根据2007年T-NASS冰岛和法罗群岛船只调查对北大西洋中部鲸类动物数量的估计

D. Pike, T. Gunnlaugsson, B. Mikkelsen, Sverrir D. Halldórsson, G. Víkingsson, M. Acquarone, G. Desportes
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引用次数: 11

摘要

2007年6月至7月进行的跨北大西洋目击调查(T-NASS)是1987年、1989年、1995年和2001年进行的一系列大规模鲸类调查中的第五次。核心调查区域覆盖约180万nm2,从东经34°东巴伦支海到加拿大东海岸,东、南52°N和78°N之间,西至42°N。我们提供了基于设计的丰度估计,这些丰度估计来自T-NASS的法罗群岛和冰岛船只调查组件,以及覆盖邻近区域的辅助船只的结果。4艘专用调查船使用了buckland - turnck (B-T)模式,带有跟踪平台,在主平台前方搜索区域,并跟踪目击事件,为偏差校正提供数据。对于那些有足够数量的观测的物种,给出了两种未校正的估计,使用来自两个平台的非重复观测组合,以及标记-再捕获估计,校正来自主要平台的因感知和可用性而产生的偏差估计。对核心调查区域的修正估计如下:长须鲸(Balaenoptera physalus): 30,777 (CV=0.19);座头鲸(Megaptera novaeangliae): 18,105 (CV=0.43);抹香鲸(Physeter macrocephalus): 12,268 (CV=0.33);长鳍领航鲸(Globicephala melas): 87,417 (CV=0.38);白喙海豚(Lagenorhynchus albirostris): 91,277 (CV=0.53);白边海豚(L. acutus): 81,008 (CV=0.54)。未经校正的估计仅适用于普通小须鲸(B. acutorstrata): 12,427 (CV=0.27);白鲸(B. borealis): 5159 (CV=0.47)。使用单一平台的辅助船只在重叠区域的发现率低于专用船只。没有发现任何物种的反应性运动的证据,但有一些迹象表明,主要平台的距离测量可能有负面偏差。讨论了这对丰度估计的意义。讨论了B-T测量模式相对于其他测量模式的优点,并对今后的测量提出了建议。
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Estimates of the Abundance of Cetaceans in the Central North Atlantic from the T-NASS Icelandic and Faroese Ship Surveys Conducted in 2007
The Trans-North Atlantic Sightings Survey (T-NASS) carried out in June-July 2007 was the fifth in a series of large-scale cetacean surveys conducted previously in 1987, 1989, 1995 and 2001. The core survey area covered about 1.8 million nm2 spanning from the Eastern Barents Sea at 34°E to the east coast of Canada, and between 52°N and 78°N in the east and south to 42°N in the west. We present design-based abundance estimates from the Faroese and Icelandic vessel survey components of T-NASS, as well as results from ancillary vessels that covered adjoining areas. The 4 dedicated survey vessels used a Buckland-Turnock (B-T) mode with a tracker platform searching an area ahead of the primary platform and tracking sightings to provide data for bias correction. Both uncorrected estimates, using the combined non-duplicate sightings from both platforms, and mark-recapture estimates, correcting estimates from the primary platform for bias due to perception and availability, are presented for those species with a sufficient number of sightings. Corrected estimates for the core survey area are as follows: fin whales (Balaenoptera physalus): 30,777 (CV=0.19); humpback whales (Megaptera novaeangliae): 18,105 (CV=0.43); sperm whales (Physeter macrocephalus): 12,268 (CV=0.33); longfinned pilot whales (Globicephala melas): 87,417 (CV=0.38); white-beaked dolphins (Lagenorhynchus albirostris): 91,277 (CV=0.53); and white-sided dolphins (L. acutus): 81,008 (CV=0.54). Uncorrected estimates only were possible for common minke whales (B. acutorstrata): 12,427 (CV=0.27); and sei whales (B. borealis): 5,159 (CV=0.47). Sighting rates from the ancillary vessels, which used a single platform, were lower than those from the dedicated vessels in areas where they overlapped. No evidence of responsive movement by any species was detected, but there was some indication that distance measurements by the primary platform may have been negatively biased. The significance of this for the abundance estimates is discussed. The relative merits of B-T over other survey modes are discussed and recommendations for future surveys provided.
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