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Kinesiotaping for Normalizing Scapular Dyskinesis

Kinesiotaping for Normalizing Scapular Dyskinesis : the Influence on Scapular Kinematics and on the Activity of Scapular Stabilizing Muscles

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT03821740
Enrollment
20
Registered
2019-01-30
Start date
2019-02-01
Completion date
2019-04-15
Last updated
2019-05-06

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

Conditions

Scapular Dyskinesis

Brief summary

The 3-dimensional position and orientation of the scapula as well as muscle activation of upper trapezius (UT), lower trapezius (LT) and serratus anterior (SA) of asymptomatic dyskinetic sportspeole will be recorded during shoulder flexion and shoulder abduction, in loaded and unloaded conditions. Participants will be assessed in standard condition and with two differents kinesiotaping techniques.

Detailed description

About 20 dyskinetic asymptomatic people will be involved in the study. The objective will be to compare two different kinesiotaping techniques in normalizing scapular kinematics. Tridimensional-movement of the scapula and EMG activity of periscapular muscles will be evaluated doing flexion (sagittal plane) and abduction (frontal plane) movements. EMG acquisitions : The electromyographic (EMG) signals are collected with Trigno Standard and Trigno Mini wireless sensors (Delsys, Boston, MA, USA) using silver-contact bipolar bar electrodes with fixed 10 mm inter-electrode spacing \[49\]. Three of the main scapular stabilizing muscles of the shoulder are investigated: upper trapezius, lower trapezius and serratus anterior. Electrodes are placed on the dyskinetic side. In case of bilateral scapular dyskinesis, electrodes are placed on the side where the most important dysfunction was observed. Data are acquired at a sample frequency of 1000 Hz. Tridimensionnal assessment: Scapular kinematics is assessed using a three-dimensional motion analysis system, an optoelectronic system based on active markers (Codamotion, Charnwood Dynamic, UK). For that purpose, four Codamotion CX1 units are used, at a sampling of 100 Hz. Fifteen active markers were placed on the skin of the subject on the same side as EMG electrodes: 4 on the thorax, 6 on the scapula, 4 on the arm and 1 on the acromio-clavicular joint. Procedure : * Warm up : 2x10 shoulder internal and external rotations * Maximum voluntary isometric contraction (MVIC) * 10 mouvements of abduction (frontal plane) + 10 mouvements of flexion (sagittal plane), with and without load in each condition (without kinesiotaping, with a first kinesiotaping technique and with a second kinesiotaping technique). The order of the different conditions will be randomised.

Interventions

OTHERKinesiotaping

Mc Connel taping and another kinesiotaping technique

Sponsors

University of Liege
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
CROSS_SECTIONAL

Eligibility

Sex/Gender
MALE
Age
18 Years to 35 Years

Inclusion criteria

* unilateral or bilateral scapular dyskinesis (visual evaluation, yes-no method) * scapular downward rotation at rest

Exclusion criteria

* asymmetry of length of lower limbs * scoliosis or dorsal hyperkyphosis shoulder surgical history * shoulder pain, shoulder injury (muscular, osseous, ligamentary, tendinous) or positive tendinous and impingement tests (Jobe, Patte 0°, Patte 90°, Lift off Test, Palm-up Test).

Design outcomes

Primary

MeasureTime frameDescription
EMG activity of upper trapezius, lower trapezius and serratus anteriorin standard condition and with kinesiotaping (all the same day)Measurement with Delsys Trigno (non invasive electrodes)

Countries

Belgium

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026