Skip to main content
Kent Academic Repository

Evaluating Haversian canal-to-osteon ratios for reconstructing bone remodelling activity: balancing precision and efficiency in data collection

Cooke, Karen M., Pearce, Isabella, Aland, R. Claire, Louys, Julien, Mahoney, Patrick, Miszkiewicz, Justyna J. (2026) Evaluating Haversian canal-to-osteon ratios for reconstructing bone remodelling activity: balancing precision and efficiency in data collection. Journal of Bone and Mineral Metabolism, . ISSN 0914-8779. (doi:10.1007/s00774-026-01747-7) (KAR id:115686)

PDF Publisher pdf
Language: English


Download this file
(PDF/1MB)
[thumbnail of s00774-026-01747-7.pdf]
Preview
Request a format suitable for use with assistive technology e.g. a screenreader
PDF Author's Accepted Manuscript
Language: English

Restricted to Repository staff only

Contact us about this publication
[thumbnail of Cooke et al JBMM accepted.pdf]
Official URL:
https://doi.org/10.1007/s00774-026-01747-7
Additional URLs:

Abstract

Introduction

In cortical bone histology, the ratio of Haversian canal and secondary osteon areas reflects bone resorption and formation during metabolic events executed by Basic Multicellular Units (BMUs). Area data can be pooled where they are collected independently, and the ratio calculated from the mean of each measure. They can also be paired, where they are measured from the same secondary osteon at once and the mean of individual ratios is calculated. We evaluate the impact of pooling and pairing on the resulting ratio values and their interpretation of bone remodelling.

Materials and Methods

Using both approaches, we calculated the area ratio of 551 Haversian canals and secondary osteons from measurements of existing midshaft femur histology slides. The sample represents n=38 young and middle-aged females of different social backgrounds from a historical osteological collection. Univariate and bivariate statistics were used to compare and evaluate paired and pooled values and their differences.

Results

The pooled method usually returned a lower canal-to-osteon value than paired data across the whole sample, ages, and social groups. These methods differed in the ratios they produced, independently of the number of measurements per sample.

Conclusions

The pooling technique indicated the presence of thicker lamellar bone within secondary osteons, suggesting greater quantities of bone formed during BMU activity, than the paired technique results, which suggested less bone formed per BMU. While pooling offers efficiency in data collection and analysis, we show that paired data yield more biologically precise and analytically flexible results at an individual BMU level.

Item Type: Article
DOI/Identification number: 10.1007/s00774-026-01747-7
Uncontrolled keywords: Secondary osteon, Haversian canal, Haversian systems, Histomorphometry
Subjects: Q Science
Institutional Unit: Schools > School of Natural Sciences > Chemistry and Forensic Science
Former Institutional Unit:
There are no former institutional units.
Funders: Australian Research Council (https://ror.org/05mmh0f86)
Depositing User: Patrick Mahoney
Date Deposited: 29 Jun 2026 09:05 UTC
Last Modified: 18 Aug 2026 14:04 UTC
Resource URI: https://kar.kent.ac.uk/id/eprint/115686 (The current URI for this page, for reference purposes)

University of Kent Author Information

Mahoney, Patrick.

Creator's ORCID: https://orcid.org/0000-0002-2715-3096
CReDIT Contributor Roles:

Miszkiewicz, Justyna J..

Creator's ORCID:
CReDIT Contributor Roles:
  • Depositors only (login required):

Total unique views of this page since July 2020. For more details click on the image.