Using aerial surveys to estimate density and distribution of harbour porpoises in Dutch waters

To investigate harbour porpoise density and distribution in Dutch waters, dedicated line transect distance sampling aerial surveys were conducted from May 2008 to March 2010. In total 10,557 km were covered on survey effort during 16 survey days in February to May, August, November and December. Usi...

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Published in:Journal of Sea Research
Main Authors: Scheidat, M., Verdaat, H., Aarts, G.M
Format: Article in Journal/Newspaper
Language:English
Published: 2012
Subjects:
Online Access:http://imis.nioz.nl/imis.php?module=ref&refid=231102
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spelling ftnioz:oai:imis.nioz.nl:231102 2023-05-15T16:33:27+02:00 Using aerial surveys to estimate density and distribution of harbour porpoises in Dutch waters Scheidat, M. Verdaat, H. Aarts, G.M 2012 http://imis.nioz.nl/imis.php?module=ref&refid=231102 en eng info:eu-repo/semantics/altIdentifier/wos/000303225300001 info:eu-repo/semantics/altIdentifier/doi/doi.org/10.1016/j.seares.2011.12.004 http://imis.nioz.nl/imis.php?module=ref&refid=231102 info:eu-repo/semantics/closedAccess %3Ci%3EJ.+Sea+Res.+69%3C%2Fi%3E%3A+1-7.+%3Ca+href%3D%22https%3A%2F%2Fdx.doi.org%2F10.1016%2Fj.seares.2011.12.004%22+target%3D%22_blank%22%3Ehttps%3A%2F%2Fdx.doi.org%2F10.1016%2Fj.seares.2011.12.004%3C%2Fa%3E Phocoena phocoena info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion 2012 ftnioz https://doi.org/10.1016/j.seares.2011.12.004 2022-05-01T13:57:16Z To investigate harbour porpoise density and distribution in Dutch waters, dedicated line transect distance sampling aerial surveys were conducted from May 2008 to March 2010. In total 10,557 km were covered on survey effort during 16 survey days in February to May, August, November and December. Using line-transect distance sampling techniques, porpoise density and abundance were estimated for each sub-area and survey season. The density estimate for harbour porpoises during the March 2010 survey (study areas B, C and D) is 1.33 porpoises per km(2) (95% C.I. 0.665-2.566, CV 0.34), which amounts to a total abundance of 66328 porpoises (95% C.I. 32745-125220, CV 0.34). The density shows strong seasonal variability, with the highest densities in winter and spring and the lowest densities in summer. All on effort survey data collected in March 2010 were analysed using a Generalized Additive Mixed Model (GAMM), to quantify the distribution of sightings in space and time. The GAMM reveals a strong effect of hour of day and cloud cover: most porpoises are sighted around noon and at intermediate cloud-cover. It is hypothesized this is either an effect of light conditions affecting sighting probability or within-day variation in behaviour influencing the proportion of time spent at surface. Finally, we discuss why such baseline information on absolute density and distribution is necessary to assess the current and future impact of anthropogenic activities on porpoises, and how it may be used to design the appropriate mitigation measures. Article in Journal/Newspaper Harbour porpoise Phocoena phocoena NIOZ Repository (Royal Netherlands Institute for Sea Research) Journal of Sea Research 69 1 7
institution Open Polar
collection NIOZ Repository (Royal Netherlands Institute for Sea Research)
op_collection_id ftnioz
language English
topic Phocoena phocoena
spellingShingle Phocoena phocoena
Scheidat, M.
Verdaat, H.
Aarts, G.M
Using aerial surveys to estimate density and distribution of harbour porpoises in Dutch waters
topic_facet Phocoena phocoena
description To investigate harbour porpoise density and distribution in Dutch waters, dedicated line transect distance sampling aerial surveys were conducted from May 2008 to March 2010. In total 10,557 km were covered on survey effort during 16 survey days in February to May, August, November and December. Using line-transect distance sampling techniques, porpoise density and abundance were estimated for each sub-area and survey season. The density estimate for harbour porpoises during the March 2010 survey (study areas B, C and D) is 1.33 porpoises per km(2) (95% C.I. 0.665-2.566, CV 0.34), which amounts to a total abundance of 66328 porpoises (95% C.I. 32745-125220, CV 0.34). The density shows strong seasonal variability, with the highest densities in winter and spring and the lowest densities in summer. All on effort survey data collected in March 2010 were analysed using a Generalized Additive Mixed Model (GAMM), to quantify the distribution of sightings in space and time. The GAMM reveals a strong effect of hour of day and cloud cover: most porpoises are sighted around noon and at intermediate cloud-cover. It is hypothesized this is either an effect of light conditions affecting sighting probability or within-day variation in behaviour influencing the proportion of time spent at surface. Finally, we discuss why such baseline information on absolute density and distribution is necessary to assess the current and future impact of anthropogenic activities on porpoises, and how it may be used to design the appropriate mitigation measures.
format Article in Journal/Newspaper
author Scheidat, M.
Verdaat, H.
Aarts, G.M
author_facet Scheidat, M.
Verdaat, H.
Aarts, G.M
author_sort Scheidat, M.
title Using aerial surveys to estimate density and distribution of harbour porpoises in Dutch waters
title_short Using aerial surveys to estimate density and distribution of harbour porpoises in Dutch waters
title_full Using aerial surveys to estimate density and distribution of harbour porpoises in Dutch waters
title_fullStr Using aerial surveys to estimate density and distribution of harbour porpoises in Dutch waters
title_full_unstemmed Using aerial surveys to estimate density and distribution of harbour porpoises in Dutch waters
title_sort using aerial surveys to estimate density and distribution of harbour porpoises in dutch waters
publishDate 2012
url http://imis.nioz.nl/imis.php?module=ref&refid=231102
genre Harbour porpoise
Phocoena phocoena
genre_facet Harbour porpoise
Phocoena phocoena
op_source %3Ci%3EJ.+Sea+Res.+69%3C%2Fi%3E%3A+1-7.+%3Ca+href%3D%22https%3A%2F%2Fdx.doi.org%2F10.1016%2Fj.seares.2011.12.004%22+target%3D%22_blank%22%3Ehttps%3A%2F%2Fdx.doi.org%2F10.1016%2Fj.seares.2011.12.004%3C%2Fa%3E
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