Artificial musculature: An overview of the different exoskeleton models and their applications

Emanuela Isabella Ferraro, F. Orofino, Maria Chiara Parisi, M. Bellomo, V. Francavilla, C. Crescimanno
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引用次数: 1

Abstract

Recovery of upper and lower limbs function is essential to reach independence in patients with neurodegenerative diseases. The exoskeleton is an external wearable structure that provide to increase the physical capabilities with important applications in medical and rehabilitative therapy. Robotic exoskeletons for upper and lower limbs, based on the principle of motor learning, have been introduced in neurorehabilitation. The treatment must be individualized according to the characteristics of the patient, to provide him all the help necessary for the improvement of his quality of life. Wearable exoskeletons have potential for a number of applications including early rehabilitation, promoting physical exercise, and may improve mobility and independence, moreover, may reduce secondary health conditions related to sedentariness, with all the advantages that this entails. This work focuses on the importance of using the exoskeleton for the rehabilitation of people with neurodegenerative diseases and problems related to loss of motor skills, highlighting the benefits of this type of rehabilitation compared to traditional physical therapy. In conclusion, these devices represent an important turning point in the lives of many disabled people for their independence but also for their assistance. The hope for the future is to be able to permanently replace the wheelchair.
人工肌肉:不同外骨骼模型及其应用综述
对于神经退行性疾病患者,恢复上肢和下肢功能是达到独立的必要条件。外骨骼是一种外部可穿戴结构,在医疗和康复治疗中具有重要的应用,可以提高身体能力。基于运动学习原理的上肢和下肢机器人外骨骼已被引入神经康复领域。治疗必须根据病人的特点进行个体化,为他提供一切必要的帮助,以改善他的生活质量。可穿戴外骨骼具有许多应用潜力,包括早期康复、促进体育锻炼,并可能改善行动能力和独立性,此外,还可能减少与久坐相关的二次健康状况,并具有由此带来的所有优势。这项工作的重点是使用外骨骼对患有神经退行性疾病和运动技能丧失相关问题的人的康复的重要性,强调了与传统物理治疗相比,这种类型的康复的好处。总之,这些设备代表了许多残疾人生活中的一个重要转折点,不仅有利于他们的独立,也有利于他们的帮助。未来的希望是能够永久地取代轮椅。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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