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On the shape of things: A geometric morphometrics approach to investigate Aurignacian group membership

机译:关于事物的形状:几何形态化方法来调查Aurignacian集团成员

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The manufacture of composite projectile technology requires the production and assemblage of tightly fitted parts designed to fulfill a number of distinct functions. Each part combines a number of techno-functional units, and various processes may be responsible for the shape variability of these units. In order to investigate the relative contribution of each process to the overall variability of a projectile implement, one must identify the point of demarcation between its techno-functional units. In the present paper, the concept of shape modularity is introduced to precisely identify this locus. The application of geometric morphometrics and shape modularity to the study of two Aurignacian osseous projectile point types, i.e., split- and massive-based points, reveals interesting patterns. On both types, the maximum width delimits the distal and proximal techno-functional units of these objects. When focusing on the morphometric variability and the geographic distribution of the implements' proximal unit, the eight shapes identified for split-based points are found over vast regions of Europe. On the other hand, the two proximal shapes defined for massive-based points show a pattern of local, or regional, aggregation. These proximal shapes were likely considered fit for hafting and hunting by the prehistoric populations who reproduced them, and they are interpreted as a proxy for the socially shared rules of production that guided the manufacture of these tool types. They could therefore be used in future studies that aim to identify group membership amongst the Aurignacian metapopulation and the extent of their interactions.
机译:复合弹丸技术的制造需要生产和组装紧密配合的部件,旨在满足许多不同的功能。每个部分结合了许多技术功能单元,并且各种过程可能负责这些单元的形状可变性。为了调查每个过程对射弹工具的整体变化的相对贡献,必须确定其技术功能单位之间的划分点。在本文中,引入了形状模块化的概念以精确识别该基因座。几何形态化学和形状模块化在两个锥形骨颈射点点类型的研究中的应用,即基于分裂和大规模的积分,揭示了有趣的模式。在这两种类型上,最大宽度限定了这些对象的远端和近端技术功能单元。当专注于不同的变异性和工具近端单元的地理分布时,在欧洲广大地区发现了基于拆分点的八种形状。另一方面,为大规模的点定义的两个近端形状显示了本地或区域聚集的模式。这些近端形状可能被认为是由复制它们的史前群体的备用和狩猎,并且他们被解释为为社会共享的生产规则被解释为引导这些工具类型的制造。因此,它们可以在未来的研究中使用,该研究旨在识别AUrignacian Metapulation的团体成员资格以及他们的互动程度。

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