Sharp Force Trauma and Chop Mark Identification Bias
Experimental Evidence on the Effects of Bone Morphology, Cortical Thickness, and Ax Material
Datos Bibliográficos
| ID | 12371672 |
|---|---|
| Autores | Tiffany Okaluk (0000-0002-5289-8428, Ariel University Institute of Archaeology Ari'el Israel, autor de correspondencia), Justin Dallmann (The University of Winnipeg Professional, Applied and Continuing Education Winnipeg Manitoba Canada), Haim Cohen (0000-0002-6613-8710, Ariel University), Tina L Greenfield (The University of Winnipeg Winnipeg Manitoba Canada), Itzick Shai (Ariel University Institute of Archaeology Ari'el Israel) |
| Año | 2025 |
| Volumen | 36 |
| Número | 1 |
| Páginas | 88-100 |
| Fecha de publicación | 2025-12-16 |
| Peer Reviewed | Sí |
| Open Access | Sí |
| Tipo | ARTICLE |
| Revista | International Journal of Osteoarchaeology (JOURNAL) |
| Identificadores de la revista | ISSN: 1047-482X • E-ISSN: 1099-1212 |
| Editorial | Wiley (PUBLISHER • GB) |
| DOI | 10.1002/oa.70058 |
| OpenAlex | W7115565943 |
| Idioma | EN |
| Citas recibidas | 1 |
| Referencias citadas | 22 |
Sharp force trauma (SFT) is the main criterion used to identify chop mark butchery in zooarchaeology, yet its reliability as a diagnostic feature has not been systematically tested. Chop marks reflect both cutting and fracturing processes and exhibit characteristics of both sharp and blunt trauma. When present, SFT creates a distinct anthropogenic surface that is easily recognizable, whereas chops lacking SFT can resemble general fracture surfaces. This study investigates the potential bias within chop mark analysis by testing how bone type, cortical thickness, and ax material influence the presence and magnitude of SFT. Medium‐sized mammal femora and cervical vertebrae were impacted using stone, copper, bronze, iron, and modern steel ax heads under controlled energy conditions using the Instron 9440 Drop Tower System. Results modeled with a Bayesian hurdle‐lognormal framework show that bone morphology and tool material jointly determine SFT formation and depth. Iron and steel axes generated SFT more often and with greater depth than stone or copper axes, while femora produced significantly less visible SFT than vertebrae. Reliance on SFT as the main diagnostic criterion introduces material and mechanical bias, obscuring evidence of certain tool types and distorting interpretations of butchery behavior
Blunt · Bone fracture · CHOP · Cortical bone · Fracture (geology · Identification (biology · Materials testing · Archaeology and ancient environmental studies · Forensic Anthropology and Bioarchaeology Studies · Pleistocene-Era Hominins and Archaeology
An Introduction to Zooarchaeology
Scanning Electron Microscopy in Archaeology
Applications of Scanning Electron Microscopy to Taphonomic Problems
BRMS
Macroscopic Chop Mark Identification on Archaeological Bone
The Advent of the Age of Iron in the Land of Israel
A new Ghassulian metallurgical assemblage from Bet Shemesh (Israel) and the earliest leaded copper in the Levant
Archaeometallurgical investigation of thirteenth–twelfth centuries BCE bronze objects from Tel Beth-Shemesh, Israel
An experimental investigation of sharp force skeletal trauma with replica Bronze Age weapons
The Fall of the House of Flint”
Arrowheads, Axes, Ad Hoc, and Sickles
M iddle B ronze A ge II Battleaxes from R ishon L e Z ion, I srael
Aggrandisers and the first copper-base metallurgy in Southeast Asia
An Experimental Study of the Morphological Characteristics of Tool Marks
| Obras citantes distintas | 1 |
|---|---|
| Citas por año | 1 |
| Intervalo de citas | 2026 - 2026 (1) |
| Velocidad de citación | current |
| Altamente citado | No |
| Tipos de cita | Neutras: 1 |