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POSTERIOR CENTRE-OF-PRESSURE DISPLACEMENT AND PAIN INTENSITY IN NON-SPECIFIC HEEL PAIN: A SENSOR PLATE OBSERVATIONAL STUDY

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Background: Heel pain does not always come from one clearly identifiable structure. In some people, theway body weight is held and transferred may keep the centre of pressure too far back, placing extra stresson the heel. A sensor plate can show this pattern and help explain why pain continues even when routineexamination does not reveal a definite local cause.Aim: To study whether a backward shift of the centre of pressure is related to the intensity of heel pain inpeople with non-specific heel pain.Methodology: This observational study involved 50 participants aged 20 to 70 years who had non-specificheel pain. Age, body measurements, duration and side of pain, and Visual Analogue Scale scores wererecorded. Sensor plate assessment was used to measure posterior centre-of-pressure shift, forefoot andhindfoot loading, plantar pressure, and overall loading pattern. The relationship between thesemeasurements and pain intensity was analysed statistically.Results: The participants had a mean age of 39.28 ± 11.19 years, a mean BMI of 27.28 ± 3.63 kg/m², and amean VAS score of 3.90 ± 1.13. A greater backward shift of the centre of pressure was associated withhigher heel pain (r = 0.645, p < 0.001). Hindfoot loading also showed a strong positive relationship withpain (r = 0.746, p < 0.001). Participants with greater posterior loading generally reported more severe pain.Conclusion: People with non-specific heel pain tended to show a backward weight-bearing pattern. Thefarther the centre of pressure moved toward the heel, the greater the reported pain. Sensor plate assessmentmay therefore help clinicians identify hidden loading problems and plan treatment beyond the painful areaalone.
Title: POSTERIOR CENTRE-OF-PRESSURE DISPLACEMENT AND PAIN INTENSITY IN NON-SPECIFIC HEEL PAIN: A SENSOR PLATE OBSERVATIONAL STUDY
Description:
Background: Heel pain does not always come from one clearly identifiable structure.
In some people, theway body weight is held and transferred may keep the centre of pressure too far back, placing extra stresson the heel.
A sensor plate can show this pattern and help explain why pain continues even when routineexamination does not reveal a definite local cause.
Aim: To study whether a backward shift of the centre of pressure is related to the intensity of heel pain inpeople with non-specific heel pain.
Methodology: This observational study involved 50 participants aged 20 to 70 years who had non-specificheel pain.
Age, body measurements, duration and side of pain, and Visual Analogue Scale scores wererecorded.
Sensor plate assessment was used to measure posterior centre-of-pressure shift, forefoot andhindfoot loading, plantar pressure, and overall loading pattern.
The relationship between thesemeasurements and pain intensity was analysed statistically.
Results: The participants had a mean age of 39.
28 ± 11.
19 years, a mean BMI of 27.
28 ± 3.
63 kg/m², and amean VAS score of 3.
90 ± 1.
13.
A greater backward shift of the centre of pressure was associated withhigher heel pain (r = 0.
645, p < 0.
001).
Hindfoot loading also showed a strong positive relationship withpain (r = 0.
746, p < 0.
001).
Participants with greater posterior loading generally reported more severe pain.
Conclusion: People with non-specific heel pain tended to show a backward weight-bearing pattern.
Thefarther the centre of pressure moved toward the heel, the greater the reported pain.
Sensor plate assessmentmay therefore help clinicians identify hidden loading problems and plan treatment beyond the painful areaalone.

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