Human Variation in Pelvic Shape and the Effects of Climate and Past Population History

Lia Betti1

  • 1Centre for Research in Evolutionary, Social and Inter-Disciplinary Anthropology, Department of Life Sciences, University of Roehampton, London, SW15 4JD, UK.

Insights

The human pelvis shows significant variation, challenging the obstetrical dilemma theory. Evolutionary constraints are lower than previously thought, allowing diverse pelvic shapes due to natural selection and neutral processes.

Area of Science:

  • Human evolution
  • Paleoanthropology
  • Comparative anatomy

Background:

  • The human pelvis is traditionally viewed as an evolutionary compromise (obstetrical dilemma) balancing bipedal locomotion and childbirth.
  • This concept implies strong evolutionary constraints on pelvic shape.
  • However, observed pelvic variation contradicts these expectations.

Purpose of the Study:

  • To re-evaluate the obstetrical dilemma theory in light of recent findings.
  • To understand the sources of high pelvic shape diversity in human populations.
  • To investigate the evolutionary constraints and evolvability of the human pelvis.

Main Methods:

  • Review of existing studies on human pelvic morphology and evolution.
  • Comparative analysis of pelvic shape variation within and between human populations.
  • Examination of evolutionary constraints and evolvability in primate pelves.

Main Results:

  • Recent research challenges the necessity of a narrow pelvis for efficient locomotion.
  • The human pelvis exhibits lower evolutionary constraints and higher evolvability compared to related primates.
  • A lower covariance between functionally important pelvic regions allows for greater morphological variation.

Conclusions:

  • The obstetrical dilemma may not fully explain the tight human cephalo-pelvic fit.
  • High human pelvic diversity arises from a combination of natural selection acting on available variation and neutral processes like genetic drift and migration.
  • Understanding pelvic variation is crucial for interpreting human evolutionary history.

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