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Which Qs to choose: questions of quality in Bioacoustics? |
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Vocalizations of the Ryukyu Scops Owl: individually recognisable and stable |
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2020 |
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Vocal instability over time in individual male European Nightjars, Caprimulgus europaeus: recommendations for acoustic monitoring and surveys |
Sarah Raymond, Sarah Spotswood, Hazel Clarke, Natalia Zielonka, Andrew Lowe & Kate L. Durrant |
2020 |
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Vocal discrimination of African lions and its potential for collar-free tracking |
Matthew Wijers, Paul Trethowan, Byron Du Preez, Simon Chamaillé-Jammes, Andrew J. Loveridge, David W. Macdonald & Andrew Markham |
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Variant maps for bat echolocation call identification algorithms |
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Variability in the performance of the spectrogram correlation detector for Northeast Pacific blue whale calls |
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Using Songs To Identify Individual Mexican Antthrush Formicarius moniliger: Comparison of Four Classification Methods |
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2009 |
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Using playbacks to monitor and investigate the behaviour of wild maned wolves |
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2021 |
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Using Passive Acoustics to Monitor Estuarine Fish Populations |
Joseph J. Luczkovich and Mark W. Sprague |
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289-291 |
Using autonomous recording units and change-point analysis to determine reproductive activity in an aerial insectivore |
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Use of Sound for Localisation of Spawning Weakfish in Delaware Bay (USA) and Effects of Fish Size, Temperature and Season on Sound Parameters |
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Use of recurrence plots for identification and extraction of patterns in humpback whale song recordings |
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Use of acoustic methods to find, locate and recognize singing cicadas in Slovenia, Croatia and Macedonia [abstract] |
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Unsupervised discrimination of male Tawny owls (Strix aluco) individual calls using robust measurements of the acoustic signal |
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2024 |
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Underwater sound recording of animals |
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Tradition vs. innovation: comparing bioacoustics and mist-net results to bat sampling |
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2022 |
5 |
575-593 |
Tradeoffs in sound quality and cost for passive acoustic devices |
Clarissa A. Starbuck, Logan M. DeSchepper, Meredith L. Hoggatt & Joy M. O’Keefe |
2024 |
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Tracking European bat species with passive acoustic directional monitoring |
David Wallis & Morten Elmeros |
2021 |
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418-436 |
Towards an Automated Acoustic Detection System for Free-ranging Elephants |
Matthias Zeppelzauer, Sean Hensman, Angela S. Stoeger |
2015 |
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13-29 |
Tools for automated acoustic monitoring within the R package monitoR. |
Jonathan Katz, Sasha D. Hafner & Therese Donovan |
2016 |
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197-210 |
Time-frequency warping of spectrograms with the application to bird sound analysis |
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The Use of Acoustically Evoked Potentials for the Study of Hearing in Fishes |
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2002 |
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325-328 |
The Technique of Noninvasive Distant Sexing for Four Monomorphic Dendrocygna Whistling Duck Species by Their Loud Whistles |
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2009 |
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277-290 |
The soundscape of Arctic charr spawning grounds in lotic and lentic environments: can Passive Acoustic Monitoring be used to detect spawning activities? |
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2018 |
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The sound of hope: searching for critically endangered species using acoustic template matching |
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The Song Overlap Null model Generator (SONG): a new tool for distinguishing between random and non-random song overlap |
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The Signature Whistle Hypothesis: a study of a population of Sotalia fluviatilis (Cetacea, Delphinidae) from Sepetiba Bay, Brazil [abstract] |
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The shape of sound: elliptic Fourier descriptors (EFD) discriminate the echolocation calls of Myotis bats (M. daubentonii, M. nattereri & M. mystacinus) |
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101-116 |
The perceptual effects of manipulating nonlinear phenomena in synthetic nonverbal vocalizations |
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2020 |
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226-247 |
The new sound trap, and observations on the migratory and acoustic behaviour of the field cricket Teleogryllus commodus (Walker) |
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The influence of bat detector brand on the quantitative estimation of bat activity |
Waters, D.A. & Walsh, A.L. |
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The importance of acoustic background modelling in CNN-based detection of the Neotropical White-lored Spinetail (Aves, Passeriformes, Furnaridae) |
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The harmonics to noise ratio applied to dog barks [abstract] |
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2002 |
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79 |
The comparison of harmonically related rich sounds using spectrographic cross-correlation and principal components analysis |
K.A. Cortopassi & J.W. Bradbury |
2000 |
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89-127 |
The acoustic space of pain: Cries as indicators of distress recovering dynamics in preverbal infants |
Alexis Koutseff, David Reby, Olivier Martin, Florence Levrero, Hugues Patural & Nicolas Mathevon |
2018 |
4 |
313-325 |
Tests for Call Restoration in the Gray Treefrog Hyla versicolor |
Joshua J. Schwartz, Kenneth Huth, Sherryll H. Jones, Robert Brown, Jacqueline Marks & Xiaoliang Yang |
2010 |
1 |
59-86 |
Terrestrial Sound Monitoring Systems, A Methodology For Quantitative Calibration |
Diego Llusia, Rafael Márquez & Richard Bowker |
2011 |
3 |
277-286 |
Techniques for studying the spatio-temporal distribution of animal vocalizations in tropical wet forest |
Hammer, Ø. & Barrett, N. |
2001 |
1 |
21-35 |
Technical Instrumentation Issues Related to the Design and Execution of a Controlled-Exposure Experiment for Large Cetaceans to Assess Possible Behavioural Responses and Potential Impacts |
Bruce R. Mate |
2008 |
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334-336 |
SYNTANA: a software for the SYNThesis and ANAlysis of animal sounds [abstract] |
Thierry Aubin |
1994 |
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80-81 |
SynSing: open-source MATLAB code for generating synthetic signals in studies of animal acoustic communication |
Jessie C. Tanner, Joshua Justison & Mark A. Bee |
2020 |
6 |
731-752 |
Studies of cicada sound production using commercial HS video [abstract] |
Matija Gogala and Tomi Trilar |
2002 |
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180-181 |
Stridulatory organs of Mutillid wasps (Hymenoptera) [abstract] |
Gunther Tschuch |
1994 |
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71 |
Steps towards bioacoustic data mining [abstract] |
Taylor, A. |
2012 |
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57-58 |