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Evaluation of Pediatric Manual Wheelchair Mobility Using Advanced Biomechanical Methods

机译:采用先进生物力学方法评估儿科手动轮椅移动性

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摘要

There is minimal research of upper extremity joint dynamics during pediatric wheelchair mobility despite the large number of children using manual wheelchairs. Special concern arises with the pediatric population, particularly in regard to the longer duration of wheelchair use, joint integrity, participation and community integration, and transitional care into adulthood. This study seeks to provide evaluation methods for characterizing the biomechanics of wheelchair use by children with spinal cord injury (SCI). Twelve subjects with SCI underwent motion analysis while they propelled their wheelchair at a self-selected speed and propulsion pattern. Upper extremity joint kinematics, forces, and moments were computed using inverse dynamics methods with our custom model. The glenohumeral joint displayed the largest average range of motion (ROM) at 47.1° in the sagittal plane and the largest average superiorly and anteriorly directed joint forces of 6.1% BW and 6.5% BW, respectively. The largest joint moments were 1.4% body weight times height (BW x H) of elbow flexion and 1.2% BW x H of glenohumeral joint extension. Pediatric manual wheelchair users demonstrating these high joint demands may be at risk for pain and upper limb injuries. These evaluation methods may be a useful tool for clinicians and therapists for pediatric wheelchair prescription and training.
机译:虽然使用手动轮椅的儿童数量大,但在儿科轮椅移动期间对上肢关节动力学进行了最小的研究。特别关注的是儿科人口,特别是在较长的轮椅使用,联合诚信,参与和社区整合以及过渡性进入成年期。本研究旨在提供用于表征脊髓损伤(SCI)的儿童使用轮椅使用的生物力学的评估方法。十二个受试者与SCI接受了运动分析,同时以自选择的速度和推进模式推动轮椅。使用具有我们的自定义模型的逆动力学方法计算上肢关节运动学,力量和时刻。 Glenohumeral接头在矢状平面中显示出47.1°的最大平均运动(ROM),并且分别为6.1%BW和6.5%BW的最大平均值和前一个引导的关节力。最大的关节矩为肘关节屈曲的1.4%体重(BW x H)和Glenohumeral关节延伸的1.2%BW X H.儿科手动轮椅用户展示这些高度需求可能面临疼痛和上肢伤害的风险。这些评估方法可能是用于临床医生和治疗师的有用工具,用于儿科轮椅处方和培训。

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