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Technical note: The use of geographical information systems software for the spatial analysis of bone microstructure

机译:技术说明:使用地理信息系统软件进行骨髓间结构的空间分析

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摘要

Geographic information systems (GIS) software is typically used for analyzing geographically distributed data, allowing users to annotate points or areas on a map and attach data for spatial analyses. While traditional GIS-based research involves geo-referenced data (points tied to geographic locations), the use of this technology has other constructive applications for physical anthropologists. The use of GIS software for the study of bone histology offers a novel opportunity to analyze the distribution of bone nano- and microstructures, relative to macrostructure and in comparison to other variables of interest, such as biomechanical loading history. This approach allows for the examination of characteristics of single histological features while considering their role at the macroscopic level. Such research has immediate promise in examining the load history of bone by surveying the functional relationship between collagen fiber orientation (CFO) and strain mode. The diversity of GIS applications that may be utilized in bone histology research is just beginning to be explored. The goal of this study is to introduce a reliable methodology for such investigation and our objective is to quantify the heterogeneity of bone microstructure over an entire cross-section of bone using ArcGIS v 9.3 (ESRI). This was accomplished by identifying the distribution of remodeling units in a human metatarsal relative to bending axes. One biomechanical hypothesis suggests that CFO, manifested by patterns of birefringence, is indicative of mode of strain during formation. This study demonstrates that GIS can be used to investigate, describe, and compare such patterns through histological mapping. Am J Phys Anthropol, 2012.
机译:地理信息系统(GIS)软件通常用于分析地理上分布式数据,允许用户在地图上注释点或区域并附加空间分析数据。虽然传统的基于GIS的研究涉及地理参考数据(与地理位置的点数),但这种技术的使用具有用于物理人类学家的其他建设性应用。使用GIS软件研究骨骼组织学的研究提供了分析骨纳米和微观结构的分布,相对于宏观结构的新机会,并且与其他感兴趣的其他变量相比,例如生物力学负载历史。这种方法允许检查单一组织学特征的特征,同时考虑到在宏观水平的作用。这种研究在通过测量胶原纤维取向(CFO)和应变模式之间的功能关系来检查骨的负荷历史。可以在骨组织学研究中使用的GIS应用的多样性刚刚开始探讨。本研究的目标是为这种调查引入可靠的方法,我们的目的是使用ArcGIS V 9.3(ESRI)来量化骨微观结构在整个骨骼上的异质性。这是通过识别人跖骨中相对于弯曲轴的重塑单元的分布来实现的。一个生物力学假说表明,由双折射模式表现的CFO在形成期间表明应变模式。本研究表明GIS可用于通过组织学映射来研究,描述和比较这些模式。 AM J Phys Anthroper,2012年。

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  • 作者单位

    Department of Anthropology Ohio State University 4034 Smith Laboratory 174 W. 18th Avenue Columbus OH 43210 United States;

    Division of Anatomy Ohio State University Columbus OH 43210 United States;

    Department of Anthropology Ohio State University 4034 Smith Laboratory 174 W. 18th Avenue Columbus OH 43210 United States;

    Department of Anthropology Ohio State University 4034 Smith Laboratory 174 W. 18th Avenue Columbus OH 43210 United States;

    Department of Anthropology Ohio State University 4034 Smith Laboratory 174 W. 18th Avenue Columbus OH 43210 United States;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人类学;
  • 关键词

    biomechanical loading; bone geography; bone histomorphometry;

    机译:生物力学载荷;骨质地理;骨组织形态;

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