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April 22, 2026Shoulder & Elbow0 citations

Added effect of graded motor imagery to rehabilitation protocol for post-operative rotator cuff repair on pain, kinesiophobia, functions, and mobility—a randomized controlled pilot study

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VCVandana ChandaragiHigher Education AcademyPGPeeyoosha GurudutSKSahil KaleHigher Education Academy

Key Points

  • The study aims to investigate the added benefits of graded motor imagery alongside traditional rehabilitation after rotator cuff surgery.
  • 16 participants underwent random assignment to either graded motor imagery with conventional rehabilitation or only conventional rehabilitation.
  • Primary outcomes measured included pain, kinesiophobia, shoulder function, and mobility at various time points.
  • GMI was implemented in phases starting day 3 post-surgery, alternating with rehabilitation sessions at home or outpatient.
  • Participants in the experimental group exhibited significant reductions in pain, kinesiophobia, and enhancements in functional status and mobility.
  • Specific improvements included a decrease in pain scores (d = -2.55; P = .002) and enhanced shoulder mobility in various directions, with significant results across all mobility measures.

Abstract

Background Severe grade rotator cuff injuries require surgery, but post-surgical pain and kinesiophobia can hinder rehabilitation. Graded Motor Imagery (GMI) aids to reduce these challenges through its three phases. However, there is less supporting evidence on the effect of GMI in post-surgical shoulder rehabilitation cases. Objective To explore the added effect of GMI combined with conventional rehabilitation on pain, kinesiophobia, functions, and joint mobility following rotator cuff repair Methods 16 participants (aged 45–60) were randomly assigned to experimental (GMI + conventional rehabilitation) and control (conventional rehabilitation) groups. Primary outcome was pain (NPRS), and secondary outcomes were kinesiophobia (TSK), shoulder function (Quick DASH), and mobility (goniometer). Assessments occurred pre-operatively, 3rd post-op day pre-rehab, and post-­­rehab after 3 weeks. Phase 1 GMI began post-immobilization (day 3) in the hospital; Phases 2 and 3 followed on alternate days after discharge via home or OPD sessions according to the convenience of the patient. Results At 3 weeks, experimental group showed improvements across all measures, pain ( d = −2.55; P = .002), kinesiophobia ( d = −3.18; P = .001), functional status ( d = −1.71; P = .007) and shoulder mobility flexion ( d = 4.65; P = .0001), abduction ( d = 6.43; P = .0001), Internal ( d = 1.48; P = .012) and External rotation ( d = 2.71; P = .002). Conclusion Adding GMI to conventional post-surgical rehabilitation may help to reduce pain and kinesiophobia, thereby improving functional outcomes and mobility following rotator cuff repair.

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Cite This Study

Chandaragi et al. (2026) studied this question.

synapsesocial.com/papers/69e865476e0dea528dde9d0fhttps://doi.org/10.1177/17585732261443471
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