Kinesio Taping Along With Functional Activation Pattern in Stroke Patients
NCT ID: NCT05425212
Last Updated: 2024-01-30
Study Results
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Basic Information
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COMPLETED
NA
16 participants
INTERVENTIONAL
2022-04-04
2022-10-20
Brief Summary
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Detailed Description
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In a recent study, application of Kinesio tape has been reported to improve balance ability and gait performance. It restricts the excessive movements on the joints. It also acts as a facilitator helping the weak muscle to perform movement. In our study, we will apply Kinesio tape to the Tibialis Anterior Muscle (Prime dorsiflexor) and to the gastrocnemius. KT is a thin, air permeable, water resistant and elastic adhesive tape which can be stretched to up to 120-140% of its resting length. The protective effect provided by KT is purportedly related to its ability to improve proprioception by stimulating mechanoreceptors located in muscle, tendon, joint capsule or skin.Therefore, strengthening of muscle and improvement of range of motion of the ankle are also required to improve balance and gait ability.
Activation of the tibialis anterior muscle in particular enables enough dorsiflexion to prevent the toes from dragging on the ground during the swinging phase. According to recent studies, the application of Kinesio tape can reduce the hyperactivity of the gastrocnemius and increase the activity of the tibialis anterior (TA) in the correction of foot drop (such as neutralizing the foot), and aid in the correction of equinus deformity, with a more positive effect on joint angle and walking ability in stroke patients with foot drop. Applying a Kinesio tape to the lower extremity during post-stroke rehabilitation is reported to relieve lower-extremity spasticity, improving lower-extremity motor function, improving balance, and enhance ambulation and gait parameters in patients.
This will be a randomized controlled trial and will recruit patients through convenience sampling. Diagnosed patients of Stroke will be confirmed for inclusion through Computed Tomography or Magnetic Resonance Imaging. The patients will be divided into 2 groups. Group 1 will receive conventional treatment and Group 2 will receive taping and functional activation along with Conventional Treatment. This treatment will be given for 30-40 mins for 3 days a week for 4 continuous weeks. The outcome measures will be 6 Min walk test (test- retest reliability for those require an assistive device to walk (ICC = 0.914, TUG (timed up and go) for mobility, Berg Balance Scale (for balance and fall risks), OGA (Observational Gait Analysis) for gait parameters (cadence, gait velocity, step length) before and after the interventions. The data will be analyzed using SPPS software version 25.
Conditions
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Study Design
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RANDOMIZED
PARALLEL
TREATMENT
SINGLE
Study Groups
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Functional activation with kinesio tapping
given 5 cm wide kinesio tape at tibialis anterior and gastrocnemius to facilitate dorsiflexion of the ankle and inhibit planter flexion simultaneously along with conventional treatment.
Functional activation with kinesio tapping
These exercises will be carried out thrice a week for 4 weeks. The exercises will be performed for approximately 35-45 minutes, 1 to 2 times a day, in sitting or standing position
Conventional physical therapy
strengthening and stretching, combined with Ankle ranges and Hip strengthening. (6) The exercises performed will be Calf stretches, Heel and Toe raises, Hip marching in sitting/standing; Heel walk; Pebble picking; Single leg standing; and Ankle range of motions
Conventional physical therapy
strengthening and stretching, combined with Ankle ranges and Hip strengthening. (6) The exercises performed will be Calf stretches, Heel and Toe raises, Hip marching in sitting/standing; 4 days a week for 4 weeks
Interventions
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Functional activation with kinesio tapping
These exercises will be carried out thrice a week for 4 weeks. The exercises will be performed for approximately 35-45 minutes, 1 to 2 times a day, in sitting or standing position
Conventional physical therapy
strengthening and stretching, combined with Ankle ranges and Hip strengthening. (6) The exercises performed will be Calf stretches, Heel and Toe raises, Hip marching in sitting/standing; 4 days a week for 4 weeks
Eligibility Criteria
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Inclusion Criteria
* Patients diagnosed with stroke for at least 6 months confirmed with MRI or CT.
* Patients depicting reduced range of motion at ankle joint after stroke causing gait disturbances.
* Ability to walk at least 3 meters by itself with or without assistive device.
* No surgical procedure performed on lower limbs.
* Normal vision with or without correction by spectacles or contact lenses
* Patients with spasticity \<2/5 on modified Ashworth scale
Exclusion Criteria
* Patients with deep vein thrombosis (DVT). Using KT near the DVT can increase mobility and blood flow. This may cause the blood clot to dislodge and may put you at risk for pulmonary embolism.
* Cognitively impaired patients.
* Patients with open wounds in the lower extremity.
* Patients with ankle fracture or any skin allergy to adhesives.
* Patients with sensory loss due to any pathology, altered sensation such as in peripheral neuropathy.
45 Years
65 Years
ALL
No
Sponsors
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Riphah International University
OTHER
Responsible Party
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Principal Investigators
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Binash Afzal, PHD*
Role: PRINCIPAL_INVESTIGATOR
Riphah international university lahore campus
Locations
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Lahore general Hospital
Lahore, Punjab Province, Pakistan
Countries
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References
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Song S, Park J, Song G, Lee S, Jo Y, Jin M, Lee D, Jung S, Hong S, Lee S, Pyo S, Lee G. Usability of the Thera-Band(R) to improve foot drop in stroke survivors. NeuroRehabilitation. 2018;42(4):505-510. doi: 10.3233/NRE-172338.
Lee D, Bae Y. Short-Term Effect of Kinesio Taping of Lower-Leg Proprioceptive Neuromuscular Facilitation Pattern on Gait Parameter and Dynamic Balance in Chronic Stroke with Foot Drop. Healthcare (Basel). 2021 Mar 3;9(3):271. doi: 10.3390/healthcare9030271.
In T, Lee K, Song C. Virtual Reality Reflection Therapy Improves Balance and Gait in Patients with Chronic Stroke: Randomized Controlled Trials. Med Sci Monit. 2016 Oct 28;22:4046-4053. doi: 10.12659/msm.898157.
van Duijnhoven HJ, Heeren A, Peters MA, Veerbeek JM, Kwakkel G, Geurts AC, Weerdesteyn V. Effects of Exercise Therapy on Balance Capacity in Chronic Stroke: Systematic Review and Meta-Analysis. Stroke. 2016 Oct;47(10):2603-10. doi: 10.1161/STROKEAHA.116.013839. Epub 2016 Sep 15.
Huzmeli I, Sari Z, Hallaceli H, Gokcek O, Davut S. Immediate Effect of Kinesiology Tape on Functionality, Static and Dynamic Balance, Exercise Capacity, and Posture in Users of High-Heeled Shoes. J Am Podiatr Med Assoc. 2023 Jul-Aug;113(4):21-037. doi: 10.7547/21-037.
Shin YJ, Lee JH, Choe YW, Kim MK. Immediate effects of ankle eversion taping on gait ability of chronic stroke patients. J Bodyw Mov Ther. 2019 Jul;23(3):671-677. doi: 10.1016/j.jbmt.2018.06.008. Epub 2018 Jun 28.
Choi SH, Lim CG. Immediate Effects of Ankle Non-elastic Taping on Balance and Gait Ability in Patients With Chronic Stroke: A Randomized, Controlled Trial. J Manipulative Physiol Ther. 2020 Nov-Dec;43(9):922-929. doi: 10.1016/j.jmpt.2019.12.007. Epub 2020 Jul 16.
Hu Y, Zhong D, Xiao Q, Chen Q, Li J, Jin R. Kinesio Taping for Balance Function after Stroke: A Systematic Review and Meta-Analysis. Evid Based Complement Alternat Med. 2019 Jul 16;2019:8470235. doi: 10.1155/2019/8470235. eCollection 2019.
Agarwala P, Salzman SH. Six-Minute Walk Test: Clinical Role, Technique, Coding, and Reimbursement. Chest. 2020 Mar;157(3):603-611. doi: 10.1016/j.chest.2019.10.014. Epub 2019 Nov 2.
Flansbjer UB, Holmback AM, Downham D, Patten C, Lexell J. Reliability of gait performance tests in men and women with hemiparesis after stroke. J Rehabil Med. 2005 Mar;37(2):75-82. doi: 10.1080/16501970410017215.
Other Identifiers
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REC/Lhr/22/0215 Anum Sajid
Identifier Type: -
Identifier Source: org_study_id
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