High intensity underwater sounds may cause temporary hearing threshold shifts (TTSs) in harbor porpoises, the magnitude of which may depend on the exposure duration. After exposure to playbacks of pile driving sounds, TTSs in two porpoises were quantified at 4 and 8 kHz with a psychophysical technique. At 8 kHz, the pile driving sounds caused the highest TTS. Pile driving sounds had the following: pulse duration 124 ms, rate 2760 strikes/h, inter-pulse interval 1.3 s, duty cycle ∼9.5%, average received single-strike unweighted broadband sound exposure level (SELss) 145 dB re 1 μPa(2)s, exposure duration range 15-360 min (cumulative SEL range: 173-187 dB re 1 μPa(2)s). Control sessions were also carried out. Mean TTS (1-4 min after sound exp...
The planned construction of offshore wind turbines in the North and Baltic Seas involves the emissio...
The underwater hearing sensitivity of a young male harbor porpoise for tonal signals of various sign...
Harbor seals may suffer hearing loss due to intense sounds. After exposure for 60 min to a continuou...
Safety criteria for underwater sound produced during offshore pile driving are needed to protect mar...
Harbor porpoises may suffer hearing loss when exposed to intense sounds. After exposure to a 1.5 kHz...
Harbor porpoises may suffer hearing loss when they are exposed to high level sounds. After exposure ...
Temporary hearing threshold shift (TTS) caused by fatiguing sounds in the 1.5 to 16 kHz range has be...
Anthropogenic noise may cause temporary hearing threshold shifts (TTSs) in marine mammals. Tests wit...
To determine whether susceptibility to noise-induced temporary hearing threshold shift (TTS) differs...
To set safety criteria for levels of sounds produced during pile driving for offshore wind parks, te...
The effects of exposure to continuous and intermittent anthropogenic sounds on temporary hearing thr...
An auditory study was conducted to derive data on temporary threshold shift TTS induced bysingle imp...
Pile driving is presently the most common method used to attach wind turbines to the sea bed. To ass...
The high under-water sound pressure levels (SPLs) produced during pile driving to build offshore win...
Safety criteria for mid-frequency naval sonar sounds are needed to protect harbor porpoise hearing. ...
The planned construction of offshore wind turbines in the North and Baltic Seas involves the emissio...
The underwater hearing sensitivity of a young male harbor porpoise for tonal signals of various sign...
Harbor seals may suffer hearing loss due to intense sounds. After exposure for 60 min to a continuou...
Safety criteria for underwater sound produced during offshore pile driving are needed to protect mar...
Harbor porpoises may suffer hearing loss when exposed to intense sounds. After exposure to a 1.5 kHz...
Harbor porpoises may suffer hearing loss when they are exposed to high level sounds. After exposure ...
Temporary hearing threshold shift (TTS) caused by fatiguing sounds in the 1.5 to 16 kHz range has be...
Anthropogenic noise may cause temporary hearing threshold shifts (TTSs) in marine mammals. Tests wit...
To determine whether susceptibility to noise-induced temporary hearing threshold shift (TTS) differs...
To set safety criteria for levels of sounds produced during pile driving for offshore wind parks, te...
The effects of exposure to continuous and intermittent anthropogenic sounds on temporary hearing thr...
An auditory study was conducted to derive data on temporary threshold shift TTS induced bysingle imp...
Pile driving is presently the most common method used to attach wind turbines to the sea bed. To ass...
The high under-water sound pressure levels (SPLs) produced during pile driving to build offshore win...
Safety criteria for mid-frequency naval sonar sounds are needed to protect harbor porpoise hearing. ...
The planned construction of offshore wind turbines in the North and Baltic Seas involves the emissio...
The underwater hearing sensitivity of a young male harbor porpoise for tonal signals of various sign...
Harbor seals may suffer hearing loss due to intense sounds. After exposure for 60 min to a continuou...