Test-retest reliability of laser evoked pain perception and fMRI BOLD responses

Sci Rep. 2021 Jan 14;11(1):1322. doi: 10.1038/s41598-020-79196-z.

Abstract

Pain perception is a subjective experience and highly variable across time. Brain responses evoked by nociceptive stimuli are highly associated with pain perception and also showed considerable variability. To date, the test-retest reliability of laser-evoked pain perception and its associated brain responses across sessions remain unclear. Here, an experiment with a within-subject repeated-measures design was performed in 22 healthy volunteers. Radiant-heat laser stimuli were delivered on subjects' left-hand dorsum in two sessions separated by 1-5 days. We observed that laser-evoked pain perception was significantly declined across sessions, coupled with decreased brain responses in the bilateral primary somatosensory cortex (S1), right primary motor cortex, supplementary motor area, and middle cingulate cortex. Intraclass correlation coefficients between the two sessions showed "fair" to "moderate" test-retest reliability for pain perception and brain responses. Additionally, we observed lower resting-state brain activity in the right S1 and lower resting-state functional connectivity between right S1 and dorsolateral prefrontal cortex in the second session than the first session. Altogether, being possibly influenced by changes of baseline mental state, laser-evoked pain perception and brain responses showed considerable across-session variability. This phenomenon should be considered when designing experiments for laboratory studies and evaluating pain abnormalities in clinical practice.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adult
  • Humans
  • Lasers*
  • Magnetic Resonance Imaging*
  • Male
  • Pain Perception*
  • Pain* / diagnostic imaging
  • Pain* / physiopathology
  • Prefrontal Cortex* / diagnostic imaging
  • Prefrontal Cortex* / physiopathology
  • Somatosensory Cortex* / diagnostic imaging
  • Somatosensory Cortex* / physiopathology