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Clinical Trials/NCT07263334
NCT07263334CompletedNot Applicable

The Effect of Text Neck Syndrome on the Muscle and Bone Architecture of the Cervical Region

Bandırma Onyedi Eylül University1 site in 1 country25 target enrollmentStarted: June 1, 2024Last updated:

Trial Snapshot

Phase
Not Applicable
Status
Completed
Sponsor
Enrollment
25
Locations
1
Primary Endpoint
Range of Motion of the Neck

Study Overview

Brief Summary

The aim of this study is to examine the effect of mental fatigue (MF) induced by 30 minutes of social media use on neck kinematics and neck muscle biomechanical properties in young male athletes. Twenty-five participants are enrolled in a single-blind cross-sectional design. Baseline and post-MF assessments include cervical range of motion measured with a CROM device, forward head posture evaluated using craniovertebral angle analysis, and muscle tone, stiffness, and elasticity measured with MyotonPRO. MF is induced through 30 minutes of Instagram® use on a smartphone and quantified with a 100-mm Visual Analogue Scale (VAS). No results or conclusions are provided in this section.

Detailed Description

The aim of this study is to investigate the effect of mental fatigue (MF) induced by 30 minutes of social media use on neck kinematics and the biomechanical properties of the neck muscles [upper trapezius, sternocleidomastoid (SCM), semispinalis (SS), and splenius capitis (SC)] in young male athletes. Twenty-five young male athletes are enrolled in a single-blind cross-sectional study. Participants undergo assessments at baseline and again following MF induction. These assessments include cervical range of motion (CROM) measured with a validated CROM device, forward head posture (FHP) evaluated via craniovertebral angle (CVA) photometric analysis, and muscle biomechanical properties (tone, stiffness, elasticity) measured using the MyotonPRO device. Mental fatigue is induced through 30 minutes of Instagram use on a smartphone. MF severity is assessed using a 100-mm Visual Analogue Scale (VAS). No results or conclusions are reported in this section.

Study Design

Study Type
Interventional
Allocation
Na
Intervention Model
Single Group
Primary Purpose
Screening
Masking
None

Eligibility Criteria

Ages
18 Years to 35 Years (Adult)
Sex
Male
Accepts Healthy Volunteers
Yes

Inclusion Criteria

  • Amateur athletes aged 18-35
  • using social media via a smartphone
  • actively participating in competitions

Exclusion Criteria

  • having a surgical operation or trauma related to the neck region, having any pathology in the neck region (neck cyst, tumours, haematoma, etc.), having a history of traumatic injury in the neck region, and having neurological and rheumatic diseases.

Outcomes

Primary Outcomes

Range of Motion of the Neck

Time Frame: Baseline

The normal joint motion of the cervical region was evaluated with the Cervical Range of Motion (CROM-Perfomance Attainment Associates, St. Paul, MN, 55117, United States) device, which has clinical validity and reliability. The flexion, extension, right and left lateral flexion and rotation angles of the cervical region were measured three times and averaged with the CROM device.

Forward Head Posture

Time Frame: Baseline

The craniovertebral angle (CVA) was measured using a photometric method with the participants in a standing position. Prior to imaging, the C7 process and tragus were marked. A camera was placed 1.5 m from the lateral surface of the body at the level of the acromial process.

Biomechanical Properties of Muscles

Time Frame: Baseline

The biomechanical properties of cervical muscles were assessed using the MyotonPRO, which quantifies tissue oscillations following a brief mechanical impulse to determine tone, stiffness, and elasticity. This method provides reliable interrater and intrarater measurements for cervical musculature when applied perpendicularly in a standardized supine position, as demonstrated in previous research. For each muscle, three consecutive measurements were recorded following established protocols for the sternocleidomastoid and upper trapezius.The MyotonPro enables the assessment of various parameters, including the state of resting muscle tone (F), defined as the suppressed EMG signal, and dynamic stiffness (S). The basis of stiffness assessment using myotonometry is the theory of free oscillations, arising from the natural oscillations of tissues in response to brief mechanical exposure of the skin.

Secondary Outcomes

No secondary outcomes reported

Investigators

Sponsor
Bandırma Onyedi Eylül University
Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

Burçin Akçay

Asoc. Prof

Dokuz Eylul University

Study Sites (1)

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