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Sex and ancestry assessment of Brazilian crania using semi-automatic mesh processing tools

机译:使用半自动网格处理工具对巴西颅骨进行性别和血统评估

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The present paper aims to test performances of semi-automatic tools for mesh-to-mesh processing while assessing sex and ancestry in documented human crania. The studied sample of 80 human crania, which originated in two documented Brazilian collections (Sao Paulo, Brazil) was digitized using photogrammetry and laser scanning. 3D cranial morphology was quantified by computing inter-mesh dissimilarity measures using in-house freeware FIDENTIS Analyst (www.fidentis.com). Numerical outputs were further processed using Discriminant Function Analysis and Canonical Variant Analysis in order to classify models into sex and ancestry groups. In addition, cranial morphology was described by a set of 37 landmarks, processed by a Procrustes analysis and confronted with the inter-mesh comparison. Patterns of sexual dimorphism and ancestral group-specific variation were interpreted using average meshes and further emphasized by employing advanced visualization graphics. The mesh-to-mesh processing was capable to detect shape differences related to sex and ancestry. The highest accuracy levels for sex determination were obtained for meshes representing the facial skeleton and the supraorbital region. For both, analysis correctly assigned 82.5% of the crania. Ancestry-related differences were manifested primarily in the global cranial features (observed accuracy rates reaching 63%). The advanced visualization tools provided a highly informative insight into sexual dimorphism and ancestry-related variation. While in the current state the technique cannot be considered suitable for being implemented into the everyday forensic practice, the extent of automatization proved to be perspective, especially for assessing skeletal features that cannot be properly quantified using discrete variables. (C) 2016 Elsevier Ireland Ltd. All rights reserved.
机译:本文旨在测试网眼处理的半自动工具的性能,同时评估已记录的人类颅骨的性别和血统。使用摄影测量法和激光扫描仪对研究的80种人类颅骨样本进行了数字化处理,这些样本来自两个文献记载的巴西馆藏(巴西圣保罗)。通过使用内部免费软件FIDENTIS Analyst(www.fidentis.com)计算网格间差异性度量,可以量化3D颅的形态。使用判别函数分析和规范变异分析进一步处理数字输出,以便将模型分类为性别和祖先组。此外,颅骨形态学由一组37个地标来描述,经过Procrustes分析处理并面临网间比较。使用平均网格来解释性二态和祖先群体特定变异的模式,并通过使用高级可视化图形来进一步强调。网格到网格的处理能够检测与性别和血统有关的形状差异。对于代表面部骨骼和眶上区域的网格,性别确定的最高准确度水平。对于这两种分析,正确分配了82.5%的the。与祖先相关的差异主要表现在整体颅骨特征中(观察到的准确率达到63%)。先进的可视化工具提供了有关性二态性和祖先相关变异的丰富信息。尽管在当前状态下,该技术不能被认为适合于日常的法医实践,但自动化程度已被证明是一种观点,特别是对于评估无法使用离散变量正确量化的骨骼特征而言。 (C)2016 Elsevier Ireland Ltd.保留所有权利。

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