Morphological adaptation to climate in modern and fossil hominids

Christopher B. Ruff

American Journal of Physical Anthropology · 1994 · 669 citations · 139 references

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TL;DR

Hominids show substantial variation in body size and shape, and evidence suggests that climatic adaptation partly explains this diversity. The study aims to assess how climatic factors shape hominid morphology to improve reconstructions of past body form, behavior, migration, bipedalism, and encephalization. The authors apply a simple thermoregulatory principle—adjusting body surface area to mass in hot versus cold climates—to explain systematic differences in body form between living and fossil hominids across tropical and higher latitude regions. © 1994 Wiley‑Liss, Inc.

Abstract

Hominids—both living and past—exhibit considerable variation in body size and shape. Both theoretical considerations and empirical observations indicate that some of this variation may be attributable to climatic adaptation. Application of the simple thermoregulatory principle of increasing and decreasing body surface area/body mass in hot and cold climates, respectively, may explain the major systematic differences in body form between living and fossil hominids inhabiting tropical and higher latitude regions of the world. Consideration of potential climatic influences on morphology has important ramifications for reconstructing body form and behavior of past hominids, interpreting geographic and temporal variability and migrational events, explaining the origins and perfection of hominid bipedalism, and better understanding changes in brain size and encephalization during hominid evolution. © 1994 Wiley-Liss, Inc.

References

139