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The Relevance of Ecological Transitions to Intelligence in Marine Mammals

机译:生态转型对海洋哺乳动物智力的相关性

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Macphail’s comparative approach to intelligence focused on associative processes, an orientation inconsistent with more multifaceted lay and scientific understandings of the term. His ultimate emphasis on associative processes indicated few differences in intelligence among vertebrates. We explore options more attuned to common definitions by considering intelligence in terms of richness of representations of the world, the interconnectivity of those representations, the ability to flexibly change those connections, knowledge, and individual differences. We focus on marine mammals, represented by the amphibious pinnipeds and the aquatic cetaceans and sirenians, as animals that transitioned from a terrestrial existence to an aquatic one, experiencing major changes in ecological pressures. They adapted with morphological transformations related to streamlining the body, physiological changes in respiration and thermoregulation, and sensory/perceptual changes, including echolocation capabilities and diminished olfaction in many cetaceans, both in-air and underwater visual focus, and enhanced senses of touch in pinnipeds and sirenians. Having a terrestrial foundation on which aquatic capacities were overlaid likely affected their cognitive abilities. Vocal and behavioral observational learning capabilities in the wild and in laboratory experiments suggest versatility in group coordination. Empirical reports on aspects of intelligent behavior like problem-solving, spatial learning, and concept learning by various species of cetaceans and pinnipeds, suggest rich cognitive abilities. The high energy demands of the brain suggest brain-intelligence relationships might be fruitful areas for the study when specific hypotheses are considered, e.g., brain mapping indicates hypertrophy of specific sensory areas in marine mammals. Modern neuroimaging techniques provide ways to study neural connectivity, and the patterns of connections between sensory, motor, and other cortical regions provide a biological framework for exploring how animals represent and flexibly use information in navigating and learning about their environment. At this stage of marine mammal research, it would still be prudent to follow Macphail’s caution that it is premature to make strong comparative statements without more empirical evidence, but an approach that includes learning more about how animals flexibly link information across multiple representations could be a productive way of comparing species by allowing them to use their specific strengths within comparative tasks.
机译:Macphail的情报比较的方法集中在联想过程,方向不符合以上多方面的铺设和长期的科学认识。他的终极强调联想的过程表明脊椎动物中智力一些区别。我们考虑在世界的表示的丰富性方面情报探索更加切合共同定义选项,这些陈述的互联互通,能够灵活地改变那些连接,知识和个体差异。我们专注于海洋哺乳动物,由两栖鳍足类动物和水生鲸类和海牛目哺乳动物表示,如动物从陆地生存转变为水生一个,在经历生态压力大的变化。它们适于与相关的精简体,在呼吸和体温调节的生理变化,以及感觉/知觉变化,包括许多鲸类回声定位能力和减少的嗅觉形态变换,无论在空气和水中的视觉焦点,和增强的触摸的感测在鳍足和海牛目哺乳动物。有一个地面基础上水产品能力得到叠加可能影响他们的认知能力。声乐和在野外和实验室实验的行为观察学习能力,建议在组协调的通用性。对喜欢解决问题,空间学习,并通过鲸类鳍足类和各种物种概念学习的智能行为方面的经验报告,建议丰富的认知能力。大脑的高能量需求表明大脑智力的关系可能是在特定假设被认为是富有成果的研究领域,例如,脑地形图表明在海洋哺乳动物的特定感觉区肥大。现代神经影像学技术提供的方法来研究神经连接,和感觉,运动之间的连接模式,和其他皮层区域探索动物如何表示和导航,了解他们的环境中灵活地使用信息提供了一个生物框架。在这个阶段,海洋哺乳动物研究的,它仍然是审慎的做法是遵循Macphail的警告说,不宜过早作出没有更多的经验证据较强的比较报表,但包括更多地了解动物如何灵活地跨多个陈述链接信息可能是一个办法让他们比较的任务中使用自己的特殊优势比较物种的生产方式。

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