Body stature estimation methods based on femur length evaluated for Homo erectus
TL;DRAbstract
The estimated body sizes of hominin individuals and the averages per species are used in palaeoanthropological research to gain more insight in the biology, ecology and life history of Homo erectus (Aiello and Key 2002; Foley 1987; McHenry and Coffing 2000). For such\ninferences to be made, body size needs to be estimated reliably and accurately. The methods that are used in body stature estimation by the use of femur length are evaluated in this thesis. For this evaluation, 110 stature estimation equations for a range of modern human populations were collected. These equations were used for the calculation of stature estimates for 25 hominin fossils with a range of femur lengths. Such an body stature estimate seems like an exact number, but the real estimate must be a range in order to incorporate the probable error. The error is caused by individual factors such as environmental influences during ontogeny, also at play in modern humans (Hauser et al. 2005), the unknown adaptations of
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The estimated body sizes of hominin individuals and the averages per species are used in palaeoanthropological research to gain more insight in the biology, ecology and life history of Homo erectus (Aiello and Key 2002; Foley 1987; McHenry and Coffing 2000). For such\ninferences to be made, body size needs to be estimated reliably and accurately. The methods that are used in body stature estimation by the use of femur length are evaluated in this thesis. For this evaluation, 110 stature estimation equations for a range of modern human populations were collected. These equations were used for the calculation of stature estimates for 25 hominin fossils with a range of femur lengths. Such an body stature estimate seems like an exact number, but the real estimate must be a range in order to incorporate the probable error. The error is caused by individual factors such as environmental influences during ontogeny, also at play in modern humans (Hauser et al. 2005), the unknown adaptations of
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