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Estimating original flake mass from 3D scans of platform area

机译:通过平台区域的3D扫描估算原始薄片质量

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This study confirms the increased capacity to predict flake mass that arises from more accurately measuring surface area in three dimensions using a digital scanner. We also reveal the existence of significantly different relationships between platform area and flake mass for flakes with different platform types and ventral and dorsal morphologies. These different relationships between platform surface area and mass have not been previously identified, and reveal the complexity of platform/mass relationships. Using multivariate regression of 3D platform surface area and external platform angle we improve the accuracy of predictions of original flake mass. We propose a method for studying reduction intensity on retouched flakes, based on comparing predictions of the initial mass of the flake with measurements of the mass following retouching to estimate the amount of mass removed through retouching. We name this approach the Initial-/Terminal-Mass Comparison, or ITMC. Our experiments demonstrate that the capacity of the 3D platform scans to predict flake mass, and by implication the capacity of the ITMC to estimate mass loss, rivals or exceeds the capacity demonstrated for existing reduction measures.
机译:这项研究证实了使用数字扫描仪更精确地测量三维尺寸表面积所产生的预测薄片质量的能力有所提高。对于具有不同平台类型和腹侧和背侧形态的薄片,我们还揭示了平台面积与薄片质量之间存在显着不同的关系。平台表面积与质量之间的这些不同关系以前尚未被确定,并且揭示了平台/质量关系的复杂性。使用3D平台表面积和外部平台角度的多元回归,我们可以提高原始鳞片质量预测的准确性。我们提出了一种方法,用于研究修饰后的薄片的还原强度,该方法基于将薄片的初始质量的预测值与修饰后的质量测量值进行比较,以估算通过修饰去除的质量量。我们将这种方法称为“初始/终端质量比较”或ITMC。我们的实验表明,3D平台进行扫描以预测薄片质量的能力,并暗示ITMC评估质量损失的能力,可以与现有的减少措施相媲美或超过所证明的能力。

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