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Exoskeleton use in post-stroke gait rehabilitation: a qualitative study of the perspectives of persons post-stroke and physiotherapists

机译:中风后步态康复的外骨骼:对卒中后和物理治疗师的角度的定性研究

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Wearable powered exoskeletons are a new and emerging technology developed to provide sensory-guided motorized lower limb assistance enabling intensive task specific locomotor training utilizing typical lower limb movement patterns for persons with gait impairments. To ensure that devices meet end-user needs it is important to understand and incorporate end-users perspectives, however research in this area is extremely limited in the post-stroke population. The purpose of this study was to explore in-depth, end-users perspectives, persons with stroke and physiotherapists, following a single-use session with a H2 exoskeleton. We used a qualitative interpretive description approach utilizing semi-structured face to face interviews, with persons post-stroke and physiotherapists, following a 1.5?h session with a H2 exoskeleton. Five persons post-stroke and 6 physiotherapists volunteered to participate in the study. Both participant groups provided insightful comments on their experience with the exoskeleton. Four themes were developed from the persons with stroke participant data: (1) Adopting technology; (2) Device concerns; (3) Developing walking ability; and, (4) Integrating exoskeleton use. Five themes were developed from the physiotherapist participant data: (1) Developer-user collaboration; (2) Device specific concerns; (3) Device programming; (4) Patient characteristics requiring consideration; and, (5) Indications for use. This study provides an interpretive understanding of end-users perspectives, persons with stroke and neurological physiotherapists, following a single-use experience with a H2 exoskeleton. The findings from both stakeholder groups overlap such that four over-arching concepts were identified including: (i) Stakeholder participation; (ii) Augmentation vs. autonomous robot; (iii) Exoskeleton usability; and (iv) Device specific concerns. The end users provided valuable perspectives on the use and design of the H2 exoskeleton, identifying needs specific to post-stroke gait rehabilitation, the need for a robust evidence base, whilst also highlighting that there is significant interest in this technology throughout the continuum of stroke rehabilitation.
机译:可穿戴动力的外骨骼是一种新的和新兴的技术,用于提供感觉引导的机动下肢辅助,该辅助能够利用具有步态损伤的人的人使用典型的下肢运动模式。为确保设备满足最终用户的需求,重要的是要理解和纳入最终用户的观点,但是在中风后群体中的研究非常有限。本研究的目的是探讨深入,最终用户的观点,卒中和物理治疗师的人员在单用H 2外骨骼之后。我们利用半结构性面对面面对面的定性解释性描述方法,与中风后和物理治疗师,与H2外骨骼进行1.5μl会话。中风后的五个人和6名物理治疗师自愿参加该研究。两位参与者都对他们与外骨骼的经验提供了洞察力评论。从卒中参与者数据的人开发了四个主题:(1)采用技术; (2)设备涉及; (3)发展行走能力;和(4)整合外骨骼使用。从物理治疗师参与者数据开发了五个主题:(1)开发人员 - 用户协作; (2)设备特定问题; (3)设备编程; (4)需要考虑的患者特征;和(5)使用的适用。本研究提供了对H2外骨骼的一次性经验之后对最终用户的观点,中风和神经系统治疗师的脑卒中和神经系统治疗师的解释理解。利益相关者群体的调查结果重叠,使得确定了四个过拱形概念,包括:(i)利益相关者参与; (ii)增强与自治机器人; (iii)外骨骼可用性; (iv)设备特定问题。最终用户提供了有价值的视角,对H2外骨骼的使用和设计,识别特定于冲程后步态康复的需求,需要强大的证据基础,同时强调在整个中风的连续轴上存在显着兴趣复原。

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