Intra-articular pressures and joint mechanics: Should we pay attention to effusion in knee osteoarthritis?

Résultat de recherche: Articleexamen par les pairs

12 Citations (Scopus)

Résumé

What factors play a role to ensure a knee joint does what it should given the demands of moving through the physical environment? This paper aims to probe the hypothesis that intra-articular joint pressures, once a topic of interest, have been left aside in contemporary frameworks in which we now view knee joint function. The focus on ligamentous deficiencies and the chondrocentric view of osteoarthritis, while important, have left little attention to the consideration of other factors that can impair joint function across the lifespan. Dynamic knee stability is required during every step we take. While there is much known about the role that passive structures and muscular activation play in maintaining a healthy knee joint, this framework does not account for the role that intra-articular joint pressures may have in providing joint stability during motion and how these factors interact. Joint injuries invariably result in some form of intra-articular fluid accumulation. Ultimately, it may be how the knee mechanically responds to this fluid, of which pressure plays a significant role that provides the mechanisms for continued function. Do joint pressures provide an important foundation for maintaining knee function? This hypothesis is unique and argues that we are missing an important piece of the puzzle when attempting to understand implications that joint injury and disease have for joint function.

Langue d'origineEnglish
Pages (de-à)292-295
Nombre de pages4
JournalMedical Hypotheses
Volume83
Numéro de publication3
DOI
Statut de publicationPublished - sept. 2014

ASJC Scopus Subject Areas

  • General Medicine

PubMed: MeSH publication types

  • Journal Article

Empreinte numérique

Plonger dans les sujets de recherche 'Intra-articular pressures and joint mechanics: Should we pay attention to effusion in knee osteoarthritis?'. Ensemble, ils forment une empreinte numérique unique.

Citer