The lifeways of Homo erectus inferred from archaeology and evolutionary ecology
A perspective from East Africa
Bibliographic Data
| ID | 20052002 |
|---|---|
| Authors | Susan CachelJ W K Harris (corresponding author) |
| Year | 2003 |
| Pages | 123-148 |
| Publication date | 2003-09-02 |
| Peer Reviewed | Yes |
| Open Access | No |
| Type | CHAPTER |
| Venue | Early Human Behaviour in Global Context (SOURCE_BOOK) |
| Publisher | Routledge (PUBLISHER • GB) |
| DOI | 10.4324/9780203203279-12 |
| OpenAlex | W2905011839 |
| ISBN | 9780203203279 |
| Language | EN |
| Citations received | 21 |
| References cited | 1 |
The goal of this chapter is to examine the biology and behaviour of Homo erectus, sensu lato, and to re-evaluate the niche structure of this taxon. During this process, the origin, dispersal properties, geographic spread and evolutionary ecology of this species will be discussed. There is a great deal of variability within the hypodigm of this species, as broadly defined. Researchers have long argued about whether this variability reflects the existence of more than one species (e.g. Le Gros Clark 1964; Howell 1978; Howells 1980; Tattersall 1986, 1992; Rightmire 1990, 1996). Alternatively, some researchers, whilst recognizing the strikingly polytypic nature of the fossil material, see no distinct boundary line between Homo erectus and Homo sapiens, and inveigh against the continued use of the taxon Homo erectus (Wolpoff et al. 1994). Many physical anthropologists approach morphological variability as if it were merely a vexing problem that obscures the taxonomic allocation of fossil specimens. Many archaeologists approach behavioural variability merely by continuing to debate about lithic typologies and the definition of stone tool industries and their boundaries. Yet, natural selection on morphology and behaviour cannot occur without population-level variability, and the assessment of shifting variability through time may allow palaeoanthropologists to trace the activity of natural selection and other evolutionary processes. Hence, our emphasis here on evolutionary ecology leads us to recognize that morphological and behavioural variability in time and space are themselves data, and that these data can contribute to a fuller understanding of how evolution has affected fossil hominid populations
Archaeology · Art · Biology · Geography · Homo erectus · Evolution and Paleontology Studies · Pleistocene-Era Hominins and Archaeology · Primate Behavior and Ecology · Ecology
Natural history ofHomo erectus
Modeling the Past
Modeling the Past
Tropical and temperate seasonal influences on human evolution
The Colonization of “Savannahstan”
On the Road to China
Zoogeography
Zoogeography
Beyond Large-Shaped Tools
Tectonics and human evolution
Landscapes of human evolution
The Lower Paleolithic of the Arabian Peninsula
Dispersal and colonisation, long and short chronologies
Carnivory, Coevolution, and the Geographic Spread of the Genus Homo
Early Dispersals of Homo from Africa
Modelling plateau peoples
Possible Traces of Early Modern Human Architectural Heritage
The Information Animal and the Super-brain
The Archaeology of Aquatic Adaptations
Les premières migrations humaines et les premières étapes du peuplement de l'Europe
New evidence for hominin carcass processing strategies at 1.5Ma, Koobi Fora, Kenya
| Unique citing works | 21 |
|---|---|
| Citations per year | 0,84 |
| Citation span | 2001 - 2025 (25) |
| Citation velocity | recent |
| Highly cited | No |
| Citation types | Neutral: 20 |