Skip to content

The Effect of Combined Vibration-Stretching Exercises Patients with Multiple Sclerosis

The Effect of Combined Vibration-Stretching Exercises on Spasticity of Lower Limb Flexors and Fall Risk in Patients with Multiple Sclerosis

Status
Active, not recruiting
Phases
Unknown
Study type
Interventional
Source
IRCT
Registry ID
IRCT20200327046878N1
Enrollment
67
Registered
2020-08-16
Start date
2017-12-06
Completion date
Unknown
Last updated
2020-09-07

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

Conditions

Multiple Sclerosis. Multiple sclerosis (MS), is an autoimmune disease that affects the nervous symptom, launching an attack on its own tissue. Multiple sclerosis can range from relatively benign to somewhat disabling to devastating, as communication between the brain and oth

Interventions

Intervention 1: Intervention Group 1: Vibration Exercises for 8 Weeks, 3 Sessions per Week. Intervention 2: Intervention Group 2: Combined Vibration-Stretching Exercises for 8 Weeks, 3 Sessions per We

Sponsors

Raja University
Lead Sponsor

Eligibility

Sex/Gender
Male
Age
20 Years to 50 Years

Inclusion criteria

Inclusion criteria: Having MS disease with EDSS index of 2 to 4 Male gender least six months have passed since the illness Able to walk without auxiliary tools 50 to 20 years of age

Exclusion criteria

Exclusion criteria:

Design outcomes

Primary

MeasureTime frame
Spasticity of Lower limb flexors. Timepoint: Before intervention and mid-week of intervention and post-test. Method of measurement: Modified Ashworth Scale.

Secondary

MeasureTime frame
Fall Risk. Timepoint: Before intervention and mid-week of intervention and post-test. Method of measurement: International Fall-I Danger Scale (FES-I).

Countries

Iran (Islamic Republic of)

Contacts

Public ContactAhmad Saadi

Raja University of Qazvin

Ahmadsaadi526@gmail.com+98 61 3337 4974

Outcome results

None listed

Source: IRCT (via WHO ICTRP) · Data processed: Feb 4, 2026