Rafia Grammar School
Lahore, Punjab Province, 53700, Pakistan
Location status: Recruiting
Location contact
Imran Amjad, phD
CONTACT
Muhammad Asif Javed, MS-PT
CONTACT
NCT Number: NCT07578974
This study investigates flexible pes planus (flat feet) in children, a condition where the medial arch collapses during weight-bearing, affecting gait, balance, and foot function. Although foot-core strengthening and visual feedback individually improve arch stability and motor control, their combined effect in pediatric populations remains underexplored. To address this gap, a randomized controlled trial will be conducted at Rafia Grammar School, involving 24 children aged 7-12 years with clinically confirmed flexible pes planus. Participants will be randomly assigned into two groups: one receiving foot-core training alone and the other receiving foot-core training with visual feedback, with interventions carried out twice weekly for 8 weeks. Changes in foot posture and gait will be assessed using standardized outcome measures, and data will be analyzed using SPSS version 23.0. The study aims to determine whether adding visual feedback enhances treatment effectiveness and supports the development of more targeted, evidence-based pediatric rehabilitation strategies.
Interested in participating?
Request Info7 year–12 year
All sexes
Interventional
Not applicable
Lahore, Punjab Province, 53700, Pakistan
Location status: Recruiting
Imran Amjad, phD
CONTACT
Muhammad Asif Javed, MS-PT
CONTACT
Flexible pes planus, commonly observed in children, is characterized by a collapse of the medial longitudinal arch during weight-bearing, which can impair gait efficiency, balance, and foot function if unaddressed. While intrinsic foot muscle (foot-core) strengthening has been shown to improve arch stability and functional outcomes, and visual feedback is recognized for enhancing motor control through real-time sensory input, current literature lacks empirical evidence on the combined effect of these interventions in pediatric flatfoot populations.
Most studies examine either strengthening exercises or feedback mechanisms independently, often without tailoring protocols to the unique neuromuscular learning needs of children. This gap limits the development of comprehensive rehabilitation strategies for flexible pes planus. Therefore, this study aims to compare the effectiveness of foot-core training with and without visual feedback on foot posture and gait parameters in children with flexible pes planus, thereby contributing to the advancement of targeted, evidence-based pediatric rehabilitation approaches. This randomized controlled trial will be conducted at Rafia Grammar School. Using a convenience sampling technique, children aged 7-12 years with clinically confirmed flexible pes planus will be recruited based on predefined inclusion and exclusion criteria, including cognitive readiness and flexibility of the medial arch. After baseline assessment, participants will be randomly allocated into two intervention groups (n1=12, n2=12): one receiving foot-core training alone, and the other receiving foot-core training with visual feedback. The intervention will be performed 2 times per week for 8 weeks. The study will assess changes in gait and foot posture using standardized physical and functional outcome measures. Ethical approval will be secured before starting the study, and all evaluations will be carried out consistently throughout the trial. Data will be analyzed through SPSS version 23.0.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Children will perform exercises 2×/week for 8 weeks with daily home practice. Begin with 1-2 sets of 5-15 reps (hold 5-10 sec), 1-2 min rest, progressing gradually. Session: 30-45 min.
Other names: Short Foot exercises
Visual feedback will be delivered via mirror therapy using a 36×36×48 cm mirror box. The child sits with the mirror at midline; one foot is hidden inside the box while the other is visible. While performing foot-core exercises, the mirror creates the illusion of symmetrical movement. The process is repeated by switching feet to ensure bilateral training.
Exercises will be done 2×/week for 8 weeks (home practice encouraged), 1-2 sets of 5-15 reps (hold 5-10 sec), 1-2 min rest, session 30-45 min.
Other names: Short Foot Eercises with Visual Feedback
Time frame: Baseline, 8 weeks
The Foot Posture Index-6 (FPI-6) is a reliable and valid tool for pediatric foot assessment, with excellent inter-rater (ICC 0.92-0.97) and test-retest reliability (ICC 0.93-0.95). It shows good validity through correlations with radiographic measures (r = 0.37-0.77) and demonstrates strong diagnostic accuracy for flexible flatfoot (AUC 0.82, sensitivity 83.7%, specificity 80.4), supporting its clinical and research use.
Time frame: Baseline, 8 weeks
Temporal-distance gait analysis using footprint methods is a valid and reliable tool for assessing pediatric gait. It measures parameters like step length, stride width, and cadence via footprints on a marked walkway. Studies show good test-retest reliability (ICCs 0.52-0.98), supporting its use in children with gait abnormalities, including flexible pes planus.
Time frame: Baseline, 8 weeks
The Arch Height Index (AHI) is a reliable and valid measure of pediatric foot structure. It shows strong intra- and inter-rater reliability (ICC ≥ 0.76-0.90) in both sitting and standing positions. Evidence supports its precision and consistency for assessing foot posture in children.
Time frame: Baseline, 8 weeks
The Medial Longitudinal Arch (MLA) angle is a reliable and valid clinical measure for assessing pediatric foot posture. It shows excellent intra-rater (ICC 0.88-0.90) and inter-rater (ICC 0.80-0.85) reliability in children aged 6-12 years. It is a simple, non-invasive tool that accurately reflects arch structure and is useful for evaluating flexible flatfoot.
Time frame: Baseline, 8 weeks
The Calcaneal Eversion Angle is a reliable clinical measure for assessing rearfoot position in weight-bearing stance. It shows good intra-rater reliability (ICC = 0.84) with consistent repeated measurements, and acceptable inter-rater reliability. Overall, it is a valid and practical tool for evaluating foot posture in both children and adults.
Time frame: Baseline, 8 weeks
The subtalar joint ROM, assessed via goniometry in weight- or non-weight-bearing positions, is a reliable and valid measure in children. It shows good intra-rater reliability (ICC 0.74-0.90) and acceptable inter-rater reliability (ICC ~0.50-0.72). Overall, it is a clinically practical tool for evaluating foot and ankle mobility in pediatric populations.
Time frame: Baseline, 8 weeks
The Staheli Index (SI) and Chippaux-Smirak Index (CSI) are reliable footprint-based tools for detecting pediatric flatfoot. They show excellent intra-rater (ICC 0.92-0.99) and good inter-rater reliability (ICC 0.79-0.96), with low measurement error (SEM 0.08-0.21, MDC 0.22-0.59). Both demonstrate strong validity through correlations with radiographic arch measures (r = 0.66-0.79).
Time frame: Baseline, 8 weeks
The Y-Balance Test (YBT-LQ) is a reliable and valid measure of dynamic balance in children. It shows excellent inter-rater (ICC 0.84-0.92) and test-retest reliability (ICC 0.81-0.92), with low SEM (1.80%-3.10%) and MDC (4.98%-8.60%). These findings confirm its sensitivity and clinical usefulness for assessing dynamic postural control in pediatric populations.
Time frame: Baseline, 8 weeks
The Lower Extremity Functional Scale (LEFS) is a reliable and valid patient-reported tool for assessing lower limb function in children and adolescents. It shows excellent internal consistency (Cronbach's α = 0.972) and strong construct validity. It also correlates highly with pediatric quality of life measures (r = 0.859).
Time frame: Baseline
The Tiptoe Standing Test is a valid clinical tool for differentiating flexible from rigid pes planus, based on reformation of the medial longitudinal arch during tiptoe stance. It shows good reliability, with intra-rater ICC 0.80-0.90 and inter-rater ICC 0.70-0.85. Despite some observer variability, it remains a practical and efficient pediatric screening method.
Time frame: Baseline
Jack's Test (Hubscher Maneuver) assesses medial arch flexibility and windlass mechanism function for diagnosing flexible flatfoot. It shows excellent intra-rater reliability (ICC 0.85-0.92) and moderate to high inter-rater reliability (ICC 0.75-0.88), especially with trained examiners. It also correlates well with radiographic measures, making it a valid tool for distinguishing structural vs functional deformities in children.
Time frame: Baseline
The Navicular Drop (ND) Test is used to assess medial arch flexibility and confirm flexible flatfoot. It measures the change in navicular height from non-weight bearing to weight bearing, with >10 mm indicating flexible flatfoot. It shows acceptable reliability (ICC 0.61-0.79) and is a valid measure of medial arch function.
Time frame: Baseline
The Mini-Mental State Examination (MMSE) is a well-established cognitive screening tool with strong validity and reliability. It shows good construct and criterion validity, correlating well with full neuropsychological assessments. It also demonstrates high test-retest reliability (r = 0.80-0.89) and strong inter-rater reliability (ICC ≈ 0.75).
Time frame: Baseline
The Snellen Visual Acuity Test is a standardized measure of distance vision in children, performed at 6 meters using optotypes. It demonstrates high reliability (ICC 0.89-0.94) and strong validity with clinical vision assessments. It also shows good diagnostic accuracy for refractive errors, with sensitivity of 80%-92% and specificity of 85%-94%.
Time frame: Baseline
Manual Muscle Testing (MMT) shows good validity and excellent intra-rater reliability (ICC ≈ 0.99), particularly when performed by trained clinicians. Inter-rater reliability is variable (ICC 0.37-0.87), depending on examiner consistency and standardization. With experienced assessors, reliability can be very high (ICC up to 0.984), making it a useful clinical tool when properly applied.
Contact information is provided by the study sponsor or research team.
Imran Amjad, PhD
CONTACT
Muhammad Asif Javed, MS-PT
CONTACT
Riphah International University
Other
Comparison of Foot-Core Training With and Without Visual Feedback on Gait and Foot Posture in Children With Flexible Pes Planus
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