Ripple, W. J. et al. World scientists' warning to humanity: a second notice. Bioscience, 1-3, https://doi.org/10.1093/biosci/bix125 (2017).
Krause, B. &Farina, A. Using ecoacoustic methods to survey the impacts of climate change on biodiversity. Biol. Cons. 195, 245-254 (2016).
Mann, D. A. &Lobel, P. S. Passive acoustic detection of sounds produced by the damselfish, Dascyllus albisella (Pomacentridae). Bioacoustics 6(3), 199-213 (1995).
Locascio, J. V. &Mann, D. A. Diel patterns of fish sound production in Charlotte Harbor, FL. T. Am. Fish Soc. 137, 606-615 (2008).
Luczkovich, J. J., Pullinger, R. C. &Johnson, S. E. Identifying sciaenid critical spawning habitats by the use of passive acoustics. T. Am. Fish Soc. 137, 576-605 (2008).
Fine, M. L. &Thorson, R. F. Use of passive acoustics for assessing behavioral interactions in individual toadfish. T. Am. Fish Soc. 137, 627-637 (2008).
Picciulin, M. et al. Passive acoustic monitoring of Sciaena umbra on rocky habitats in the Venetian littoral zone. Fish. Res. 145, 76-81 (2013).
Picciulin, M. et al. Diagnostics of nocturnal calls of Sciaena umbra (L., fam. Sciaenidae) in a nearshore Mediterranean marine reserve. Bioacoustics 22(2), 109-120 (2013).
Wall, C. C., Simard, P., Lembke, C. &Mann, D. A. Large-scale passive acoustic monitoring of fish sound production on the West Florida Shelf. Mar. Ecol. Progr Ser. 484, 173-188 (2013).
Tricas, T. &Boyle, K. Acoustic behaviors in Hawaiian coral reef fish communities. Mar. Ecol. Progr Ser. 51, 1-16 (2014).
Ruppé, L. et al. Environmental constraints drive the partitioning of the soundscape in fishes. Proc. Natl. Acad. Sci. 112(19), 6092-6097 (2015).
Vieira, M., Fonseca, P. J., Amorim, M. C. P. &Teixeira, C. J. C. Call recognition and individual identification of fish vocalizations based on automatic speech recognition: An example with the Lusitanian toadfish. J. Acoust. Soc. Am. 138, 3941 (2015).
Sueur, J., Farina, A., Gasc, A., Pieretti, N. &Pavoine, S. Acoustic indices for biodiversity assessment and landscape investigation. Acta Acust. 100(4), 772-781 (2014).
Depraetere, M. et al. Monitoring animal diversity using acoustic indices: implementation in a temperate woodland. Ecol. Indic. 13, 46-54 (2012).
Sueur, J., Pavoine, S., Hamerlynck, O. &Duvail, S. Rapid acoustic survey for biodiversity appraisal. Plos One 3(12), e4065 (2008).
Pekin, B. K., Jung, J., Villanueva-Rivera, L. J., Pijanowski, B. C. &Ahumada, J. A. Modeling acoustic diversity using soundscape recordings and LIDAR-derived metrics of vertical forest structure in a neotropical rainforest. Landsc. Ecol. 27(10), 1513-1522 (2012).
Farina, A. &Morri, D. Source-sink e eco-field: ipotesi ed evidenze sperimentali. Atti del X congresso nazionale della SIEP-IALE. Ecologia e governance del paesaggio: esperienze e prospettive [Source-sink e eco-field: hypothesis and experimental evidence. Proceedings of the X national meeting of SIEP-IALE. Ecology and landscape governance: experiences and perspective]. Bari; p. 365-372 (2008).
Pieretti, N., Farina, A. &Morri, D. A new methodology to infer the singing activity of an avian community: the acoustic complexity index (ACI). Ecol. Indic. 11, 868-873 (2011).
Malfante, M., Dalla Mura, M., Mars, J. I. &Gervaise, C. Automatic fish sounds classification. J. Acoust. Soc. Am. 139(4), 2115-2116 (2016).
Kaplan, M. B., Mooney, T. A. &Partan, J. Automatic detection of tropical fish calls recorded on moored acoustic recording platforms. J. Acoust. Soc. Am. 136(4), 2153-2153 (2014).
Mouy, X., Rountree, R., Juanes, F. &Dosso, S. E. Cataloging fish sounds in the wild using combined acoustic and video recordings. J. Acoust. Soc. Am. 143(5), 333-339 (2018).
McWilliam, J. N. &Hawkins, A. D. A comparison of inshore marine soundscapes. J. Exp. Mar. Biol. Ecol. 446, 166-176 (2013).
Staaterman, E. et al. Celestial patterns in marine soundscapes. Mar. Ecol. Progr Ser. 508, 17-32 (2014).
Bertucci, F., Parmentier, E., Lecellier, G., Hawkins, A. D. &Lecchini, D. Acoustic indices provide information on the status of coral reefs: an example from Moorea Island in the South Pacific. Sci. Rep. 6, 33326 (2016).
Buscaino, G. et al. Temporal patterns in the soundscape of the shallow waters of a Mediterranean marine protected area. Sci. Rep. 6, 34230 (2016).
Harris, S. A., Shears, N. T. &Radford, C. A. Ecoacoustic indices as proxies for biodiversity on temperate reefs. Methods Ecol. Evol. 7(6), 713-724 (2016).
Bolgan, M. et al. The soundscape of Arctic charr spawning grounds in lotic and lentic environments: can passive acoustic monitoring be used to detect spawning activities? Bioacoustics 27(1), 1-29 (2018).
Picciulin, M. et al. The soundscape of a mussel farm: Biophony and man-made noise levels. In: Proceedings of Meetings on Acoustics (Vol. 27, No. 1) (2016).
Rice, A. N., Soldevilla, M. S. &Quinlan, J. A. Nocturnal patterns in fish chorusing off the coasts of Georgia and eastern Florida. Bull. Mar. Sci. 93(2), 1-19 (2017).
Staaterman, E. et al. Bioacoustic measurements complement visual biodiversity surveys: preliminary evidence from four shallow marine habitats. Mar. Ecol. Progr Ser. 575, 207-215 (2017).
Pieretti, N., Martire, M. L., Farina, A. &Danovaro, R. Marine soundscape as an additional biodiversity monitoring tool: a case study from the Adriatic Sea (Mediterranean Sea). Ecol. Indic. 83, 13-20 (2017).
Ceraulo, M. et al. Acoustic comparison of a patchy Mediterranean shallow water seascape: Posidonia oceanica meadow and sandy bottom habitats. Ecol. Indic. 85, 1030-1043 (2018).
Heylighen, F. The growth of structural and functional complexity during evolution. The Evolution Of Complexity, 17-44 (1999).
Neige, P. Spatial patterns of disparity and diversity of the recent cuttlefishes (Cephalopoda) across the Old World. J. Biogeogr. 30(8), 1125-1137 (2003).
Di Iorio, L. et al. "Posidonia meadows calling": a ubiquitous fish sound with monitoring potential. Remote Sens. Ecol. Conserv (2018).
Montie, E. W. et al. Long-term monitoring of captive red drum Sciaenops ocellatus reveals that calling incidence and structure correlate with egg deposition. J. Fish Biol. 88(5), 1776-1795 (2016).
Henry, S., Falguiere, J. C., Devillers, S. &Parmentier, E. Sciaenops ocellatus: Daily and seasonal sound variation during spawning in aquaculture. In VLIZ Marine Scientist Day, Bruges, VIVES (2016).
Parmentier, E. et al. Consistency of spatiotemporal sound features supports the use of passive acoustics for long-term monitoring. Anim. Conserv., https://doi.org/10.1111/acv.12362 (2017).
Parmentier, E., Bouillac, G., Dragicevic, B., Dulcic, J. &Fine, M. Call properties and morphology of the sound-producing organ in Ophidion rochei (Ophidiidae). J. Exp. Biol. 213, 3230-3236 (2010).
Amorim, M. C. P., Vasconcelos, R. O. &Fonseca, P. J. Fish sounds and mate choice. In: Sound Communication In Fishes, Springer, Vienna, pp. 1-33 (2015).
Hawkins, A. D. &Amorim, M. C. P. Spawning sounds of male haddock. Melanogrammus aeglefinus. Environ. Biol. Fish 59, 29-41 (2000).
Mann, D. A. &Lobel, P. S. Propagation of damselfish (Pomacentridae) courtship sounds. J. Acoust. Soc. Am. 101(6), 3783-3791 (1997).
Amorim, M. C. P., Simões, J. M. &Fonseca, P. J. Acoustic communication in the Lusitanian toadfish Halobatrachus didactylus: evidence for an unusual large vocal repertoire. J. Mar. Biol. Assoc. U.K. 88(5), 1069-1073 (2008).
Akamatsu, T., Okumura, T., Novarini, N. &Yan, H. Y. Empirical refinements applicable to the recording of fish sounds in small tanks. J. Acoust. Soc. Am. 112(6), 3073-3082 (2002).
Amorim, M. C. P. Diversity of sound production in fish. In: Communication In Fishes (Ladich, F., Collin, S. P., Moller, P. &Kapoor, B. G), Science Publishers, Enfield, pp 71-105 (2006).
Farina, A., Lattanzi, E., Piccioli, L. &Pieretti, N. The SoundscapeMeter, http://www.disbef.uniurb.it/biomia/soundscapemeter (2012).
Bonacito, C. et al. Acoustical and temporal features of sounds of Sciaena umbra (Sciaenidae) in the Miramare Marine Reserve (Gulf of Trieste, Italy). In: Proceedings of XVIII IBAC, International Bioacoustics Council Meeting, Cogne (2001).
Kéver, L. et al. Modifications in call characteristics and sonic apparatus morphology during puberty in Ophidion rochei (Actinopterygii: Ophidiidae). J. Morph. 275, 650-660 (2014).
Kéver, L. et al. Sexual dimorphism of sonic apparatus and extreme intersexual variation of sounds in Ophidion rochei (Ophidiidae): first evidence of a tight relationship between morphology and sound characteristics in Ophidiidae. Front. Zool. 9(34), 1-16 (2012).
Connaughton, M. A. &Taylor, M. H. Seasonal and daily cycles in sound production associated with spawning in the weakfish. Cynoscion regalis. Environ. Biol. Fish. 42, 233-240 (1995).
Tellechea, J. S., Bouvier, D. &Norbis, W. Spawning Sounds in Whitemouth Croaker (Sciaenidae): Seasonal and Daily Cycles. Bioacoustics 20(2), 159-168 (2011).