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Friction between human skin and incontinence pads in the presence of barrier protection products.

Rachel MorecroftKatherine TomlinsonRoger LewisMatt Carré
Published in: Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine (2023)
This novel experimental work aims to bring further knowledge of frictional performance of common barrier products used in the treatment of incontinence-associated dermatitis and determine how the skin-pad interface changes when a treatment is applied to the skin. Key data is reported and there is an in-depth analysis into friction profiles which reveals great differences between how different skin-pad tribosystems operate when exposed to commercially available barrier treatments. In a wet-pad state Barrier cream A (3M™ Cavilon™ Barrier cream) reduced friction and had much lower dynamic and static coefficients of friction than the other barrier treatments ( Barrier cream B (Sorbaderm Barrier cream) and the Barrier spray C (Sorbaderm Barrier spray)). Barrier cream A provided stable friction coefficients in reciprocating sliding, whereas the other treatments, and untreated skin, did not display this unique characteristic. The barrier spray gave rise to high static friction coefficients and exhibited the most stick-slip. All three candidate barrier protection products were found to reduce directional differences in the static coefficient of friction: indicative of reduced shear loading. Knowledge of the desirable frictional properties would drive innovation in product development, and benefit companies, clinicians and users.
Keyphrases
  • healthcare
  • palliative care
  • magnetic resonance imaging
  • magnetic resonance
  • computed tomography
  • soft tissue
  • big data
  • wound healing
  • deep learning
  • optical coherence tomography