针对运动迟缓的学步儿童,开展了一项乘骑汽车和站坐姿势组合的试点随机对照试验,以促进他们的行动能力和社交功能。

IF 1.9 4区 医学 Q2 REHABILITATION Disability and Rehabilitation-Assistive Technology Pub Date : 2025-01-01 Epub Date: 2024-01-05 DOI:10.1080/17483107.2023.2299712
Hsiang-Han Huang, Yu-Wen Chu, Ai-Tzu Chan, Chia-Ling Chen
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引用次数: 0

摘要

目的:直立姿势下的运动经验对幼儿的活动能力和社交功能的发展至关重要。本随机对照试验旨在研究使用改装的乘骑车(ROC),结合站姿和坐姿,对运动迟缓幼儿的活动能力和社交功能的影响:19名患有轻度、中度或重度运动迟缓的1-3岁幼儿被随机分配到四个乘骑车组。ROC组有不同的站立和坐姿组合,即站立70分钟(ROC-Stand70,5名参与者)、站立45分钟(ROC-Stand45,4名参与者)、站立25分钟(ROC-Stand25,5名参与者)和坐70分钟(ROC-Sit70,5名参与者)。所有参与者每周两次,每次 2 小时,共持续 12 周。在干预前后和 12 周的随访后,进行了儿科残疾评估量表、目标达成量表和 Bayley-III 测试。采用混合模型方差分析比较组间和组内差异。该试验已在ClinicalTrials.gov(NCT03707405)上注册:结果:所有组别在后期测试中的活动能力、社会功能和目标实现情况均有明显改善(P将物理和社会环境改造与积极探索相结合,对于运动迟缓幼儿的早期力量移动训练至关重要。为了提高我们研究结果的稳健性和普遍性,未来的研究应包括更大的样本量、考虑运动迟缓的差异以及测量干预过程中的能量消耗。与照护者一起设定目标并将他们的角色纳入训练过程中,可以增强他们与儿童更频繁、更积极互动的能力。
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A pilot randomised controlled trial of ride-on cars and postural combinations of standing and sitting for mobility and social function in toddlers with motor delays.

Purpose: Locomotor experiences in upright postures are essential for developing toddlers' mobility and social functions. This pilot randomised controlled trial aimed to examine the effectiveness of using a modified ride-on car (ROC) with postural combinations of standing and sitting on mobility and social function in toddlers with motor delays.

Materials and methods: Nineteen participants aged 1-3 years with mild, moderate or severe motor delays were randomly assigned to four ROC groups. The ROC groups had different combinations of standing and sitting, namely standing for 70 min (ROC-Stand70, five participants), standing for 45 min (ROC-Stand45, four participants), standing for 25 min (ROC-Stand25, five participants) and sitting for 70 min (ROC-Sit70, five participants). All participants participated in 2-h sessions twice a week for 12 weeks. The Pediatric Evaluation of Disability Inventory, Goal Attainment Scaling and Bayley-III tests were administered before and after the intervention, and after 12 weeks of follow-up. A mixed-model analysis of variance was used to compare inter- and intra-group differences. This trial was registered at ClinicalTrials.gov (NCT03707405).

Results: All groups showed significantly improved mobility, social function and goal achievement at the post-test (p < .001). However, no significant changes were observed in Bayley scores.

Conclusions: Combining physical and social environmental modifications with active exploration is crucial for early power mobility training in toddlers with motor delays. To enhance the robustness and generalisability of our findings, future studies should include larger sample sizes, consider variations in motor delays, and measure energy expenditure during the intervention.Implications for rehabilitationProviding active exploratory experience using ride-on cars (ROCs) with various postural combinations can improve a child's mobility.The ROC training with various postural combinations can improve social function, and the degree of improvement may depend on the severity of motor delays.Setting goals with caregivers and incorporating their roles in the training process can empower them to interact with children more frequently and actively.

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13.60%
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128
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