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The formation, characterization, and transport of brachyuran larval patches: A spatio-temporal analysis.

机译:短臂猿幼虫斑块的形成,特征和运输:时空分析。

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摘要

Understanding the distribution and transport of brachyuran larval forms is germane to understanding the dynamics of juvenile as well as adult populations. Recent studies have shown that zoea larvae of brachyuran crabs often occur in patches that are formed at spawning and persist on time scales ranging from days to at least a week. Related studies have also shown that post-larval stages of brachyuran crabs settle in a similar (i.e., patchy) distribution. The research conducted in this dissertation focused on the biological formation and transport of early-stage larval patches as well as the structure and transport of post-larval patches on the inner shelf and in a secondary estuary (i.e., juvenile nursery area).; Through Chi square analysis gravid crabs were shown to utilize tidal currents to facilitate their migration in and out of the bay and that the majority of crabs using outgoing, tidal currents had hatch-imminent egg masses. The second part of this study applied a hydrodynamic model (ECOM3d) to determine the location of patches of newly hatched blue crab larvae. Results showed the majority of the modeled patch origins were offshore and downshelf of the bay mouth. Patches located in these areas may have a higher probability of being retained near the Delaware Bay (Garvine et al. 1997).; The length scales of megalopal patches were characterized as they were being transported from the inner shelf into the Bay. The dimension of the patches (300–1500 m) was determined through autocorrelation analysis. The present data, combined with results of previous work, suggest that individual patches of crab larvae may remain coherent through the entire period of zoeal and megalopal development.; The length scales of megalopal patches were characterized as they were being transported into a river (nursery area) during an extended downwelling event and a comparable quiescent period. Through autocorrelation analysis the dimension of the patches was determined to range from 400 to 450 m. Patches of Callinectes sapidus (blue crab) megalopae only occurred during the downwelling event. This supports the conceptual idea that blue crab megalopae rely on southward wind events for across-shelf transport to estuarine nursery areas.
机译:理解腕足类幼虫的分布和运输方式与了解少年以及成年种群的动态密切相关。最近的研究表明,短臂蟹的zoea幼虫通常出现在产卵时形成的斑块中,并持续数天至至少一周的时间。相关研究还表明,短臂蟹的幼体后阶段以相似(即斑片状)分布。本文的研究主要集中在早期幼体斑块的生物形成和运输,以及内层架和次生河口(即幼稚园)的幼体后斑块的结构和运输。通过卡方分析,显示出引人注目的螃蟹利用潮汐流来促进它们进出海湾的迁移,并且大多数使用流出的潮汐流的螃蟹都有接近孵化的卵团。这项研究的第二部分应用流体动力学模型(ECOM3d)确定新孵化的蓝蟹幼虫斑块的位置。结果表明,大多数建模的斑块起源都在海上和海湾口的陆架上。位于这些地区的斑块被保留在特拉华湾附近的可能性更高(Garvine等,1997)。巨lop斑块的长度尺度是从内部架子运到海湾时的特征。通过自相关分析确定了斑块的尺寸(300–1500 m)。目前的数据,结合以前的工作结果,表明蟹幼虫的单个斑块可能在整个动物时期和巨人发育期间保持一致。巨lop斑块的长度尺度的特征在于,它们是在延长的下沉事件和相当的静止期期间被输送到河流(苗圃地区)中的。通过自相关分析,斑块的尺寸确定为400至450 m。食蟹Call(italic> sapidus (蓝蟹)的斑块仅发生在下沉事件中。这支持了蓝蟹的大lop依靠南风事件跨架运输到河口苗圃地区的概念。

著录项

  • 作者

    Jones, M. Brandon.;

  • 作者单位

    University of Delaware.;

  • 授予单位 University of Delaware.;
  • 学科 Biology Oceanography.; Biology Ecology.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 122 p.
  • 总页数 122
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋生物;生态学(生物生态学);
  • 关键词

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