. Rep. 6, 20540.
Ruditapes philippinarum
invertebrate
yes
Sci. Rep. 6, 20540.
Nephrops norvegicus
invertebrate
yes
Sci. Rep. 6, 20540.
Amphiura filiformis
invertebrate
yes
Deep-Sea Res. II. 95, 160-181.
Sepia officinalis
invertebrate
yes
cephalopod statocysts?
Solé et al. 2013
Solé et al. 2013
Solé et al. 2013
Solé et al. 2013
Solé et al. 2013
Stansbury et al. 2015
Thompson et al. 2013
Thompson et al. 2010
Vasconcelos et al. 2007
Voellmy et al. 2014
Voellmy et al. 2014
Voellmy et al. 2014
Voellmy et al. 2014
von Benda-Beckmann et al. 2015
Wagner et al. 2015
Does exposure to noise from human activities
compromise sensory information from
cephalopod statocysts?
Does exposure to noise from human activities
compromise sensory information from
cephalopod statocysts?
Does exposure to noise from human activities
compromise sensory information from
cephalopod statocysts?
Ultrastructural Damage of Loligo vulgaris and
Illex coindetii statocysts after Low Frequency
Sound Exposure
Ultrastructural Damage of Loligo vulgaris and
Illex coindetii statocysts after Low Frequency
Sound Exposure
Grey seals use anthropogenic signals from
acoustic tags to locate fish: evidence from a
simulated foraging task
Short-term disturbance by a commercial twodimensional seismic survey does not lead to
long-term displacement of harbour porpoises
Assessing the responses of coastal cetaceans
to the construction of offshore wind turbines
Effects of ship noise on the detectability of
communication signals in the Lusitanian
toadfish
Increased Noise Levels Have Different Impacts
on the Anti-Predator Behaviour of Two
Sympatric Fish Species
Increased Noise Levels Have Different Impacts
on the Anti-Predator Behaviour of Two
Sympatric Fish Species
Acoustic noise reduces foraging success in two
sympatric fish species via different
mechanisms
Acoustic noise reduces foraging success in two
sympatric fish species via different
mechanisms
Assessing the Impact of Underwater Clearance
of Unexploded Ordnance on Harbour
Porpoises (Phocoena phocoena) in the
Southern North Sea
The effect of seismic waterguns on the inner
ears of round goby
Deep-Sea Res. II. 95, 160-181.
Octopus vulgaris
invertebrate
yes
Deep-Sea Res. II. 95, 160-181.
Loligo vulgaris
invertebrate
yes
Deep-Sea Res. II. 95, 160-181.
Illex condietii
invertebrate
yes
Plos ONE. 8, e78825.
Illex condietii
invertebrate
yes
Plos ONE. 8, e78825.
Loligo vulgaris
invertebrate
yes
Proc. R. Soc. Lond. B. 282, 20141595.
Halichoerus grypus
mammal
yes
Proc. R. Soc. Lond. B. 280, 20132001.
Phocoena phocoena
mammal
yes
Mar. Poll. Bull. 60, 1200-1208.
Phocoena phocoena
mammal
yes
J. Exp. Biol. 210, 2104-2112.
Halobatrachus didactylus
fish
yes
PlOS ONE. 9, e102946.
Gasterosteus aculeatus
fish
yes
PlOS ONE. 9, e102946.
Phoxinus phoxinus
fish
yes
Anim. Behav. 89, 191-198.
Gasterosteus aculeatus
fish
yes
Anim. Behav. 89, 191-198.
Phoxinus phoxinus
fish
yes
Aquat. Mamm. 41, 503-523.
Phocoena phocoena
mammal
yes
J. Great. Lake. Res. 41, 1191-1196.
Neogobius melanostomus
fish
no
Wale et al. 2013
Wale et al. 2013
Wilkens et al. 2012
Williams et al. 2014
Wysocki & Ladich 2005
Wysocki et al. 2007
Wysocki et al. 2006
Wysocki et al. 2006
Wysocki et al. 2006
Noise negatively affects foraging and
antipredator behaviour in shore crabs
Size-dependent physiological responses of
shore crabs to single and repeated playback of
ship noise
Induction of settlement in mussel (Perna
canaliculus) larvae by vessel noise
Severity of killer whale behavioral responses
to ship noise: A dose–response study
Effects of noise exposure on click detection
and the temporal resolution ability of the
goldfish auditory system
Effects of aquaculture production noise on
hearing, growth, and disease resistance of
rainbow trout Oncorhynchus mykiss
Ship noise and cortisol secretion in European
freshwater fishes
Ship noise and cortisol secretion in European
freshwater fishes
Ship noise and cortisol secretion in European
freshwater fishes
Anim. Behav. 86, 111-118.
Carcinus maenas
invertebrate
yes
Biol. Lett. 9, 20121194.
Carcinus maenas
invertebrate
yes
Biofouling. 65, 65-72.
Perna canaliculus
invertebrate
yes
Mar. Poll. Bull. 79, 254-260.
Orcinus orca
mammal
yes
Hear. Res. 201, 27-36.
Carassius auratus
fish
yes
Aquaculture. 272, 687-697.
Oncorhynchus mykiss
fish
no
Biol. Cons. 128, 501-508.
Cyprinus carpio
fish
yes
Biol. Cons. 128, 501-508.
Perca fluviatilis
fish
yes
Biol. Cons. 128, 501-508.
Gobio gobio
fish
yes