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The Cape south coast of South Africa boasts one of the richest Middle Stone Age (MSA) archaeological records in the world. Here coastal caves and rock shelters contain well-documented archives of early humans, including early evidence of human adornment and jewelry, rock engraving and rock paSabstextinting. It has been suggested that palaeoenvironmental conditions in the area were critical to the survival of the human species. Humans travelled over dune surfaces, interdune areas and beaches during this period. These are now preserved as palaeosurfaces in aeolianites and cemented foreshore deposits, through which the ancient landscapes can be interpreted. Such contemporary sand surfaces may have formed potential canvases on which foraging behaviour or the creation of patterns or symbols could have been recorded. We question whether MSA humans left evidence of their presence other than their footprints when moving over these surfaces, and if so, whether such evidence can be discerned and interpreted today, as a hominin signature preserved in exposures of aeolianite and cemented foreshore deposits. We discuss other agents that could have caused similar patterns, and we consider the merits of eight sites that we have identified on the Cape south coast. In combination they encapsulate the complexity, challenges and potential of such study. We conclude that evidence at some of these sites suggests an anthropic origin, potentially constituting a previously undocumented form of MSA hominin expression and activity.  相似文献   
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A sediment sequence (SP05, 12.5 m long) was taken from the deep zone of Lake Saint-Point (850 m a.s.l.). Sedimentological analyses highlight two main contrasted periods of sedimentation: the Last Glacial Maximum (LGM)/Late Glacial characterized by high silicates and quartz contents the Holocene dominated by the carbonated fraction. At the beginning of the Holocene (11 400 years cal. BP), silicates fraction flux abruptly decreased. The shift between the Late Glacial and the Holocene periods may be explained by forest development in the catchment. From 10 200 to 6800 years cal. BP, silicates and detrital carbonate fractions remained stable before they progressively increased steady till 5000 years cal. BP. Both increases cannot be totally attributed to an anthropic impact since pollen data indicate continuous anthropic activities only dated back from 3000 years cal. BP. They thus resulted from a dominant climatic control. From 5000 years cal. BP, silicates content still increased while detrital carbonates input became steady due to a change in pedogenetic processes affecting the catchment. During the last millennium, silicates and detrital carbonate decreased, probably due to pastureland development.  相似文献   
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