痣与人——软组织钳的演变与设计。

IF 1.8 4区 心理学 Q3 BEHAVIORAL SCIENCES
Kenneth C Catania, Christopher B Braun
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引用次数: 0

摘要

简介:星鼻鼹鼠是哺乳动物中速度最快的觅食者,能够在不到四分之一秒的时间内识别并吃掉小型猎物。这种能力部分源于鼹鼠非凡的机械感觉星,这是许多研究的重点。然而,快餐也需要一个专门的运动系统和相关的结构。在这里,鼹鼠不寻常的门齿被探索为有效觅食的关键适应。方法:采用1000帧/秒的高速视频,测量鼹鼠捕食时间和牙齿运动。用扫描电镜观察牙齿结构。用光学显微镜对康奈尔大学脊椎动物博物馆的标本进行了研究。以前的调查数据与目前的结果进行了比较。结果:发现了一颗门牙磨损的鼹鼠,该标本往往不能有效地捕获小型猎物,因此与正常标本相比,鼹鼠的处理时间增加了一倍。磨损的牙齿脱落的方式表明,鼹鼠的正常门牙的作用方式类似于一种特定类型的人造手术钳——即所谓的亚萨吉尔肿瘤钳。结论:研究结果揭示了人类外科医生在设计软组织钳时偶然的仿生行为,突出了运动专门化在星鼻鼹鼠快速觅食能力中的重要性,并提出了一些特定的解剖专门化是Holling开创性觅食理论方程中关键变量(空间清除率和处理时间)选择的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Of Moles and Men-The Evolution and Design of Soft Tissue Forceps.

Introduction: Star-nosed moles are renowned as the fastest foragers among mammals, able to identify and eat small prey in less than a quarter of a second. This ability stems in part from the mole's extraordinary mechanosensory star which has been the focus of many investigations. However, fast eating also requires a specialized motor system and associated structures. Here the mole's unusual incisors are explored as a key adaptation for efficient foraging.

Methods: High-speed videos of foraging moles, including microscopic views at 1,000 frames per second were used to measure prey handling time and tooth movements. Scanning electron microscopy was used to assess tooth structure. Specimens from Cornell Museum of Vertebrates were examined with light microscopy. Data from previous investigations were compared to the present results.

Results: A mole with worn front teeth was discovered and this specimen often failed to secure small prey efficiently, thus doubled the mole's handling time compared to normal specimens. The manner in which the worn teeth failed suggested the mole's normal incisors act in a manner analogous to a specific type of man-made surgical forceps-so called Yasargil tumor forceps.

Conclusion: The results reveal an example of serendipitous biomimicry by human surgeons in designing soft-tissue forceps, highlight the importance of motor specializations in the star-nosed mole's fast foraging ability, and suggest some of the specific anatomical specialization that are the result of selection on the key variables (space clearance rate and handling time) in Holling's pioneering foraging theory equation.

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来源期刊
Brain Behavior and Evolution
Brain Behavior and Evolution 医学-行为科学
CiteScore
3.10
自引率
23.50%
发文量
31
审稿时长
>12 weeks
期刊介绍: ''Brain, Behavior and Evolution'' is a journal with a loyal following, high standards, and a unique profile as the main outlet for the continuing scientific discourse on nervous system evolution. The journal publishes comparative neurobiological studies that focus on nervous system structure, function, or development in vertebrates as well as invertebrates. Approaches range from the molecular over the anatomical and physiological to the behavioral. Despite this diversity, most papers published in ''Brain, Behavior and Evolution'' include an evolutionary angle, at least in the discussion, and focus on neural mechanisms or phenomena. Some purely behavioral research may be within the journal’s scope, but the suitability of such manuscripts will be assessed on a case-by-case basis. The journal also publishes review articles that provide critical overviews of current topics in evolutionary neurobiology.
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