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Applications for advanced 3D imaging, modelling, and printing techniques for the biological sciences

机译:用于生物科学的高级3D成像,建模和印刷技术的应用

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Many zoological activities, including scientific expeditions, or in educational settings, necessitate disruptive removal of specimens from their natural environment. The Anthropogenic Effect theory present by Courchamp clearly indicates the unsustainability of current practices, with dramatic changes necessary for the wellbeing and sustainability of our ecosystems. For both public, and academic, education and research, there is a clear link between increasing rarity and access limitation for certain specimens, leading to the decrease in both public awareness and capability for education and research. From this research's prospective, an idealized situation is where fully digital specimens can be created to represent 3D geometry, visual textures, mechanical properties and specimen functionality, allowing for exact replicas to be generated from this digital specimen when required. Combining this with the use of virtual reality, augmented reality, and mixed reality can satisfy the educational and research needs but also the sustainability of our ecosystems. The aim of this paper is to explore the potential use of combinations of emerging technologies such as 3D scanning alongside various 3D printing and virtual reality techniques to fulfil the goals outlined previously. Examination of the 3D modelling process and how these models can be enhanced for educational proposes will be presented with a focus on corallites and crab specimens. The methods presented are fully translatable with the results showing the true potential of these techniques for education, research and conservation. A futuristic outlook is presented on the potential applications, including education, museum displays, conservation, and scientific analyses, with discussion on the implications for global conversation and sustainability of ecosystems.
机译:许多动物园活动,包括科学探险,或教育环境,都需要从自然环境中删除标本。 CourChamp目前的人为效应理论清楚地表明了当前做法的不可持续性,具有巨大变化,为我们的生态系统的福利和可持续性所必需的。对于公众和学术,教育和研究,在日益罕见和某些标本的通行限制之间存在明确的联系,从而降低了公众意识和教育和研究能力的减少。从本研究的前瞻性,理想化的情况是可以创建完全数字标本来表示3D几何,视觉纹理,机械性能和样本功能,允许在需要时从该数字样本生成精确的副本。将其与使用虚拟现实,增强现实和混合现实相结合,可以满足教育和研究需求,也可以满足我们的生态系统的可持续性。本文的目的是探讨与各种3D打印和虚拟现实技术的3D扫描等新兴技术组合的潜在使用,以满足先前概述的目标。考察3D建模过程以及如何为教育提出提高这些模型的建议,将重点放在珊瑚和蟹样本上。呈现的方法完全可翻译,结果表明了这些教育,研究和保护技术的真正潜力。讨论了潜在的应用,包括教育,博物馆展示,保护和科学分析,包括教育,博物馆展示,保护和科学分析的未来派观。讨论了对生态系统的全球谈话和可持续性的影响。

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