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首页> 外文期刊>Applied bionics and biomechanics >Usefulness of Magnetoinertial Wearable Devices in Neurorehabilitation of Children with Cerebral Palsy
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Usefulness of Magnetoinertial Wearable Devices in Neurorehabilitation of Children with Cerebral Palsy

机译:脑瘫患儿童神经前耐磨装置的用途

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摘要

Background. Despite the increasing use of wearable magnetoinertial measurement units (MIMUs) for gait analysis, the efficacy of MIMU-based assessment for planning rehabilitation has not been adequately documented yet. Methods. The usefulness of a MIMU-based assessment was evaluated comparing the data acquired by three MIMUs located at the pelvis, sternum, and head levels in 12 children with cerebral palsy (CP, age: 2-9 years) and 12 age-matched children with typical development (TD). Gait stability was quantified in terms of acceleration attenuation coefficients from pelvis to head, pelvis to sternum, and sternum to head. Children with CP were randomly divided in two groups: in the first group (CPI), MIMU-based parameters were used by therapists for planning patient-tailored rehabilitation programs, whereas in the second group (CPB), therapists were blind to the MIMU-based assessment results. Both CPI and CPB were tested before and after the relevant neurorehabilitation program. Ad hoc questionnaires were also administered to therapists of the CPI group to assess the degree of usefulness perceived about the information provided by the MIMU-based assessment. Results. Significant differences were found between children with CP and those with TD for the acceleration attenuation coefficient from pelvis to head (p = 0 048) and from pelvis to sternum (p = 0 021). After neurorehabilitation, this last parameter increased more in CPI (35%) than in CPB (6%, p = 0 017 for the interaction group per time). The results of the questionnaires showed that therapists agreed with the usability (100% judged it as "easy to use") and usefulness of the MIMU-based assessment in defining patient-oriented interventions (87%). Conclusions. There is a large debate in literature about the efficacy of classical gait analysis that should be enlarged to new technological approaches, such as that based on MIMUs. This study is a first proof of concept about the efficacy of this approach for neuroreh
机译:背景。尽管使用可穿戴磁力学测量单位(MIMU)的步态分析使用的越来越多,但仍未得到充分记录MIMU的规划康复评估的效果。方法。评估了MIMU的评估的有用性比较了位于骨盆,胸骨,胸骨,头部的三个菌群中获得的数据,患有12名患有脑瘫(CP,年龄:2-9岁)和12名年龄匹配儿童的儿童典型的发展(TD)。从骨盆到头部,骨盆到胸骨的加速衰减系数而定量步态稳定性,以及胸骨到头部。 CP的儿童被随机分为两组:在第一组(CPI)中,治疗师使用基于MIMU的参数,用于规划患者量身定制的康复计划,而在第二组(CPB)中,治疗师对MIMU盲目基于评估结果。在相关的神经睡眠计划之前和之后测试CPI和CPB两次。还向CPI集团的治疗师提供临时问卷,以评估基于MIMU的评估所提供的信息的有用程度。结果。 CP的儿童与TD与从骨盆到头部(P = 0 048)的加速衰减系数的儿童和从骨盆到胸骨(P = 0 021)之间存在显着差异。在Neurorehilitation之后,该最后参数在CPI(35%)中比在CPB(6%,P = 0 017为每次的相互作用组)增加。问卷的结果表明,治疗师同意的可用性(100%判断它为“易于使用”),以及在定义患者导向的干预措施时基于MIMU的评估的有用性(87%)。结论。关于古典步态分析的疗效存在大规模辩论,这应该扩大到新的技术方法,例如基于MIMUS。本研究是关于这种方法对神经环境的功效的第一个概念证明

著录项

  • 来源
    《Applied bionics and biomechanics》 |2018年第2期|共7页
  • 作者单位

    Clinical Laboratory of Experimental Neurorehabilitation IRCCS Fondazione Santa Lucia Via Ardeatina 306 00179 Rome Italy;

    Clinical Laboratory of Experimental Neurorehabilitation IRCCS Fondazione Santa Lucia Via Ardeatina 306 00179 Rome Italy;

    Interuniversity Centre of Bioengineering of the Human Neuromusculoskeletal System Department of Movement Human and Health Sciences University of Rome "Foro Italico" Piazza Lauro De Bosis 15 00135 Rome Italy;

    Interuniversity Centre of Bioengineering of the Human Neuromusculoskeletal System Department of Movement Human and Health Sciences University of Rome "Foro Italico" Piazza Lauro De Bosis 15 00135 Rome Italy;

    Clinical Laboratory of Experimental Neurorehabilitation IRCCS Fondazione Santa Lucia Via Ardeatina 306 00179 Rome Italy;

    Interuniversity Centre of Bioengineering of the Human Neuromusculoskeletal System Department of Movement Human and Health Sciences University of Rome "Foro Italico" Piazza Lauro De Bosis 15 00135 Rome Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 仿生学;
  • 关键词

    wearable magnetoinertial; MIMU-based assessment; MIMU-based assessment;

    机译:可穿戴磁力学;基于MIMU的评估;基于MIMU的评估;

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