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Coleoid cephalopod strategies for powering venous return, responding to sudden visual stimuli and regulating male agonistic behaviour.

机译:鞘状头足类策略可为静脉回流提供动力,对突然的视觉刺激做出反应并调节雄性激动行为。

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摘要

All animals with complex behaviours and closed circulatory systems face similar biological challenges. Well-studied examples of solutions to these challenges come primarily from the vertebrates. However, coleoid cephalopods (Phylum Mollusca) also have complex behaviours and closed circulatory systems. They provide examples of solutions that, while functionally similar to the solutions of the vertebrates, are structurally different. I investigated the structure of coleoid strategies for powering venous return, responding to sudden stimuli and regulating male agonistic behaviour.; Studies into cardiovascular function in coleoids, and especially in cuttlefish, have been limited using traditional techniques. I used ultrasound to image the circulatory organs of the cuttlefish, Sepia officinalis, for the first time. All the large veins (anterior and lateral venae cavae and efferent branchial vessel) contracted in unanaesthetized, untethered, resting cuttlefish. The anterior vena cava and lateral venae cavae contracted peristaltically. I discovered a muscular valve which separated these two unsynchronized vessels and ensured blood flowed in only one direction between them. Contractions of the veins were not timed to mantle movements in a way that was consistent between cuttlefish. Therefore, venous return is likely to be powered by venous contraction in resting cuttlefish, and not by pressures produced inside the mantle cavity by ventilation.; Like other animals, coleoids need to respond to novel, potentially threatening, stimuli in their environment. When resting cuttlefish were presented with a sudden visual stimulus, ventilation and heart rates fell below resting levels. Drops in ventilation and heart rates were inversely proportional to resting rates. Cuttlefish also showed components of the Deimatic Display (including behavioural freezing) and hyperinflated their mantles during the response. The Deimatic Display is part of cuttlefish predator avoidance behaviour. Behavioural freezing (including decreased ventilation rate) may help cuttlefish to prepare for flight by increasing sensory acuity. Mantle hyperinflation helps to prepare cuttlefish for flight by filling the mantle with water prior to escape jetting. Decreased heart rate may be a product of the unusual arrangement of muscles and capillaries in the cuttlefish mantle.; Male squid actively compete for mates. Squid are group-living, and are therefore continuously surrounded by both conspecific males and females. (Abstract shortened by UMI.)
机译:具有复杂行为和封闭循环系统的所有动物都面临着相似的生物学挑战。对于这些挑战的研究充分的实例主要来自脊椎动物。然而,鞘状头足类(Phylum Mollusca)也具有复杂的行为和封闭的循环系统。他们提供了解决方案的示例,这些解决方案的功能与脊椎动物的解决方案相似,但在结构上有所不同。我研究了用于加速静脉回流,响应突然刺激和调节雄性激动行为的类脂策略的结构。使用传统技术限制了对类固醇,尤其是乌贼中心血管功能的研究。我第一次使用超声波对墨鱼乌贼墨的循环器官进行成像。所有的大静脉(前,外侧静脉腔静脉和传出的分支血管)均在未麻醉的,不受束缚的静息墨鱼中收缩。前腔静脉和侧腔静脉蠕动收缩。我发现了一个肌肉瓣膜,将两个不同步的血管分开,并确保血液仅在两个血管之间沿一个方向流动。脉管收缩的时机未按与墨鱼之间一致的方式进行地幔运动。因此,静脉回流可能是由静息墨鱼中的静脉收缩驱动的,而不是由通气在套腔内部产生的压力驱动的。像其他动物一样,类固醇需要对周围环境中新颖的,可能具有威胁性的刺激做出反应。当出现静息的墨鱼突然受到视觉刺激时,通气和心率均低于静息水平。通气量和心率的下降与静息率成反比。墨鱼还显示出Deimatic Display的组成部分(包括行为冻结),并且在响应过程中使披风过度膨胀。 Deimatic Display是避免墨鱼捕食行为的一部分。行为冻结(包括降低的通气速度)可能通过增加感觉敏锐度帮助乌贼为飞行做准备。地幔过度充气可通过在逃逸喷射之前先在地幔中注满水来帮助乌贼准备飞行。心率降低可能是墨鱼地幔中肌肉和毛细血管排列异常的产物。雄性鱿鱼积极竞争伴侣。鱿鱼生活在群体中,因此被雄性和雌性连续地包围着。 (摘要由UMI缩短。)

著录项

  • 作者

    King, Alison J.;

  • 作者单位

    Dalhousie University (Canada).;

  • 授予单位 Dalhousie University (Canada).;
  • 学科 Biology Animal Physiology.; Biology Zoology.; Biology Oceanography.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生理学;动物学;海洋生物;
  • 关键词

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