Population size predicts technological complexity in Oceania

Author:

Kline Michelle A.1,Boyd Robert1

Affiliation:

1. Department of Anthropology, University of California, Los Angeles, CA 90095, USA

Abstract

Much human adaptation depends on the gradual accumulation of culturally transmitted knowledge and technology. Recent models of this process predict that large, well-connected populations will have more diverse and complex tool kits than small, isolated populations. While several examples of the loss of technology in small populations are consistent with this prediction, it found no support in two systematic quantitative tests. Both studies were based on data from continental populations in which contact rates were not available, and therefore these studies do not provide a test of the models. Here, we show that in Oceania, around the time of early European contact, islands with small populations had less complicated marine foraging technology. This finding suggests that explanations of existing cultural variation based on optimality models alone are incomplete because demography plays an important role in generating cumulative cultural adaptation. It also indicates that hominin populations with similar cognitive abilities may leave very different archaeological records, a conclusion that has important implications for our understanding of the origin of anatomically modern humans and their evolved psychology.

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,General Environmental Science,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

Reference34 articles.

1. Australian Severe Weather. 2009 South Pacific Tropical Cyclones: JWTC Data . . See http://www.australiasevereweather.com/cyclones/index.html (1 December 2009).

2. A method of determining the warmth and temperateness of climate;Bailey H. P.;Geografiska Annaler,1960

3. Behavioral Ecology and Archaeology

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