Modeling of the Effect of Subperiosteal Hydrostatic Pressure Conductivity between Joints on Decreasing Contact Loads on Cartilage and of the Effect of Myofascial Relief in Treating Trigger Points: The Floating Skeleton Theory

Author:

Pitkin Mark R.12ORCID

Affiliation:

1. Department of Orthopaedics & Rehabilitation Medicine, Tufts University School of Medicine, Boston, MA 02111, USA

2. Poly-Orth International, Sharon, MA 02067, USA

Abstract

Chronic overloading of the cartilage can lead to its irreversible destruction, as observed in people with osteoarthritis. The floating skeleton model previously introduced postulates that overloading begins and progresses when a joint is isolated from the hydrostatical connection with other joints. Such a connection occurs via the interstitial fluid in subperiosteal space and allows for pressure transmission between synovial capsules modulating intra-articular pressure. In the current study, a simple experiment was performed to model an obstruction in the subperiosteal hydrostatic pressure conductivity between joints to illustrate the effect of that obstruction on loads borne by the joint. When the obstruction was removed, the load experienced by the joint was reduced as it was redistributed throughout the model structure. The experiment demonstrated that contact pressures can be redistributed when the conditions of Pascal’s Law are met.

Funder

Eunice Kennedy Shriver National Institute of Child Health and Human Development

Publisher

MDPI AG

Reference41 articles.

1. Efficient computation of cartilage contact pressures within dynamic simulations of movement;Smith;Comput. Methods Biomech. Biomed. Eng. Imaging Vis.,2018

2. Contact stresses in the knee joint in deep flexion;Thambyah;Med. Eng. Phys.,2005

3. Corroboration of in vivo cartilage pressures with implications for synovial joint tribology and osteoarthritis causation;Morrell;Proc. Natl. Acad. Sci. USA,2005

4. Thompson, J.W., and Sorvig, K. (2008). Sustainable Landscape Construction: A Guide to Green Building Outdoors, Island Press.

5. Biphasic indentation of articular cartilage—I. Theoretical analysis;Mak;J. Biomech.,1987

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