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Mechanical characteristics of wound dressings

  • Amit Gefen
  • , Paulo Alves
  • , Dimitri Beeckman
  • , José Luis Lázaro-Martínez
  • , Hadar Lev-Tov
  • , Bijan Najafi
  • , Terry Swanson
  • , Kevin Woo
  • Ghent University
  • Hasselt University
  • Catholic University of Portugal
  • Örebro University
  • Complutense University
  • University of Miami
  • Baylor College of Medicine
  • University of California at Los Angeles
  • Wound Education Research Consultancy (WERC)
  • Queen's University Kingston

Research output: Chapter in Book/Report/Conference proceedingChapterpeer-review

Abstract

In the treatment of acute and chronic wounds, the clinical performance of a given foam-based dressing, and, ultimately, the wound healing and cost of care outcomes are strongly influenced by the mechanical performance of the foam material/s within that dressing. Most aspects of the mechanical performance of foam materials, e.g., their stiffness, frictional properties, conformability, swelling characteristics and durability, and the overall mechanical protection provided by a foam-based dressing to a wound strongly depend on the microstructure of the foam components, particularly on their microtopography, density, and porosity. This chapter therefore provides, based on a former comprehensive journal publication of the authors on the topic of mechanical performance of foam dressings [1], a rigorous compilation of clinically relevant theoretical and practical considerations, comprising analytical and experimental research, as well as clinical experience related to the mechanical performance of foams in foam-based wound dressings. The current bioengineering information is useful for establishing understanding of the importance of mechanical properties of foams in foam-based dressings among clinicians and researchers in industry and academia, and other potential stakeholders in the wound care field, e.g., regulators and buyers. This information is also particularly important for the development of standardized test methods for the evaluation of foam-based wound dressings and resulting standard mechanical performance metrics for these dressings.

Original languageEnglish
Title of host publicationApplied Science and Engineering of Wound Dressings and their Clinical Effectiveness
Subtitle of host publicationFrom Design Principles to Physiological Performance
PublisherElsevier
Pages23-55
Number of pages33
ISBN (Electronic)9780323917759
ISBN (Print)9780323972499
DOIs
StatePublished - 1 Jan 2026

Keywords

  • Foam material
  • Microarchitecture
  • Microtopography
  • Polymeric foam dressings
  • Stiffness
  • Strain and stress

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