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Digitization TCN: Collaborative Research: oVert: Open Exploration of Vertebrate Diversity in 3D

Digitization TCN: Collaborative Research: oVert: Open Exploration of Vertebrate Diversity in 3D
数字化 TCN:合作研究:oVert:3D 脊椎动物多样性的开放探索
批准号:
1701665
负责人:
Luke Tornabene
金额:
$26.25万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-09-01 至 2023-08-31

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中文摘要
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英文摘要
The oVert (openVertebrate) Thematic Collection Network (TCN) will generate and serve high-resolution digital three-dimensional (3D) data for internal anatomy across vertebrate diversity. Via a network of digitization centers across the US, more than 20,000 fluid-preserved specimens representing over 80% of the living genera of vertebrates will be CT-scanned. This will provide broad coverage for exploration and research on all major groups of vertebrates. Contrast-enhanced scans will be generated that reveal soft tissues and organs. This collection of digital imagery and three-dimensional volumes will be open for exploration, download, and use to address questions related to the discovery of new species, documenting patterns of anatomical diversity and growth, and testing hypotheses of function and evolution. The resource will provide unprecedented global access to valuable specimens in US museum collections and will develop best practices and guidelines for high-throughput CT-scanning, including efficient workflows, preferred resolutions, and archival formats that optimize the variety of downstream applications. Museum specialists will be trained on the generation, curation, and distribution of 3D data, researchers in using 3D anatomical data, and high school and undergraduate students in the tools for creating 3D anatomical models. To drive the use of these digital specimens by K-12 STEM educators, teacher-driven workshops that generate freely available lesson plans focused on specific science standards that are based on digital and printed 3D models of specimens in US museum collections.Data generated by oVert will serve as a catalyst for diverse research projects focused on understanding the vertebrate morphological diversity and will dramatically increase the accessibility of specimens housed in US scientific collections. These anatomical phenotypes represent a common currency that facilitates integration across the fields of taxonomy, evolution, developmental biology, comparative physiology, functional anatomy, paleontology, and ecology. The x-ray computed tomography (CT) scanning gemerates high-resolution digital anatomical data, represented as both 2D image stacks and 3D volumes and surfaces. With these 3D digital specimens, US and international research communities will be able to (1) diagnose, describe, and infer patterns of relationships among both living and extinct vertebrates, (2) test hypotheses of morphological evolution such as patterns of disparity, modularity, and phenotype-environment correlations, (3) develop structure-function models for testing hypotheses about morphological adaptations related to, e.g., feeding and locomotion, and (4) explore relationships between brain and nervous system anatomy and both sensory and musculoskeletal function. The 3D data will be distributed globally through MorphoSource, an on-line data repository for 3D biological specimen data, which will capture standardized metadata, ingest legacy data from previous and existing projects, and will supply media information to data aggregators including iDigBio (www.idigbio.org). Training workshops, both on-site at participating institutions and national society meetings of scientists and educators are planned to foster innovation and capabilities for users of 3D image data.
期刊论文(40)
专著(0)
科研奖励(0)
会议论文
Rediagnosis of the monotypic genus Lepadicyathus Prokofiev 2005 (Gobiesocidae: Diademichthyinae) and redescription of Lepadicyathus minor (Briggs 1955), new combination
单型 Lepadicyathus Prokofiev 2005(Gobiesocidae:Diademichthyinae)的重新诊断和 Lepadicyathus 小(Briggs 1955)的重新描述,新组合
DOI: 10.1007/s10228-021-00851-0
发表时间: 2022
期刊: Ichthyological Research
影响因子: 1.2
作者: [Fujiwara, Kyoji, Conway, Kevin W., Summers, Adam P., Motomura, Hiroyuki]
通讯作者: Motomura, Hiroyuki
Description of a New Genus and Two New Species of Indo-Pacific Clingfishes (Gobiesocidae: Diademichthyinae) with Redescription and Reassignment of Two Species Previously Assigned to Lepadichthys Waite, 1904
印度太平洋蛤仔鱼(Gobiesocidae:Diademichthyinae)的一个新属和两个新种的描述,以及对先前归属于 Lepadichthys Waite 的两个种的重新描述和重新分配,1904 年
DOI: 10.1643/i2020132
发表时间: 2021
期刊: Ichthyology & Herpetology
影响因子: 1.5
作者: [Fujiwara, Kyoji, Conway, Kevin W., Motomura, Hiroyuki]
通讯作者: Motomura, Hiroyuki
Tempestichthys bettyae , a new genus and species of ocean sleeper (Gobiiformes, Thalasseleotrididae) from the central Coral Sea
Tempestichthys bettyae ,来自珊瑚海中部的海洋沉睡者(Gobiiformes,Thalasseleotrididae)的一个新属和新种
DOI: 10.1080/14772000.2022.2090633
发表时间: 2022
期刊: Systematics and Biodiversity
影响因子: 1.9
作者: [Goatley, Christopher H., Tornabene, Luke]
通讯作者: Tornabene, Luke
Microscopy of crustacean cuticle: formation of a flexible extracellular matrix in moulting sea slaters Ligia pallasii
甲壳类动物角质层的显微镜观察:蜕皮海斑 Ligia pallasii 中柔性细胞外基质的形成
DOI: 10.1017/s0025315418001017
发表时间: 2019
期刊: Journal of the Marine Biological Association of the United Kingdom
影响因子: 1.2
作者: [Štrus, J., Tušek-Žnidarič, M., Repnik, U., Blejec, A., Summers, A.]
通讯作者: Summers, A.
29
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