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RecruitingNCT07337824Updated Sep 9, 2026

Comparison of Deep Neck Flexor Strengthening and Motor Learning-Based Neuroplasticity Training for Forward Head Posture

An interventional study of Deep neck flexor strengthening and Motor learning based neuroplasticity training in Forward Head Posture, sponsored by Riphah International University. Recruiting at 1 site in Pakistan. Open to participants aged 19 Years to 25 Years. Per ClinicalTrials.gov, last updated 2026-09-09.

Sponsored by Riphah International University · Not applicable, Interventional, and Treatment

From the registry’s dates

  • Started Mar 2026; still recruiting 6 months later.
Phase
Not applicable
Study type
Interventional
Enrollment
74
Allocation
Randomized
Ages
19 Years to 25 Years
Sex
All
01

Study summary

The aim of this randomized clinical trial is to compare the effects of deep neck flexor strengthening and motor learning-based neuroplasticity training on craniovertebral angle, deep neck flexor strength, proprioception, and symptom recurrence in individuals with forward head posture (FHP).

The study will be conducted at Riphah International University, Gulberg Green Campus. A total of 74 participants with forward head posture will be recruited using non-probability convenience sampling and randomly allocated into two groups (37 participants per group). Group A will receive deep neck flexor strengthening exercises, while Group B will receive motor learning-based neuroplasticity training. Both groups will undergo three sessions per week for four weeks. Assessments will be performed at baseline, post-intervention, and at one-month follow-up to assess symptom recurrence. Data will be analyzed using SPSS version 27.

Read the detailed description

Forward head posture is a prevalent postural abnormality characterized by anterior translation of the head relative to the cervical spine. It is commonly observed among university students and young adults due to prolonged smartphone use, computer work, and sedentary lifestyles. Persistent FHP leads to muscular imbalance, weakness of the deep neck flexors, altered proprioception, and impaired neuromuscular control, often resulting in neck pain and functional limitations.

Deep neck flexor strengthening targets the longus colli and longus capitis muscles to restore cervical alignment and improve segmental stability. These exercises aim to correct muscular imbalances by enhancing endurance and motor control of the cervical stabilizers.

Motor learning-based neuroplasticity training is an emerging rehabilitation approach that emphasizes sensorimotor integration, task-specific training, and multisensory feedback. This approach facilitates cortical reorganization and re-establishment of disrupted cortico-spinal and cortico-subcortical pathways through repetitive, goal-oriented motor tasks. By integrating visual, auditory, and proprioceptive feedback, neuroplasticity-based training enhances postural awareness, motor planning, and long-term postural correction.

Despite evidence supporting both interventions individually, limited research has directly compared their effectiveness across postural, neuromuscular, and proprioceptive outcomes, particularly with respect to symptom recurrence. This study seeks to address this gap.

Previous studies have demonstrated that deep neck flexor strengthening significantly improves craniovertebral angle, reduces neck pain, and enhances cervical stability in individuals with forward head posture. Cervical stabilization programs have also shown positive effects on proprioception and neck repositioning accuracy.

Recent randomized controlled trials investigating motor learning-based neuroplasticity approaches have reported improvements in postural control, proprioception, and functional movement patterns through experience-dependent cortical plasticity. However, systematic reviews highlight inconsistent evidence regarding the superiority of strengthening exercises over motor learning-based interventions, with limited comparative trials and short-term follow-up.

Furthermore, evidence related to symptom recurrence and long-term sustainability of postural correction remains scarce. Therefore, a direct comparison of these two interventions is warranted.

02

Conditions studied

  • Forward Head Posture

Keywords

  • Craniovertebral angle
  • Deep neck flexor strength
  • Proprioception
  • Neuroplasticity training
  • Motor learning
03

In context

Lead sponsor

Riphah International University is the lead sponsor of 2,133 studies on the registry; 633 are open to participants now.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
19 Years to 25 Years
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

  • University students aged 19-25 years
  • Both genders
  • Forward head posture with craniovertebral angle \< 50°

Exclusion criteria

Exclusion Criteria:

  • History of cervical spine injury or surgery
  • Chronic neck pain or recent therapy within six months.
  • Diagnosed with neurological, musculoskeletal, or visual disorders affecting posture.
05

Study design

Phase
Not applicable
Primary purpose
Treatment
Allocation
Randomized
Intervention model
Parallel assignment
Masking
Single (Outcomes assessor)
Enrollment
74 participants (estimated)

Study arms

  • Experimental
    Experimental interventional group A (Deep neck flexor strengthening)

    * Chin tuck exercises * Isometric cervical flexion using gentle resistance * Prone head lift exercises

    Other: Deep neck flexor strengthening

  • Experimental
    Experimental :interventional group B ( Motor learning based neuroplasticity training)

    Task specific postural training using proprioceptive feedback, progressive balance and coordination and static and dynamic postural control tasks under different environmental conditions.

    Other: Motor learning based neuroplasticity training

Interventions

  • OtherDeep neck flexor strengthening

    Chin tuck exercises, Isometric cervical flexion using gentle resistance, Prone head lift exercises. Frequency: 3 sessions per week, Duration: 4 weeks (12 sessions total).

  • OtherMotor learning based neuroplasticity training

    Task-specific postural training using visual (laser), auditory (metronome), and proprioceptive feedback. Progressive balance and coordination exercises under varying environmental conditions. Static and dynamic postural control tasks with intertrial variability. Frequency: 3 sessions per week, Duration: 4 weeks (12 sessions total)

06

What researchers measure

Primary outcomes

  1. Craniovertebral Angle (CVA)

    Measured using digital photogrammetry and analyzed with software (e.g., Kinovea) to quantify forward head posture severity.

    Time frame: Baseline to 4 weeks

Secondary outcomes

  1. Deep Neck Flexor Strength

    Assessed using the Deep Neck Flexor Endurance Test. It is performed in the supine line position with the chin hold and head off the couch and ask the patient to hold the position. The time of the hold will be recorded.

    Time frame: Baseline to 4 weeks

  2. Cervical Proprioception

    Measured using the Cervical Joint Repositioning Error Test with laser-guided repositioning.

    Time frame: Baseline to 4 weeks

  3. Deep Neck Extensor Strength

    Assessed using the Deep Neck Extensor Endurance Test. It is performed in the prone line position with the chin hold and head off the couch and ask the patient to hold the position. The time of the hold will be recorded.

    Time frame: Baseline to 4 weeks

07

Study locations

1 of 1 sites recruiting
  • Riphah Postgraduate Lab, Riphah INternational University
    Islamabad, Capital 44120, Pakistan
    Recruiting
08

References and documents

Individual participant data

Plan to share: No

No publications or documents are linked to this record.

09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Sep 9, 2026, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
10

Registry details

Key details

Study ID
NCT07337824
Lead sponsor
Riphah International University
Responsible party
Sponsor
First posted
Jan 13, 2026
Start date
Mar 12, 2026
Primary completion
Dec 30, 2026 (estimated)
Completion
Jan 20, 2027 (estimated)
Last update
Sep 9, 2026

Study contacts

Aisha Razzaq, PHD*
Contact
aisha.razzaq@riphah.edu.pk
03015030784
Aisha Razzaq, PHD*
principal investigator · Riphah International University

Oversight

Data monitoring committee
No
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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