Effects of adipose thickness and muscle hardness on pressure pain sensitivity

Sara Finocchietti, Carsten Dahl Mørch, Lars Arendt-Nielsen, Thomas Graven-Nielsen*

*Corresponding author for this work

Research output: Contribution to journalJournal articleResearchpeer-review

27 Citations (Scopus)

Abstract

Objective: Pressure algometry is used for assessment of pain sensitivity. In this study the relation between tissue characteristics and pressure pain thresholds was investigated. Methods: Three-dimensional finite-element computer-models were developed to simulate the tissue stress and strain distribution during pressure stimulation on muscles with different hardness (I, II, III, IV (hardest)) and subcutaneous adipose tissue thickness (normal and thicker). The computer model was validated based on data recorded by computer-controlled pressure-induced muscle pain in 8 and 16 partecipants, respectively. Results: The experimental pressure-indentation curve fitted the outcome of the FE model (R>0.73). Stress and strain were extracted from the models at a known painful pressure stimulation level. PPT and PPTO were not significantly different in subjects with normal and thick adipose tissue in accordance with the simulation model where the strain in muscle tissue was comparable in the two conditions. The strain in adipose tissue was larger in subjects with thick adipose tissue compared with normal adipose thickness. In relaxed muscle (hardness I) the principal strain peaked at 0.12 in the adipose tissue, was reduced to 0.07 in the muscle tissue and 0.05 in the harder muscle. Significantly higher PPT and PPTO were recorded in harder compared with softer muscles (P

Original languageEnglish
JournalThe Clinical Journal of Pain
Volume27
Issue number5
Pages (from-to)414-424
Number of pages11
ISSN0749-8047
DOIs
Publication statusPublished - Jun 2011

Keywords

  • finite element model
  • muscle hardness
  • muscle pain
  • pressure algometry

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