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The taphonomy of vertebrate archaeofaunas : bone density and differential survivorship of fossil classes /Lyman, R. Lee. January 1982 (has links)
Thesis (Ph. D.)--University of Washington, 1982. / Vita. Bibliography: leaves 235-255.
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骨化石試料に対する信頼度の高い<14>^C年代, 炭素同位体比測定の試み南, 雅代, Minami, Masayo, 中村, 俊夫, Nakamura, Toshio 03 1900 (has links)
タンデトロン加速器質量分析計業績報告 Summaries of Researches Using AMS 1996 (平成8)年度
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Examining the taphonomic challenges to the 3D digitisation of fragmented boneHolland, Andrew D. January 2017 (has links)
The utilisation of 3D digitisation and visualisation has grown considerably since 2008 and is becoming an increasingly useful tool for the digital documentation and metric analysis of archaeological artefacts and skeletal remains. It provides public access to rare and fragile specimens of palaeontological and palaeopathological importance whilst reducing the physical impact on these remains. Research in engineering and computer vision provides some insight into the impact of surface properties such as colour, specularity, reflectance and shape on the quality of the recorded 3D image, but within the archaeological and palaeontological disciplines comparable work has not yet been developed. If archaeology and anthropology are to provide long term reliable data from archaeological and palaeontological specimens in a way that doesn’t require repeated re-digitisation, we need to understand the impacts that the taphonomic histories of such samples have on our ability to 3D record them. Understanding the relationship of these taphonomic histories and the surface and optical properties will promote informed choices about the suitability of recording techniques. This thesis considers the taphonomic processes that affect the preservation of bone over archaeological, forensic and palaeontological timescales and the effect this has on the quality of 3D digital models. The digital refit of fragmentary bone samples is considered in relation to the effect of taphonomic alterations to bone. Conclusions regarding the key taphonomic factors and 3D digital model quality are drawn and areas of further work are identified.
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Examining the taphonomic challenges to the 3D digitisation of fragmented boneHolland, Andrew D. January 2017 (has links)
The utilisation of 3D digitisation and visualisation has grown considerably since 2008 and is becoming an increasingly useful tool for the digital documentation and metric analysis of archaeological artefacts and skeletal remains. It provides public access to rare and fragile specimens of palaeontological and palaeopathological importance whilst reducing the physical impact on these remains.
Research in engineering and computer vision provides some insight into the impact of surface properties such as colour, specularity, reflectance and shape on the quality of the recorded 3D image, but within the archaeological and palaeontological disciplines comparable work has not yet been developed.
If archaeology and anthropology are to provide long term reliable data from archaeological and palaeontological specimens in a way that doesn’t require repeated re-digitisation, we need to understand the impacts that the taphonomic histories of such samples have on our ability to 3D record them. Understanding the relationship of these taphonomic histories and the surface and optical properties will promote informed choices about the suitability of recording techniques.
This thesis considers the taphonomic processes that affect the preservation of bone over archaeological, forensic and palaeontological timescales and the effect this has on the quality of 3D digital models. The digital refit of fragmentary bone samples is considered in relation to the effect of taphonomic alterations to bone.
Conclusions regarding the key taphonomic factors and 3D digital model quality are drawn and areas of further work are identified. / Arts and Humanities Research Council
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アミノ酸組成ならびに14C年代に関する同一古人骨の部位による比較HIRATA, Kazuaki, NAGAOKA, Tomohito, NAKAMURA, Toshio, MINAMI, Masayo, SAKATA, Ken, 平田, 和明, 長岡, 朋人, 中村, 俊夫, 南, 雅代, 坂田, 健 03 1900 (has links)
名古屋大学年代測定総合研究センターシンポジウム報告
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