Many cultural assets are in risky situations and they are destined to disappear. Sometimes problems are caused bythe anthropic component (e.g. wars) or by natural disasters (e.g. earthquakes and landslides). At other times thecause of deterioration is due to the slow and inexorable action of atmospheric agents and other natural factorspresent in extreme areas, where preservation of Cultural Heritage is more complex.This contribution deals with 3D documentation of paleontological excavations in extreme contexts that arecharacterized by unfavorable climatic conditions, limited instrumentation and little time available. In particular, thecontribution is focused on the search for a good working procedure which, despite the problems mentioned above,can lead to valid results in terms of accuracy and precision, so that subsequent scientific studies are notcompromised. The proposed case study concerns the recent discovery of fossil footprints at the Site S in Laetoli,within the Ngorongoro Conservation Area (Tanzania), which is a UNESCO World Heritage Site. With the newdiscovery of Site S it was necessary to implement a 3D survey operative protocol with limited equipment and in avery short time. The 3D models, obtained through the “Structure from Motion” (SfM) technique and topographicsupport, were used to perform morphological and morphometric investigations on the new footprints. Through theanalysis it was possible to estimate height and weight of the footprint makers (hominins of the speciesAustralopithecus afarensis). The collected evidence supports marked intraspecific variation in this species, pointingout the occurrence of a considerable difference in size between sexes and suggesting inferences on reproductivebehavior and social structure of these ancient bipedal hominins.The contribution shows how important is to obtain good 3D documentation, even in extreme environment, in orderto reach reliable results for scientific analysis.

3D Survey in Extreme Environment: The Case Study of LaetoliHominin Footprints in Tanzania

GIOVANNI BOSCHIAN;
2019-01-01

Abstract

Many cultural assets are in risky situations and they are destined to disappear. Sometimes problems are caused bythe anthropic component (e.g. wars) or by natural disasters (e.g. earthquakes and landslides). At other times thecause of deterioration is due to the slow and inexorable action of atmospheric agents and other natural factorspresent in extreme areas, where preservation of Cultural Heritage is more complex.This contribution deals with 3D documentation of paleontological excavations in extreme contexts that arecharacterized by unfavorable climatic conditions, limited instrumentation and little time available. In particular, thecontribution is focused on the search for a good working procedure which, despite the problems mentioned above,can lead to valid results in terms of accuracy and precision, so that subsequent scientific studies are notcompromised. The proposed case study concerns the recent discovery of fossil footprints at the Site S in Laetoli,within the Ngorongoro Conservation Area (Tanzania), which is a UNESCO World Heritage Site. With the newdiscovery of Site S it was necessary to implement a 3D survey operative protocol with limited equipment and in avery short time. The 3D models, obtained through the “Structure from Motion” (SfM) technique and topographicsupport, were used to perform morphological and morphometric investigations on the new footprints. Through theanalysis it was possible to estimate height and weight of the footprint makers (hominins of the speciesAustralopithecus afarensis). The collected evidence supports marked intraspecific variation in this species, pointingout the occurrence of a considerable difference in size between sexes and suggesting inferences on reproductivebehavior and social structure of these ancient bipedal hominins.The contribution shows how important is to obtain good 3D documentation, even in extreme environment, in orderto reach reliable results for scientific analysis.
2019
978-3-200-06576-5
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11568/1035351
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