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Acute effects of whole-body vibration on ankle systolic blood pressure and flexibility in individuals with type 2 diabetes

Acute effects of whole-body vibration on ankle systolic blood pressure and flexibility in individuals with type 2 diabetes

Status
Active, not recruiting
Phases
Phase 1Phase 2
Study type
Interventional
Source
TCTR
Registry ID
TCTR20230125003
Enrollment
28
Registered
2023-01-25
Start date
2023-03-31
Completion date
Unknown
Last updated
2026-08-03

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

Conditions

Individuals with type 2 diabetes Type 2 diabetes, ankle systolic blood pressure, flexibility, whole-body vibration, acute effect

Interventions

The participants were in a high squat position with knee flexion at 120 degrees on a WBV platform (without turning on the machine). They maintained this position for 1 minute each, followed by 1 minut
Figueroa et al., 2014a
49 Figueroa et al., 2014b). A physical therapist was positioned behind the participants on the WBV machine to keep them from falling. WBV was performed using a Galileo S 35 device (Novotec Medical Gmb
Sham intervention,Whole-body vibration intervention

Sponsors

Khon Kean University research grant KKU Scholarship for ASEAN and GMS Countries
Lead Sponsor

Eligibility

Sex/Gender
All
Age
40 Years to 59 Years

Inclusion criteria

Inclusion criteria: 1) Patients who had been diagnosed with T2DM between one and ten years before entering in this trial 2) Age between 40 to 59 years old (Shinan-Altman & Werner, 2019) 3) BMI 18.5 kg/m2 to 29.9 kg/m2 (Dufour et al., 2017) 5) Able to ambulate without any assistive devices, understand and follow instructions in research protocol

Exclusion criteria

Exclusion criteria: 1) Brachial SBP more than or equal to 140 mmHg and/or brachial DBP more than or equal to 90 mmHg (James et al., 2014) 2) Lower extremity pain (VAS more than 3) at rest or in a high squat position (knee flexion at 120 degree) 3) Regular physical exercise (moderate intensity, 3 to 6 METs, more than or equal to 30 min/session, more than or equal to 3 sessions/week) (Montero et al., 2015) 4) Musculoskeletal problems (implants in trained body parts: artificial joints, acute inflammations of the musculoskeletal system, activated arthrosis or arthroplasty: acute swelling and inflammation of joints, acute tendinopathies in trained body parts: acute inflammation of tendons/ sinews, acute hernia: protrusion of tissue, acute discopathy: acute slipped disk, fresh fractures in trained body parts, rheumatoid arthritis) (Tomas et al., 2011) 5) Cardiovascular problems (acute thrombosis: acute vascular constriction) (Tomas et al., 2011) 6) Neurological problems (benign paroxysmal positional vertigo and epilepsy) (Tomas et al., 2011) 7) Retinopathy (Manimmanakorn et al., 2017) 8) Nephropathy (Manimmanakorn et al., 2017) 9) Acute edema at lower and upper extremities (Tomas et al., 2011) 10) Diabetic foot ulcer (Tomas et al., 2011) 11) Tumors or metastases (Tomas et al., 2011) 12) Gall, bladder, and kidney stones (Tomas et al., 2011) 13) Pregnant women (Tomas et al., 2011) 14) Women who have menstruation (Bruinvels et al., 2017)

Design outcomes

Primary

MeasureTime frame
Ankle systolic blood pressure Before the intervention, 15 minutes and 45 minutes after the intervention Automatic sphygmomanometer

Secondary

MeasureTime frame
Flexibility Before the intervention, 15 minutes and 45 minutes after the intervention Sit-and-reach test,Brachial Blood pressure Before the intervention, 15 minutes and 45 minutes after the intervention Digital sphygmomanometer

Countries

Thailand

Contacts

Public ContactPonlapat Yonglitthipagon

Faculty of Associated Medical Sciences, Khon Kaen University

ponlapat@kku.ac.th043202085

Outcome results

None listed

Source: TCTR (via WHO ICTRP) · Data processed: Aug 9, 2026