Assessment of mechanical strain in the intact plantar fascia
Ross A. Clark · Andrew Franklyn‐Miller · Éanna Falvey · Adam L. Bryant · Simon Bartold · Paul McCrory
Foot
Abstract
BACKGROUND: A method of measuring tri-axial plantar fascia strain that is minimally affected by external compressive force has not previously been reported.
OBJECTIVE: The purpose of this study was to assess the use of micro-strain gauges to examine strain in the different axes of the plantar fascia.
METHOD: Two intact limbs from a thawed, fresh-frozen cadaver were dissected, and a combination of five linear and one three-way rosette gauges were attached to the fascia of the foot and ankle. Strain was assessed during two trials, both consisting of an identical controlled, loaded dorsiflexion.
RESULTS: An ICC analysis of the results revealed that the majority of gauge placement sites produced reliable measures (ICC>0.75). Strain mapping of the plantar fascia indicates that the majority of the strain is centrally longitudinal, which provides supportive evidence for finite element model analysis.
CONCLUSION: Although micro-strain gauges do possess the limitation of calibration difficulty, they provide a repeatable measure of fascial strain and may provide benefits in situations that require tri-axial assessment or external compression.
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Record provenance
Indexed record: W2053492465. Matched to Scopus author 55279534900.
Scopus record ↗Metadata retrieved 2026-09-20. Topic labels are navigation aids derived from title and abstract text.