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Stereolithographic (SL) biomodelling in palaeontology: a technical note

机译:古生物学中的立体光刻(SL)生物建模:技术说明

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Stereolithographic (SL) biomodelling is a relatively new technology that allows three-dimensional (3D) computed tomography (CT) data to be used to generate accurate solid plastic replicas of biological structures (biomodels). A prospective trial to investigate the utility of biomodelling in palaeontology was performed. Seven fossil specimens were selected. Volumetric 3D reconstructions were generated on each specimen. The data of interest were edited and converted into a form acceptable for SL. SL uses a laser to selectively polymerize photosensitive resin to manufacture each biomodel. The biomodels were assessed for fidelity, internal morphology and for use in display and demonstration. Biomodelling was found to faithfully replicate the fossilized specimens. The most important variable affecting biomodel accuracy was the initial acquisition of 3D CT data. Biomodelling is intuitive, user-friendly technology that facilitates morphological assessment and specimen reconstruction. Biomodelling allowed both internal and external features of fragile specimens to be safely replicated without risk.
机译:立体光刻(SL)生物建模是一种相对较新的技术,允许将三维(3D)计算机断层扫描(CT)数据用于生成生物结构(生物模型)的准确的固体塑料复制品。进行了一项前瞻性试验,以研究生物建模在古生物学中的用途。选择了七个化石标本。在每个样本上生成了体积3D重建。编辑感兴趣的数据并将其转换为SL可接受的格式。 SL使用激光选择性地聚合光敏树脂以制造每个生物模型。评估了生物模型的保真度,内部形态以及用于展示和演示。发现生物模型可以忠实地复制化石标本。影响生物模型准确性的最重要变量是3D CT数据的初始获取。生物建模是一种直观的,用户友好的技术,可促进形态学评估和标本重建。通过生物建模,可以安全地复制易碎样本的内部和外部特征,而没有任何风险。

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