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Investigation of Myotonometer Reliability in Evaluation of Plantar Fascia Biomechanical Properties

Investigation of Myotonometer Reliability in Evaluation of Plantar Fascia Biomechanical Properties in Individuals With Diabetes

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT05452551
Enrollment
30
Registered
2022-07-11
Start date
2021-07-06
Completion date
2022-06-01
Last updated
2023-04-07

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Diabetes, Diabetes Mellitus, Plantar Fascia

Keywords

Diabetes

Brief summary

The study aims to examine the intra-rater, inter-rater, and inter-session reliability of MyotonPRO in measuring plantar fascia mechanical properties in adults with diabetes.

Detailed description

Therefore, changes occur in standing weight-bearing points, loading zones, and gait biomechanics. The thickened plantar fascia increases the risk of developing diabetic foot with increased peak-plantar pressure, and therefore, plantar fasciitis is more common in individuals with diabetes than in healthy individuals. The myotonometer studies showed that chronic diabetes history increases dynamic stiffness, which is one of the mechanical properties of the plantar fascia, and that as the severity of the disease increases, fascial stiffness also increases. The aim of the study is to examine the intra-rater, inter-rater, and inter-session reliability of MyotonPRO in measuring plantar fascia mechanical properties in adults with diabetes.

Interventions

MyotonPRO is a non-invasive myotonometer used to evaluate the viscoelastic properties of soft tissues. Data collection will be carried out by three researchers experienced in the use of myotonometer. Before the evaluations, participant and repeated measurement information for both researchers will be recorded on the device. All assessments will be made bilaterally. The first researcher will perform two measurements 30 minutes apart from the measurement point standardized with MyotonPRO to evaluate the plantar mechanical properties. Then, the second researcher will take two measurements with MyotonPRO from the same point with 30 minutes intervals. One day later, the first researcher will measure again from the same reference point once.

Sponsors

Bitlis Eren University
CollaboratorOTHER
Medipol University
CollaboratorOTHER
İlke KARA, PT
Lead SponsorOTHER

Study design

Observational model
OTHER
Time perspective
CROSS_SECTIONAL

Eligibility

Sex/Gender
ALL
Age
18 Years to 65 Years
Healthy volunteers
No

Inclusion criteria

* Age ≥ 18 years * Body mass index \< 30 kilogram/meter square * Willing to participate in the study * Diagnosed with Type 2 Diabetes * HbA1c level ≥ 6.5% mmol/mol * Fasting plasma glucose ≥126 mg/dl * Random plasma glucose ≥ 200 mg/d

Exclusion criteria

* History of lower extremity injuries * Ulceration localized on plantar fascia * Age ≥ 65 years * Any use of medication that will affect muscle tone

Design outcomes

Primary

MeasureTime frameDescription
Muscle Tone (Hz)Day 1The muscle tone which is a biomechanical property of the forearm muscles will be evaluated with a portable hand-held myotonometer. The MyotonPRO applies a short-intensity mechanical impulse on the skin overlying the muscle or facia. The tissue's response then generates a signal that is recorded, and an internal software program produces an acceleration graph. After each application, the acceleration graph will be examined and if there is any deviation from the normal, the measurements will be repeated. Recordings will be reloaded into the software program and reported for each participant. The oscillation frequency (Hz) represents the resting muscle tone.
Stiffness (N/m)Day 1The muscle tone which is a biomechanical property of the forearm muscles will be evaluated with a portable hand-held myotonometer. The MyotonPRO applies a short-intensity mechanical impulse on the skin overlying the muscle or facia. The tissue's response then generates a signal that is recorded, and an internal software program produces an acceleration graph. After each application, the acceleration graph will be examined and if there is any deviation from the normal, the measurements will be repeated. Recordings will be reloaded into the software program and reported for each participant.
Logarithmic decrementDay 1The muscle tone which is a biomechanical property of the forearm muscles will be evaluated with a portable hand-held myotonometer. The MyotonPRO applies a short-intensity mechanical impulse on the skin overlying the muscle or facia. The tissue's response then generates a signal that is recorded, and an internal software program produces an acceleration graph. After each application, the acceleration graph will be examined and if there is any deviation from the normal, the measurements will be repeated. Recordings will be reloaded into the software program and reported for each participant.

Countries

Turkey (Türkiye)

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026