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VR Versus Plyometric Exercise on Lower Limb Motor Control and Balance in Spastic Hemiplegic Children

2026年9月14日 更新者:Lama Saad El-Din Mahmoud、October 6 University

Effect of Virtual Reality-Based Therapy Versus Plyometric Exercise Training on Lower Limb Selective Motor Control , Balance and Quality of Life in Spastic Hemiplegic Children : a Randomized Controlled Trial

To investigate and compare the effect of Virtual reality and Polymetric exercises on balance, selectivity of the lower extremity and quality of life in children with spastic cerebral palsy. BACKGROUND:

Cerebral palsy (CP) can cause a variety of musculoskeletal issues that impact everyday functioning and activities including reduced balance and selective motor control thus improving balance, selective motor control, and quality of life represents a primary goal of pediatric rehabilitation. Various therapeutic interventions have been introduced to enhance lower limb function however, evidence comparing the effectiveness of different treatment approaches remains limited.

研究概览

详细说明

To investigate and compare the effect of Virtual reality and Polymetric exercises on balance, selectivity of the lower extremity and quality of life in children with spastic cerebral palsy. BACKGROUND:

Cerebral palsy (CP) can cause a variety of musculoskeletal issues that impact everyday functioning and activities including reduced balance and selective motor control thus improving balance, selective motor control, and quality of life represents a primary goal of pediatric rehabilitation. Various therapeutic interventions have been introduced to enhance lower limb function however, evidence comparing the effectiveness of different treatment approaches remains limited.

Hypothesis

This study hypothesized that:

there is no difference between the effect of virtual reality and polymetric exercises on balance, selective motor control in lower extremity and quality of life in children with spastic cerebral palsy.

RESEARCH QUESTION:

Is there difference between the effect of virtual reality and polymetric exercises on balance, selective motor control in lower extremity and quality of life in children with spastic cerebral palsy?

研究类型

介入性

注册 (估计的)

44

阶段

  • 不适用

参与标准

研究人员寻找符合特定描述的人,称为资格标准。这些标准的一些例子是一个人的一般健康状况或先前的治疗。

资格标准

适合学习的年龄

  • 孩子
  • 成人

接受健康志愿者

不

描述

Inclusion Criteria:

  • children with cerebral palsy,
  • Age will range as (12:18) years old
  • spastic cerebral palsy
  • level I-II on the GMFCS
  • The child can stand alone.
  • The child is over one meter tall.

Exclusion Criteria:

  • difficulty to communicate or to understand program instructions
  • surgery/Botox injection during the last 6 months in the lower extremity
  • uncontrolled severe seizures
  • fixed deformities in the affected side;
  • Attention deficit/hyperactivity disorders.

学习计划

本节提供研究计划的详细信息,包括研究的设计方式和研究的衡量标准。

研究是如何设计的?

设计细节

  • 主要用途:治疗
  • 分配:随机化
  • 介入模型:并行分配
  • 屏蔽:无(打开标签)

武器和干预

参与者组/臂
干预/治疗
实验性的:Virtual reality
Virtual reality (VR) will be used as an interactive, task-oriented intervention to improve lower-limb motor function and functional mobility. Participants will perform virtual activities involving weight shifting, stepping, squatting, reaching with the lower limbs, balance control, and multidirectional movements. The tasks will require repetitive and goal-directed lower-limb movements within an immersive or interactive virtual environment. Task difficulty will be progressively adjusted according to each participant's functional ability by modifying movement speed, range, task complexity, or level of challenge. Visual and auditory feedback provided by the VR system will be used to facilitate movement accuracy, postural control, and active participation. All VR training will be performed under the supervision of a physiotherapist to ensure appropriate and safe execution of the activities.
Virtual reality (VR) will be used as an interactive, task-oriented intervention to improve lower-limb motor function and functional mobility. Participants will perform virtual activities involving weight shifting, stepping, squatting, reaching with the lower limbs, balance control, and multidirectional movements. The tasks will require repetitive and goal-directed lower-limb movements within an immersive or interactive virtual environment. Task difficulty will be progressively adjusted according to each participant's functional ability by modifying movement speed, range, task complexity, or level of challenge. Visual and auditory feedback provided by the VR system will be used to facilitate movement accuracy, postural control, and active participation. All VR training will be performed under the supervision of a physiotherapist to ensure appropriate and safe execution of the activities.
实验性的:Polymetric exercises
Plyometric exercises will be incorporated to improve lower-limb explosive strength, power, and neuromuscular performance. Participants will perform progressive, rapid stretch-shortening cycle exercises involving jumping, hopping, and landing activities. Exercises will include bilateral and unilateral jumps, forward and lateral hops, and repeated squat jumps, according to the participant's functional ability. Exercise intensity and complexity will be progressively increased by modifying the jumping distance, height, speed, or number of repetitions. Proper landing technique and controlled lower-limb alignment will be emphasized throughout the training to ensure safe and effective performance.
Plyometric exercises will be incorporated to improve lower-limb explosive strength, power, and neuromuscular performance. Participants will perform progressive, rapid stretch-shortening cycle exercises involving jumping, hopping, and landing activities. Exercises will include bilateral and unilateral jumps, forward and lateral hops, and repeated squat jumps, according to the participant's functional ability. Exercise intensity and complexity will be progressively increased by modifying the jumping distance, height, speed, or number of repetitions. Proper landing technique and controlled lower-limb alignment will be emphasized throughout the training to ensure safe and effective performance.

研究衡量的是什么?

主要结果指标

结果测量
措施说明
大体时间
Biodex
大体时间:three months
The Biodex Balance System will be used to assess dynamic postural stability using the Overall Stability Index (OSI). Participants will stand barefoot on the platform with the feet positioned according to the standardized protocol and will be instructed to maintain their balance while the platform moves unpredictably in multiple directions. The test will be performed under standardized conditions, with the participant instructed to maintain the center of balance within the target area throughout the assessment. The OSI will be recorded as an indicator of overall postural stability, with higher OSI values indicating greater instability and poorer balance control.
three months
Selective Control Assessment of the Lower Extremity (SCALE)
大体时间:three months
The Selective Control Assessment of the Lower Extremity (SCALE) will be used to assess selective voluntary motor control of the lower extremities. The assessment will evaluate the participant's ability to perform isolated movements of the hip, knee, ankle, and toes while minimizing compensatory movements at the adjacent joints. Each movement will be demonstrated and the participant will be instructed to perform it actively and selectively. Each component will be scored according to the standardized SCALE scoring criteria, with higher scores indicating better selective motor control of the lower extremity.
three months

次要结果测量

结果测量
措施说明
大体时间
Pediatric Quality of Life Inventory CP Module.
大体时间:three months
The Pediatric Quality of Life Inventory Cerebral Palsy Module (PedsQL CP Module) will be used to assess health-related quality of life in children with cerebral palsy. The module will evaluate cerebral palsy-specific aspects of the child's physical, emotional, social, and functional well-being. Items will be rated using the standardized response scale, and scores will be calculated according to the PedsQL scoring guidelines. Higher scores will indicate better health-related quality of life.
three months

合作者和调查者

在这里您可以找到参与这项研究的人员和组织。

研究记录日期

这些日期跟踪向 ClinicalTrials.gov 提交研究记录和摘要结果的进度。研究记录和报告的结果由国家医学图书馆 (NLM) 审查,以确保它们在发布到公共网站之前符合特定的质量控制标准。

研究主要日期

学习开始 (估计的)

2026年9月20日

初级完成 (估计的)

2027年1月30日

研究完成 (估计的)

2027年2月15日

研究注册日期

首次提交

2026年9月14日

首先提交符合 QC 标准的

2026年9月14日

首次发布 (实际的)

2026年9月18日

研究记录更新

最后更新发布 (实际的)

2026年9月18日

上次提交的符合 QC 标准的更新

2026年9月14日

最后验证

2026年9月1日

更多信息

与本研究相关的术语

药物和器械信息、研究文件

研究美国 FDA 监管的药品

不

研究美国 FDA 监管的设备产品

不

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