Exo Supportive Devices: Summary of Technical Aspects

被引:5
作者
Andre, Antonio Diogo [1 ,2 ]
Martins, Pedro [1 ,3 ]
机构
[1] Inst Sci & Innovat Mech & Ind Engn INEGI, Associated Lab Energy Transports & Aeronaut LAETA, Biomech & Hlth Unity UBS, P-4200465 Porto, Portugal
[2] Univ Porto FEUP, Fac Engn, P-4200465 Porto, Portugal
[3] Univ Zaragoza, Aragon Inst Engn Res I3A, Zaragoza 50018, Spain
来源
BIOENGINEERING-BASEL | 2023年 / 10卷 / 11期
关键词
external device; biomechanical design; structural materials; actuation; energy sources; control system;
D O I
10.3390/bioengineering10111328
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Human societies have been trying to mitigate the suffering of individuals with physical impairments, with a special effort in the last century. In the 1950s, a new concept arose, finding similarities between animal exoskeletons, and with the goal of medically aiding human movement (for rehabilitation applications). There have been several studies on using exosuits with this purpose in mind. So, the current review offers a critical perspective and a detailed analysis of the steps and key decisions involved in the conception of an exoskeleton. Choices such as design aspects, base materials (structure), actuators (force and motion), energy sources (actuation), and control systems will be discussed, pointing out their advantages and disadvantages. Moreover, examples of exosuits (full-body, upper-body, and lower-body devices) will be presented and described, including their use cases and outcomes. The future of exoskeletons as possible assisted movement solutions will be discussed-pointing to the best options for rehabilitation.
引用
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页数:31
相关论文
共 222 条
[1]   Design, control, and testing of a thumb exoskeleton with series elastic actuation [J].
Agarwal, Priyanshu ;
Yun, Youngmok ;
Fox, Jonas ;
Madden, Kaci ;
Deshpande, Ashish D. .
INTERNATIONAL JOURNAL OF ROBOTICS RESEARCH, 2017, 36 (03) :355-375
[2]  
Agarwal P, 2015, INT C REHAB ROBOT, P85, DOI 10.1109/ICORR.2015.7281180
[3]   Robotics for rehabilitation of hand movement in stroke survivors [J].
Aggogeri, Francesco ;
Mikolajczyk, Tadeusz ;
O'Kane, James .
ADVANCES IN MECHANICAL ENGINEERING, 2019, 11 (04)
[4]   Robotic Home-Based Rehabilitation Systems Design: From a Literature Review to a Conceptual Framework for Community-Based Remote Therapy During COVID-19 Pandemic [J].
Akbari, Aylar ;
Haghverd, Faezeh ;
Behbahani, Saeed .
FRONTIERS IN ROBOTICS AND AI, 2021, 8
[5]  
Al-Fahaam H, 2016, 2016 INTERNATIONAL CONFERENCE FOR STUDENTS ON APPLIED ENGINEERING (ICSAE), P491, DOI 10.1109/ICSAE.2016.7810241
[6]   Lokomat Robotic-Assisted Versus Overground Training Within 3 to 6 Months of Incomplete Spinal Cord Lesion: Randomized Controlled Trial [J].
Alcobendas-Maestro, Monica ;
Esclarin-Ruz, Ana ;
Casado-Lopez, Rosa M. ;
Munoz-Gonzalez, Alejandro ;
Perez-Mateos, Guillermo ;
Gonzalez-Valdizan, Esteban ;
Martin, Jose Luis R. .
NEUROREHABILITATION AND NEURAL REPAIR, 2012, 26 (09) :1058-1063
[7]  
Almenara M, 2017, DISABIL REHABIL-ASSI, V12, P84, DOI 10.3109/17483107.2015.1079653
[8]   Active Exoskeleton Control Systems: State of the Art [J].
Anam, Khairul ;
Al-Jumaily, Adel Ali .
INTERNATIONAL SYMPOSIUM ON ROBOTICS AND INTELLIGENT SENSORS 2012 (IRIS 2012), 2012, 41 :988-994
[9]   Ability to perform activities of daily living is the main factor affecting quality of life in patients with dementia [J].
Andersen C.K. ;
Wittrup-Jensen K.U. ;
Lolk A. ;
Andersen K. ;
Kragh-Sørensen P. .
Health and Quality of Life Outcomes, 2 (1)
[10]   EMG Signals as a Way to Control Soft Actuators [J].
Andre, Antonio Diogo ;
Teixeira, Ana Margarida ;
Martins, Pedro .
COMPUTER METHODS, IMAGING AND VISUALIZATION IN BIOMECHANICS AND BIOMEDICAL ENGINEERING II, 2023, 38 :50-58