Anatomic variability of the human femur and its implications for the use of artificial bones in biomechanical testing

Marianne Hollensteiner* (First author), Andreas Traweger (Co-author), Peter Augat (Last author)

*Corresponding author for this work

Research output: Contribution to journalReview articlepeer-review

1 Citation (Web of Science)

Abstract

Aside from human bones, epoxy-based synthetic bones are regarded as the gold standard for biomechanical testing os osteosyntheses. There is a significant discrepancy in biomechanical testing between the determination of fracture stability due to implant treatment in experimental methods and their ability to predict the outcome of stability and fracture healing in a patient. One possible explanation for this disparity is the absence of population-specific variables such as age, gender, and ethnicity in artificial bone, which may influence the geometry and mechanical properties of bone. The goal of this review was to determine whether commercially available artificial bones adequately represent human anatomical variability for mechanical testing of femoral osteosyntheses. To summarize, the availability of suitable bone surrogates currently limits the validity of mechanical evaluations of implant-bone constructs. The currently available synthetic bones neither accurately reflect the local mechanical properties of human bone, nor adequately represent the necessary variability between various populations, limiting their generalized clinical relevance.
Original languageEnglish
Pages (from-to)551-562
Number of pages12
JournalBiomedizinische Technik
Volume69
Issue number6
Early online dateJul 2024
DOIs
Publication statusPublished - 17 Dec 2024

Keywords

  • Anatomy
  • Biomechanical testing
  • Femur
  • Osteosynthesis
  • Population variability
  • Surrogate

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