The Batch Artifact Scanning Protocol: A new method using computed tomography (CT) to rapidly create three-dimensional models of objects from large collections en masse

The Batch Artifact Scanning Protocol: A new method using computed tomography (CT) to rapidly create three-dimensional models of objects from large collections en masse
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批量工件扫描协议:一种使用计算机断层扫描 (CT) 从大量集合中快速创建物体三维模型的新方法

DOI:
10.48550/arxiv.2205.02691
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发表时间:
2022
期刊:
ArXiv
影响因子:
--
通讯作者:
P. Olver
P. Olver
中科院分区:
--
文献类型:
--
作者:
K. Yezzi;J. Calder;Mckenzie Sweno;Chloe Siewert;P. Olver

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在人类学中,三维(3D)成像的使用已经变得越来越标准和广泛,因为它拓宽了解决广泛的关键问题的可用途径。3D模型的易用性对研究、文化遗产、教育、科学传播和公众参与产生了重大影响,并有助于保存物理标本和在广泛访问的数据库中存档收藏品。当前的扫描协议有能力创建所需的研究质量的3D模型;然而,它们往往是时间和劳动密集型的,并且在处理大型集合时不实用。在这里,我们描述了一个精简的,批量扫描协议,我们已经开发出使用医疗CT扫描仪快速创建3D模型。虽然这种方法可以用于各种材料类型,但我们使用了大量实验性断裂的有蹄类动物肢骨。使用批量扫描协议,我们能够有效地创建2,474个骨碎片的3D模型,每个样本的速度不到3美元,而使用结构光扫描每个样本平均需要50分钟。
Within anthropology, the use of three-dimensional (3D) imaging has become increasingly standard and widespread since it broadens the available avenues for addressing a wide range of key issues. The ease with which 3D models can be shared has had major impacts for research, cultural heritage, education, science communication, and public engagement, as well as contributing to the preservation of the physical specimens and archiving collections in widely accessible data bases. Current scanning protocols have the ability to create the required research quality 3D models; however, they tend to be time and labor intensive and not practical when working with large collections. Here we describe a streamlined, Batch Artifact Scanning Protocol we have developed to rapidly create 3D models using a medical CT scanner. Though this method can be used on a variety of material types, we use a large collection of experimentally broken ungulate limb bones. Using the Batch Artifact Scanning Protocol, we were able to efficiently create 3D models of 2,474 bone fragments at a rate of less than $3$ minutes per specimen, as opposed to an average of 50 minutes per specimen using structured light scanning.
通过边界积分计算圆形面积和球体体积不变量
DOI: 10.1137/19m1260803
发表时间: 2020
影响因子: 2.1
作者:
O'Neill, Riley C.;Angulo-Uman͂a, Pedro;Calder, Jeff;Hessburg, Bo;Olver, Peter J.;Shakiban, Chehrzad;Yezzi-Woodley, Katrina
通讯作者: Yezzi-Woodley, Katrina
DOI: 10.1007/s12520-021-01335-y
发表时间: 2021
影响因子: 2.2
作者:
Yezzi-Woodley, Katrina;Calder, Jeff;Olver, Peter J.;Cody, Paige;Huffstutler, Thomas;Terwilliger, Alexander;Melton, J. Anne;Tappen, Martha;Coil, Reed;Tostevin, Gilbert
通讯作者: Tostevin, Gilbert