CClinicalTrials.gg
CompletedNCT06736210Updated Dec 16, 2024

The Role of Extrinsic Foot Muscles Chances in Determining the Risk of Diabetic Foot Ulcer

An interventional study of Muscle Elastic Properties Measurement and Muscle Oxygen Saturation (SmO2) in Diabetic Foot and Diabetes Mellitus, sponsored by Istanbul Saglik Bilimleri University. Completed at 1 site in Turkey. Per ClinicalTrials.gov, last updated 2024-12-16.

Sponsored by Istanbul Saglik Bilimleri University · Not applicable, Interventional, and Screening

Phase
Not applicable
Study type
Interventional
Enrollment
30
Allocation
Non-randomized
Sex
All
01

Study summary

Many foot and lower limb disorders resulting from diabetes, such as deformity, muscle weakness, reduced range of motion, stiffness of connective tissue, amount of oxygenation, functional capacity, poor balance and coordination, can potentially be corrected or prevented with specific interventions (15). It is important to diversify assessment methods for the development and elaboration of prevention strategies. Rapid, low-cost and detailed evaluations provide good planning of treatment. According to the International Diabetic Foot Study Group (IDFG) scale used to determine the risk of diabetic foot ulcer, it is thought that performing a plantar pressure analysis of a patient with diabetes to determine the people who do not have foot ulcers but are at risk, knowing the difference in the amount of muscle oxygenation of the muscles around the foot and ankle with healthy people and the change in muscle elastic properties will be important in terms of preventing the occurrence of diabetic foot ulcers and determining the changes of the treatments applied in the lower extremities.

Read the detailed description

Recent guidelines for the treatment and prevention of diabetic foot complications emphasize the management/control of diabetes, foot care, patient education and self-management of foot care . Other rehabilitation approaches, including exercise therapy, have recently come to the forefront in the literature within the scope of preventive treatments. Exercises have been shown to be beneficial in diabetic patients, especially in increasing nerve velocity conduction in the lower extremities . As a result of these recommendations, evaluation of the risk of diabetic foot ulceration before ulceration develops, detailed analysis of all tissues and systems expected to be affected may be solved with preventive strategies by reducing the need for treatment.

The change in plantar pressure distribution in patients with diabetes is one of the mechanisms that form the basis of the mechanisms of foot ulcer formation. Altered biomechanical structure, high intensity and repetitive diffuse pressure due to neuropathy, and insufficiency of vascular tissues caused by peripheral arterial disease directly affect the plantar pressure distribution . Determining this change before diabetic wound formation, analyzing the changing plantar pressure ratios and determining the condition in the presence of neuropathy may improve the quality of the treatment program to be created.

In the study conducted by Stephens et al. In the study conducted by Stephens et al. the plantar surface tissue of the intrinsic foot muscles oxidized following exercise interventions in patients diagnosed with diabetes mellitus.

02

Conditions studied

  • Diabetic Foot
  • Diabetes Mellitus

Keywords

  • Diabetic Foot
  • Muscle Oxygenation
  • Muscle Elasticity
03

In context

Diabetic Foot

1,054 studies on the registry are indexed under Diabetic Foot; 222 are open to participants now.

This study's enrollment of 30 is below the median of 60 across 826 interventional studies indexed under Diabetic Foot.

Browse Diabetic Foot studies →

Lead sponsor

Istanbul Saglik Bilimleri University is the lead sponsor of 58 studies on the registry; 15 are open to participants now.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
Child (0–17), Adult (18–64), Older adult (65+)
Sexes eligible
All
Accepts healthy volunteers
Yes

Inclusion criteria

  • Willingness to participate in the study
  • Absence of current or past diabetic foot ulcers
  • Classification within the 0 or 1 categories of the IWGDF classification system

Inclusion Criteria for Sedentary Healthy Participants:

  • Willingness to participate in the study
  • Not engaging in active sports activities
  • Absence of current or past foot ulcers

Exclusion criteria

Exclusion Criteria for all group:

  • Presence of orthopedic, musculoskeletal, vestibular, visual, or neurological problems affecting mobility (other than DPN)
  • History of prior orthopedic surgical intervention in the lower extremity
  • Dementia or inability to provide consistent information
  • Presence of major vascular complications (venous or arterial ulcers)
  • Diagnosis of PAH (Peripheral Arterial Hypertension)
  • Presence of plantar ulcers during or prior to the assessment
  • Inability to walk independently without pain or assistive devices
  • Illiteracy
  • Presence of any foot deformity
05

Study design

Phase
Not applicable
Primary purpose
Screening
Allocation
Non-randomized
Intervention model
Crossover assignment
Masking
None (open label)
Enrollment
30 participants (actual)

Study arms

  • Experimental
    Health Control Group

    The healthy control group consisted of 10 participants with no history of foot or ankle injuries or systemic diseases, ensuring a baseline for comparison. Assessments included isokinetic testing for plantar flexor (PF) and dorsiflexor (DF) muscle strength and endurance at angular velocities of 30°/s and 120°/s, respectively. Additionally, functional evaluations such as the physical performance (heel-rise) test and patient-reported outcome measures (AOFAS and FAOS scores) were conducted. These evaluations provided a comprehensive understanding of muscle performance and functional status in healthy individuals, serving as a reference point for interpreting deviations observed in the Lisfranc injury group.

    Other: Muscle Elastic Properties Measurement · Other: Muscle Oxygen Saturation (SmO2) · Other: Plantar Pressure Analysis

  • Experimental
    IWDGF-0

    The IWGDF 0 group included 10 patients classified as having no immediate risk for diabetic foot ulcers. Assessments focused on evaluating the biomechanical and functional parameters of extrinsic foot muscles. Muscle elasticity and dynamic stiffness were measured using the MyotonPro device, while muscle oxygenation levels (SmO2) were recorded pre- and post-exercise using the MOXY device. Plantar pressure analysis was performed under both static and dynamic conditions to identify subtle variations in pressure distribution and foot biomechanics. These evaluations aimed to detect early indicators of potential foot complications, even in patients without apparent risk, providing critical data for preventive strategies.

    Other: Muscle Elastic Properties Measurement · Other: Muscle Oxygen Saturation (SmO2) · Other: Plantar Pressure Analysis

  • Experimental
    IWDGF-1

    The IWGDF 1 group comprised 10 patients identified as having low risk for diabetic foot ulcers. Comprehensive assessments were conducted to evaluate the biomechanical and functional properties of their extrinsic foot muscles. Elasticity and dynamic stiffness of the tibialis anterior, gastrocnemius medialis, gastrocnemius lateralis, and peroneus longus muscles were measured using the MyotonPro device. Muscle oxygenation levels (SmO2) were monitored pre- and post-exercise using the MOXY device to determine oxygen utilization and recovery capacity. Additionally, plantar pressure was analyzed under static and dynamic conditions to assess changes in pressure distribution and foot biomechanics. These detailed evaluations highlighted early biomechanical and functional changes, emphasizing the importance of targeted interventions in this low-risk group to prevent progression to higher risk categories.

    Other: Muscle Elastic Properties Measurement · Other: Muscle Oxygen Saturation (SmO2) · Other: Plantar Pressure Analysis

Interventions

  • OtherMuscle Elastic Properties Measurement

    Using the MyotonPro device, the elastic properties, including stiffness, elasticity, and tone, were evaluated for the tibialis anterior, gastrocnemius medialis, gastrocnemius lateralis, and peroneus longus muscles. Measurements were performed in a controlled laboratory setting.

  • OtherMuscle Oxygen Saturation (SmO2)

    Muscle oxygenation levels were measured before and after a standardized exercise protocol using the MOXY device. The exercise protocol consisted of a light-intensity dynamic task tailored to minimize fatigue and mimic functional activity.

  • OtherPlantar Pressure Analysis

    Plantar pressure was assessed both statically and dynamically using a pressure-mapping platform. This provided data on pressure distribution, contact times, and high-pressure areas across the foot during various conditions.

06

What researchers measure

Primary outcomes

  1. Muscle Elastic Properties

    Stiffness, elasticity, and tone of the tibialis anterior, gastrocnemius medialis, gastrocnemius lateralis, and peroneus longus muscles measured using the MyotonPro device. Key Metrics: Differences in muscle stiffness, tone, and elasticity between groups.

    Time frame: Measured within a 1-month period.

Secondary outcomes

  1. Muscle Oxygenation (SmO2)

    Changes in local oxygen saturation (SmO2) levels of the targeted muscles, measured pre- and post-exercise using the MOXY device. Comparison of SmO2 levels between IWGDF 0, IWGDF 1, and healthy control groups. Key Metrics: Reduction in SmO2 levels and recovery trends post-exercise

    Time frame: Measured within a 1-month period.

  2. Plantar Pressure Parameters

    Static and dynamic plantar pressure analysis to identify high-pressure regions and foot loading patterns. Key Metrics: Average plantar pressure values in midfoot and forefoot regions. Contact times and pressure distribution in dynamic gait analysis.

    Time frame: Measured within a 1-month period.

Other outcomes

  1. Functional Integration

    Evaluation of the relationship between plantar pressure patterns and muscle biomechanical properties across all groups.

    Time frame: Measured within a 1-month period.

07

Study locations

1 site
  • University of Health Sciences Physical Therapy and Rehabilitation Lab
    İ̇stanbul, Uskudar 34668, Turkey
08

References and documents

Publications

  • Armstrong DG, Tan TW, Boulton AJM, Bus SA. Diabetic Foot Ulcers: A Review. JAMA. 2023 Jul 3;330(1):62-75. doi: 10.1001/jama.2023.10578. PubMed 37395769 ↗

Individual participant data

Plan to share: Undecided

09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Dec 16, 2024, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
10

Registry details

Key details

Study ID
NCT06736210
Lead sponsor
Istanbul Saglik Bilimleri University
Responsible party
Ali Ilez (Research Assistant, Istanbul Saglik Bilimleri University) — Principal investigator
First posted
Dec 16, 2024
Start date
Nov 1, 2024
Primary completion
Nov 30, 2024
Completion
Dec 10, 2024
Last update
Dec 16, 2024

Study contacts

Defne KAYA UTLU, PhD
study director · Saglik Bilimleri Universitesi

Oversight

Data monitoring committee
No
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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