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Discovering Hominins - Application of Medical Computed Tomography (CT) to Fossil-Bearing Rocks from the Site of Malapa, South Africa

机译:发现人骨素-医学计算机断层扫描(CT)在来自南非马拉帕遗址的含化石的岩石中的应用

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摘要

In the South African context, computed tomography (CT) has been used applied to individually prepared fossils and small rocks containing fossils, but has not been utilized on large breccia blocks as a means of discovering fossils, and particularly fossil hominins. Previous attempts at CT imaging of rocks from other South African sites for this purpose yielded disappointing results. For this study, 109 fossil- bearing rocks from the site of Malapa, South Africa were scanned with medical CT prior to manual preparation. The resultant images were assessed for accuracy of fossil identification and characterization against the standard of manual preparation. The accurate identification of fossils, including those of early hominins, that were not visible on the surface of individual blocks, is shown to be possible. The discovery of unexpected fossils is reduced, thus lowering the potential that fossils could be damaged through accidental encounter during routine preparation, or even entirely missed. This study should significantly change the way fossil discovery, recovery and preparation is done in the South African context and has potential for application in other palaeontological situations. Medical CT imaging is shown to be reliable, readily available, cost effective and accurate in finding fossils within matrix conglomerates. Improvements in CT equipment and in CT image quality are such that medical CT is now a viable imaging modality for this palaeontological application.
机译:在南非背景下,计算机断层扫描(CT)已用于单独准备的化石和包含化石的小岩石,但尚未在大型角砾岩块上用作发现化石,尤其是化石人类素的手段。先前为此目的对来自其他南非站点的岩石进行CT成像的尝试均得出令人失望的结果。在这项研究中,在手动准备工作之前,用医学CT扫描了来自南非马拉帕遗址的109个含化石的岩石。评估所得图像相对于人工制备标准的化石鉴定和表征的准确性。可以对个别块体表面看不见的化石,包括早期人发化石进行准确鉴定。减少了意外化石的发现,从而降低了在常规准备过程中偶然遇到化石甚至完全错过化石的可能性。这项研究应大大改变在南非范围内进行化石发现,恢复和制备的方式,并有可能在其他古生物学环境中应用。医学CT成像显示出在发现基质集团内的化石方面可靠,容易获得,具有成本效益且准确。 CT设备和CT图像质量的提高使得医学CT现在已成为该古生物学应用的可行成像方式。

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