Roman Horsemanship and Equestrian Technology: An Experimental Bioarchaeological Framework for Testing Rider Support and Skeletal Adaptation.

This extended abstract presents an experimental bioarchaeological framework for investigating the relationship between equestrian technology, rider biomechanics, and long-term skeletal adaptation, with particular reference to Roman horsemanship. The proposed methodology compares three principal riding conditions: a modern saddle with stirrups, a comparable configuration without stirrups, and a functional reconstruction of the Roman four-horn saddle without stirrups. The aim is to determine whether these configurations generate reproducibly different patterns of lower-limb loading, joint position, muscular demand, and postural stabilisation. Experimentally characterised biomechanical differences would be used to formulate a priori multivariate osteological predictions and tested against independently contextualised archaeological reference populations. Only after validation would the resulting framework be applied to Roman-period habitual riders as a blind test. The approach does not assume the existence of a diagnostic skeletal “stirrup marker” and does not claim that Roman cavalry used stirrups. A Roman skeletal pattern resembling stirrup-supported riding would indicate biomechanical similarity rather than direct evidence for a specific artefact and would require alternative explanations—including saddle design, riding technique, and other forms of foot support—to be evaluated independently. The proposed contribution lies in integrating experimental comparison of stirrup-supported riding, unsupported riding, and reconstructed Roman saddle technology with pre-specified multivariate osteological predictions and an independently validated Roman test. This deposit documents the development of the methodological framework originally introduced in Lama (2026), Testing the Pre-Medieval Stirrup Paradigm: A Bioarchaeological Research Hypothesis Based on Lower-Limb Skeletal Biomechanics, Zenodo, DOI: 10.5281/zenodo.22777857. It presents a research proposal and methodological framework and reports no empirical results.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-16
DOI
https://doi.org/10.5281/zenodo.22779381
Primary Topic
Mechanics and Biomechanics Studies
Type
article
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Roman Horsemanship and Equestrian Technology: An Experimental Bioarchaeological Framework for Testing Rider Support and Skeletal Adaptation.

Giovanni Lama
Zenodo (CERN European Organization for Nuclear Research)
Mechanics and Biomechanics Studies
article

Roman Horsemanship and Equestrian Technology: An Experimental Bioarchaeological Framework for Testing Rider Support and Skeletal Adaptation.

Giovanni Lama
article en

Abstract

This extended abstract presents an experimental bioarchaeological framework for investigating the relationship between equestrian technology, rider biomechanics, and long-term skeletal adaptation, with particular reference to Roman horsemanship. The proposed methodology compares three principal riding conditions: a modern saddle with stirrups, a comparable configuration without stirrups, and a functional reconstruction of the Roman four-horn saddle without stirrups. The aim is to determine whether these configurations generate reproducibly different patterns of lower-limb loading, joint position, muscular demand, and postural stabilisation. Experimentally characterised biomechanical differences would be used to formulate a priori multivariate osteological predictions and tested against independently contextualised archaeological reference populations. Only after validation would the resulting framework be applied to Roman-period habitual riders as a blind test. The approach does not assume the existence of a diagnostic skeletal “stirrup marker” and does not claim that Roman cavalry used stirrups. A Roman skeletal pattern resembling stirrup-supported riding would indicate biomechanical similarity rather than direct evidence for a specific artefact and would require alternative explanations—including saddle design, riding technique, and other forms of foot support—to be evaluated independently. The proposed contribution lies in integrating experimental comparison of stirrup-supported riding, unsupported riding, and reconstructed Roman saddle technology with pre-specified multivariate osteological predictions and an independently validated Roman test. This deposit documents the development of the methodological framework originally introduced in Lama (2026), Testing the Pre-Medieval Stirrup Paradigm: A Bioarchaeological Research Hypothesis Based on Lower-Limb Skeletal Biomechanics, Zenodo, DOI: 10.5281/zenodo.22777857. It presents a research proposal and methodological framework and reports no empirical results.

Zenodo (CERN European Organization for Nuclear Research)
Openalex Percentile: Top 20%
Mechanics and Biomechanics Studies
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Roman Horsemanship and Equestrian Technology: An Experimental Bioarchaeological Framework for Testing Rider Support and Skeletal Adaptation. — Giovanni Lama · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS