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Clinical Trial Summary

BACKGROUND Balance, gait, community mobility, and risk of falls are often associated with trunk impairment among people with Multiple Sclerosis (PwMS). Consequently, there is a pressing need for interventions addressing these concerns and exploring the potential effects of trunk rehabilitation. LONG-TERM GOAL Offering guidance for effective plan selection, potentially included in rehabilitation guidelines for PwMS. HYPOTHESIS Trunk exercises performed in multiplanar movement on unstable surfaces incorporated with dual-tasks (DT) could improve the functional outcomes more than standard one-plane core stability exercises. SPECIFIC AIMS Investigating the effectiveness of trunk rehabilitation in PwMS and determining the optimal intervention strategy. METHODS 50 PwMS randomly assigned into two groups. Trunk Group received trunk exercises on unstable surfaces with DT training, while the Core Group underwent standard one-plane core stability exercises on stable surfaces without DT. Additionally, both received conventional treatment. Primary outcome was the trunk impairment scale (TIS). Secondary outcomes included the Berg balance scale (BBS), Timed Up and Go (TUG), Modified Falls Efficacy (FES), Modified Fatigue Impact Scale (MFIS), Hospital Anxiety and Depression Scale (HADS), and Reintegration to Normal Living Index (RNLI). SIGNIFICANCE Enhancing our understanding of trunk exercises' benefits and providing valuable guidance to clinicians for choosing the optimal treatment plan.


Clinical Trial Description

There is a lack of comprehensive trunk rehabilitation protocols within the field of multiple sclerosis. The existing studies mostly focus on core stability, pelvic muscles, or alternative methods. Consequently, the aim was to develop a protocol to investigate the potential positive effects of trunk rehabilitation. Drawing from our review of relevant literature, investigators in this study have developed a trunk training protocol that focuses on multiplanar movements carried out on unstable surfaces and additionally, incorporated dual-task training (DT), which adds a layer of complexity. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT06447571
Study type Interventional
Source King Abdulaziz University
Contact
Status Active, not recruiting
Phase N/A
Start date October 1, 2023
Completion date December 2024

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