膜翅目昆虫产卵器的知识:对过去和当前生物仿生研究的回顾。

IF 3.1 3区 计算机科学 Q1 ENGINEERING, MULTIDISCIPLINARY
Martí Verdaguer Mallorquí, Julian Vincent, Andrew Liston, Vladimir Blagoderov, Marc P Y Desmulliez
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引用次数: 0

摘要

生物仿生研究从膜翅目昆虫产卵器的不同形态和特殊功能中汲取灵感。例如,蜜蜂刺的形态被用来制造外科手术针头,这种针头可以减少插入力,最大限度地减少组织损伤,并提高精确度。同样,在蛀木膜翅目昆虫身上观察到的往复式钻孔机制也启发了神经外科用可转向探针的开发,这种探针可在穿刺过程中提供更好的控制并减少创伤。尽管取得了这些进展,但锯蝇的产卵器虽然具有复杂的切割机制,但在生物仿生学方面的研究仍然很少。与蛀木物种不同,大多数锯蝇通常使用锯状产卵器切割植物软组织,这可能会激发精确切割和锯切装置的新设计。本综述认为有必要进一步研究锯蝇产卵器的结构、机械特性和功能原理,以充分挖掘其在生物吸气方面的潜力。我们强调缺乏将产卵器形态与切割效率和基质相互作用联系起来的详细机械研究。了解这些关系可以为医疗或工业切割工具等工程应用发现新的原理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Knowledge from hymenopteran ovipositors: a review of past and current biomimetic research.

Biomimetic research has drawn inspiration from the knowledge acquired from the diverse morphologies and specialized functions of hymenopteran ovipositors. For example, the morphology of the honeybee stinger was used to create surgical needles that reduce insertion forces, minimize tissue damage, and increase precision. Similarly, the reciprocating drilling mechanisms observed in wood-boring hymenopterans inspired the development of steerable probes for neurosurgery, offering improved control and reduced trauma during penetration. Despite these advances, the ovipositors of sawflies, which promise intricate cutting mechanisms, have remained poorly studied in biomimetics. Unlike wood-boring species, most sawflies typically cut through soft plant tissues using their saw-like ovipositors, which could inspire new designs for precise cutting and sawing devices. This review advocates the need for further research into the structure, mechanical properties and functional principles of sawfly ovipositors to fully exploit their potential in bio-inspiration. We highlight the lack of detailed mechanical studies connecting ovipositor morphology to cutting efficiency and substrate interactions. Understanding these relationships could uncover new principles for engineering applications, such as medical or industrial cutting tools.

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来源期刊
Bioinspiration & Biomimetics
Bioinspiration & Biomimetics 工程技术-材料科学:生物材料
CiteScore
5.90
自引率
14.70%
发文量
132
审稿时长
3 months
期刊介绍: Bioinspiration & Biomimetics publishes research involving the study and distillation of principles and functions found in biological systems that have been developed through evolution, and application of this knowledge to produce novel and exciting basic technologies and new approaches to solving scientific problems. It provides a forum for interdisciplinary research which acts as a pipeline, facilitating the two-way flow of ideas and understanding between the extensive bodies of knowledge of the different disciplines. It has two principal aims: to draw on biology to enrich engineering and to draw from engineering to enrich biology. The journal aims to include input from across all intersecting areas of both fields. In biology, this would include work in all fields from physiology to ecology, with either zoological or botanical focus. In engineering, this would include both design and practical application of biomimetic or bioinspired devices and systems. Typical areas of interest include: Systems, designs and structure Communication and navigation Cooperative behaviour Self-organizing biological systems Self-healing and self-assembly Aerial locomotion and aerospace applications of biomimetics Biomorphic surface and subsurface systems Marine dynamics: swimming and underwater dynamics Applications of novel materials Biomechanics; including movement, locomotion, fluidics Cellular behaviour Sensors and senses Biomimetic or bioinformed approaches to geological exploration.
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