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Evolution of the brain in Theropoda (Dinosauria).

机译:Theropoda(Dinosauria)中大脑的进化。

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摘要

The description of natural and artificial endocasts has become routine since the work of Tilly Edinger. Most workers write little more than simple descriptions of isolated specimens because endocasts are rare, and scattered throughout the world. Harry Jerison took the next step and broadly compared endocasts in detail, using them for evolutionary studies of brain size and intelligence. In those studies, Jerison concluded that dinosaurs (excluding birds) had the brain size expected for "reptiles" of their size. However insightful, many equations and assumptions Jerison used are now questioned. The goals of this study are to continue the comparative work of Edinger and Jerison, and to employ more modern techniques and information than was available when Jerison's studies were conducted, to either verify or overturn his hypotheses.; Most of this study was completed using the Department's High Resolution X-ray Computed Tomographic (CT) Scanner, which allowed digital endocasts to be made from intact braincases. This increased the number of taxa available for analyses to 18. These endocasts are described in detail, allowing 14 characters to be identified and scored. Several analyses are done, one using just the examined taxa and characters, and three in which the characters are added to existing data matrices. These analyses showed the 14 characters contain useful phylogenetic information, and one of the phylogenies had a polytomy resolved owing to the addition of the characters.; The endocast characters also show similarities in brain architecture between pterosaurs and birds, and indicate that an avian-style brain evolved gradually through the theropod lineage. The character transitions that show the gradual evolution in the cerebral hemispheres, optic lobes, floccular lobes, and other brain features in the sequence of studied endocasts form the basis for testing inferences about theropod biology, behavior, and intelligence. Trends concerning theropod sensory and prey catching ability are tested and supported, indicating that theropods became more dependent on sight, and less dependent on smell, over time, and developed better hand-eye coordination, agility, and balance for capturing smaller prey, whereas using Encephalization Quotients for intelligence determination is disputed. This hypothesis testing is one of the strengths of digital endocasts.*; *This dissertation is a compound document (contains both a paper copy and a CD as part of the dissertation). The CD requires the following system requirements: QuickTime.
机译:自蒂莉·爱丁格(Tilly Edinger)工作以来,对自然和人工内artificial的描述就已成为常规。大多数工作人员只对孤立的标本进行简单的描述,因为内铸物很少见,并且散布在世界各地。哈里·杰里森(Harry Jerison)迈出了下一步,广泛地比较了内播,将其用于大脑大小和智力的进化研究。杰里森在这些研究中得出的结论是,恐龙(不包括鸟类)的大脑大小相当于它们的“爬行动物”的大小。不管多么有见地,杰里森使用的许多方程式和假设现在都受到质疑。这项研究的目的是继续进行爱丁格和杰里森的比较工作,并采用比杰里森进行研究时更多的现代技术和信息,以证实或推翻他的假设。这项研究的大部分工作是使用美国国防部的高分辨率X射线计算机断层扫描(CT)扫描仪完成的,该扫描仪允许使用完整的脑箱制作数字内窥镜。这样一来,可用于分析的分类单元数量增加到18个。对这些内播进行了详细描述,可以识别和评分14个字符。完成了几种分析,一种仅使用检查的分类单元和字符,而第三种将字符添加到现有数据矩阵中。这些分析表明,这14个字符包含有用的系统发育信息,其中一个系统发育因添加了这些字符而解决了多义性。内生角色在翼龙和鸟类之间的大脑结构上也显示出相似之处,并表明禽类大脑通过兽脚亚目世系逐渐进化。在所研究的内endo菌序列中,表现出大脑半球,视裂片,絮状裂片和其他脑部特征逐渐演变的特征转变,构成了测试有关兽脚类生物学,行为和智力的推论的基础。测试并支持了有关兽脚类动物感觉和猎物捕捉能力的趋势,表明随着时间的推移,兽脚类动物变得越来越依赖于视线,而对气味的依赖性越来越小,并发展了更好的手眼协调性,敏捷性和平衡性,可以捕获较小的猎物。确定智力的脑化商有争议。这种假设检验是数字内播的优势之一。 *本论文是复合文件(作为论文的一部分,包含纸质副本和CD)。该CD需要满足以下系统要求:QuickTime。

著录项

  • 作者

    Franzosa, Jonathan William.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Paleontology.; Paleozoology.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 381 p.
  • 总页数 381
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 古生物学;古动物学;
  • 关键词

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