首页> 外文期刊>Bulletin of Marine Science >VERTICAL MOVEMENT RATE ESTIMATES FOR ATLANTIC ISTIOPHORID BILLFISHES DERIVED FROM HIGH- RESOLUTION POP-UP SATELLITE ARCHIVAL DATA
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VERTICAL MOVEMENT RATE ESTIMATES FOR ATLANTIC ISTIOPHORID BILLFISHES DERIVED FROM HIGH- RESOLUTION POP-UP SATELLITE ARCHIVAL DATA

机译:高分辨率弹出式卫星存档数据推导的大西洋等鳞鱼垂直运动速率估计

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摘要

Development of pop-up satellite archival tag (PSAT) technology has greatly increased our knowledge of billfishes (Arnold and Dewar, 2001). The acquisition and subsequent fisheries-independent transmission of PSAT data via the Argos system has revealed behavioral traits of these comparatively rare species, whose survival depends on the ability to range over large geographical areas (Goodyear et al., 2008). While PSATs are capable of monitoring light level, depth, and temperature at relatively high resolution (i.e., < 60 s intervals), battery power and data volume restrictions can limit data transmissions to summary information only. Occasionally, PSATs are recaptured with fishing gears or recovered after washing ashore (e.g., Gunn et al., 2003; Hoolihan and Luo, 2007). In these instances, the complete archived high-resolution data are accessible from the PSAT memory. Analyzing these data for change in depth (over time) provides an opportunity to derive coarse estimates of vertical movement rates, in lieu of a dedicated speed sensor. Knowing these swimming rates provides the potential to better understand the vertical and thermal habitat use, and bioenergetic optimization of billfishes. Similar swimming capability may also be implied to horizontal movements, helping to elucidate home range and migration patterns. In addition, swimming speed information is a necessary component for building foraging models.
机译:弹出式卫星档案标签(PSAT)技术的发展极大地增加了我们对bill鱼的了解(Arnold and Dewar,2001)。通过Argos系统获取和随后的与渔业无关的PSAT数据传输,揭示了这些相对稀有物种的行为特征,它们的生存取决于在较大地理区域上分布的能力(Goodyear等,2008)。虽然PSAT能够以相对较高的分辨率(即<60 s间隔)监视光水平,深度和温度,但是电池电量和数据量限制可能会将数据传输限制为仅汇总信息。有时,PSAT会被渔具重新捕获或在岸上被洗净后被回收(例如Gunn等人,2003年; Hoolihan和Luo,2007年)。在这些情况下,可以从PSAT存储器访问完整的存档高分辨率数据。通过分析这些数据的深度(随时间)变化,可以代替专用速度传感器,从而获得垂直运动速率的粗略估计。了解这些游泳速率可以更好地了解垂直和热生境的使用,以及对河豚的生物能优化。类似的游泳能力也可能暗示于水平运动,从而有助于阐明家庭范围和迁徙方式。另外,游泳速度信息是建立觅食模型的必要组成部分。

著录项

  • 来源
    《Bulletin of Marine Science》 |2009年第3期|257-264|共8页
  • 作者单位

    NOAA Fisheries, Southeast Fisheries Science Center, Miami, Florida 33149;

    Rosenstiel School of Marine & Atmospheric Science, University of Miami, 4600 Rickenbacker Causeway, Miami, Florida 33149;

    NOAA Fisheries, Northeast Fisheries Science Center, 28 Tarzwell Drive, Narragansett, Rhode Island 02882;

    NOAA Fisheries, Southeast Fisheries Science Center, Miami, Florida 33149;

    NOAA Fisheries, Southeast Fisheries Science Center, Miami, Florida 33149;

    NOAA Fisheries, Southeast Fisheries Science Center, Miami, Florida 33149;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
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