BPG is committed to discovery and dissemination of knowledge
Cited by in CrossRef
For: Gorgey AS. Robotic exoskeletons: The current pros and cons. World J Orthop 2018; 9(9): 112-119 [PMID: 30254967 DOI: 10.5312/wjo.v9.i9.112]
URL: https://www.wjgnet.com/2218-5836/full/v9/i9/112.htm
Number Citing Articles
1
Matteo Laffranchi, Stefano D'Angella, Christian Vassallo, Chiara Piezzo, Michele Canepa, Samuele De Giuseppe, Mirco Di Salvo, Antonio Succi, Samuele Cappa, Giulio Cerruti, Silvia Scarpetta, Lorenzo Cavallaro, Nicolò Boccardo, Marialaura D'Angelo, Claudia Marchese, Jody A. Saglia, Eleonora Guanziroli, Giacinto Barresi, Marianna Semprini, Simone Traverso, Stefano Maludrottu, Franco Molteni, Rinaldo Sacchetti, Emanuele Gruppioni, Lorenzo De Michieli. User-Centered Design and Development of the Modular TWIN Lower Limb ExoskeletonFrontiers in Neurorobotics 2021; 15 doi: 10.3389/fnbot.2021.709731
2
Christine Linnenberg, Robert Weidner. Industrial exoskeletons for overhead work: Circumferential pressures on the upper arm caused by the physical human-machine-interfaceApplied Ergonomics 2022; 101: 103706 doi: 10.1016/j.apergo.2022.103706
3
Alexander Kott. Toward universal laws of technology evolution: modeling multi-century advances in mobile direct-fire systemsThe Journal of Defense Modeling and Simulation: Applications, Methodology, Technology 2020; 17(4): 373 doi: 10.1177/1548512919875523
4
Rania Kolaghassi, Mohamad Kenan Al-Hares, Gianluca Marcelli, Konstantinos Sirlantzis. Performance of Deep Learning Models in Forecasting Gait Trajectories of Children with Neurological DisordersSensors 2022; 22(8): 2969 doi: 10.3390/s22082969
5
J.F. Avila-Tomás, M.A. Mayer-Pujadas, V.J. Quesada-Varela. La inteligencia artificial y sus aplicaciones en medicina I: introducción antecedentes a la IA y robóticaAtención Primaria 2020; 52(10): 778 doi: 10.1016/j.aprim.2020.04.013
6
Sana Bembli, Nahla Khraief Haddad, Safya Belghith. A Robust Model Free Terminal Sliding Mode with Gravity Compensation Control of a 2 DoF Exoskeleton-Upper Limb SystemJournal of Control, Automation and Electrical Systems 2021; 32(3): 632 doi: 10.1007/s40313-021-00687-z
7
Bih‐O Lee, Ita Daryanti Saragih, Sakti Oktaria Batubara. Robotic arm use for upper limb rehabilitation after stroke: A systematic review and meta‐analysisThe Kaohsiung Journal of Medical Sciences 2023; 39(5): 435 doi: 10.1002/kjm2.12679
8
Fabiola Reyes, Christian Niedzwecki, Deborah Gaebler-Spira. Technological Advancements in Cerebral Palsy RehabilitationPhysical Medicine and Rehabilitation Clinics of North America 2020; 31(1): 117 doi: 10.1016/j.pmr.2019.09.002
9
Min Hun Lee, Daniel P. Siewiorek, Asim Smailagic, Alexandre Bernardino, Sergi Bermúdez i Badia. Enabling AI and Robotic Coaches for Physical Rehabilitation Therapy: Iterative Design and Evaluation with Therapists and Post-stroke SurvivorsInternational Journal of Social Robotics 2024; 16(1): 1 doi: 10.1007/s12369-022-00883-0
10
Szilvia Kóra, Adrienn Bíró, Nándor Prontvai, Mónika Androsics, István Drotár, Péter Prukner, Tamás Haidegger, Klaudia Széphelyi, József Tollár. Investigation of the Effectiveness of the Robotic ReStore Soft Exoskeleton in the Development of Early Mobilization, Walking, and Coordination of Stroke Patients: A Randomized Clinical TrialRobotics 2024; 13(3): 44 doi: 10.3390/robotics13030044
11
Naifu Jiang, Dashuai Wang, Xinyu Ji, Lin Wang, Xinyu Wu, Guanglin Li. Effect Analysis of Wearing an Lumbar Exoskeleton on Coordinated Activities of the Low Back Muscles Using sEMG Topographic MapsIEEE Transactions on Neural Systems and Rehabilitation Engineering 2024; 32: 259 doi: 10.1109/TNSRE.2023.3349189
12
M. A. Velez-Guerrero, M. Callejas-Cuervo. Data Acquisition and Control Architecture for Intelligent Robotic Exoskeletons in Rehabilitation2019 E-Health and Bioengineering Conference (EHB) 2019; : 1 doi: 10.1109/EHB47216.2019.8970015
13
Jan Babič, Matteo Laffranchi, Federico Tessari, Tom Verstraten, Domen Novak, Nejc Šarabon, Barkan Ugurlu, Luka Peternel, Diego Torricelli, Jan F. Veneman. Challenges and solutions for application and wider adoption of wearable robotsWearable Technologies 2021; 2 doi: 10.1017/wtc.2021.13
14
Myoungjae Jun, Hieyong Jeong, Yuko Ohno. Operation of assistive apparatus through recognition of human behavior: Development and experimental evaluation of chair-typed assistive apparatus of nine-link mechanism with 1 degree of freedomAdvances in Mechanical Engineering 2020; 12(7): 168781402093889 doi: 10.1177/1687814020938899
15
EUN-HYE CHA, KYONG KIM, SEUNG-YONG OH, MI YU, TAE-KYU KWON. ANALYSIS OF PHYSIOLOGICAL SIGNALS ON THE WEARABLE ASSIST SUIT FOR REPETITIVE AGRICULTURAL TASKJournal of Mechanics in Medicine and Biology 2021; 21(09) doi: 10.1142/S0219519421400327
16
Angela Arntz, Franziska Weber, Marietta Handgraaf, Kaisa Lällä, Katariina Korniloff, Kari-Pekka Murtonen, Julija Chichaeva, Anita Kidritsch, Mario Heller, Evanthia Sakellari, Christina Athanasopoulou, Areti Lagiou, Ioanna Tzonichaki, Iosune Salinas-Bueno, Pau Martínez-Bueso, Olga Velasco-Roldán, Ralf-Joachim Schulz, Christian Grüneberg. Technologies in Home-Based Digital Rehabilitation: Scoping ReviewJMIR Rehabilitation and Assistive Technologies 2023; 10: e43615 doi: 10.2196/43615
17
Vanina Costa, Cristina Sánchez, Luis Perea, Eduardo Rocon, Abraham Otero, Rafael Raya. Rediseño basado en la experiencia clínica de un andador robótico para la rehabilitación de fractura de caderaRevista Iberoamericana de Automática e Informática industrial 2023; 20(3): 247 doi: 10.4995/riai.2023.17839
18
Ricardo Ferreira, Rubim Santos, Andreia Sousa. Exploring the Convergence of Computer and Medical Science Through Cloud HealthcareAdvances in Medical Technologies and Clinical Practice 2022; : 163 doi: 10.4018/978-1-6684-5260-8.ch008
19
Robert W. Evans, Claire L. Shackleton, Sacha West, Wayne Derman, HG Laurie Rauch, Ed Baalbergen, Yumna Albertus. Robotic Locomotor Training Leads to Cardiovascular Changes in Individuals With Incomplete Spinal Cord Injury Over a 24-Week Rehabilitation Period: A Randomized Controlled Pilot StudyArchives of Physical Medicine and Rehabilitation 2021; 102(8): 1447 doi: 10.1016/j.apmr.2021.03.018
20
Daniel Pinto, Mauricio Garnier, Jason Barbas, Shuo-Hsiu Chang, Susan Charlifue, Edelle Field-Fote, Catherine Furbish, Candy Tefertiller, Chaithanya K. Mummidisetty, Heather Taylor, Arun Jayaraman, Allen W. Heinemann. Budget impact analysis of robotic exoskeleton use for locomotor training following spinal cord injury in four SCI Model SystemsJournal of NeuroEngineering and Rehabilitation 2020; 17(1) doi: 10.1186/s12984-019-0639-0
21
Ildar Kagirov, Alexey Karpov, Irina Kipyatkova, Konstantin Klyuzhev, Alexander Kudryavcev, Igor Kudryavcev, Dmitry Ryumin. Intelligent Distributed Computing XIIIStudies in Computational Intelligence 2020; 868: 457 doi: 10.1007/978-3-030-32258-8_54
22
Saivimal Sridar, Zhi Qiao, Alvaro Rascon, Albert Biemond, Amanda Beltran, Trent Maruyama, Christina Kwasnica, Panagiotis Polygerinos, Wenlong Zhang. Evaluating Immediate Benefits of Assisting Knee Extension With a Soft Inflatable ExosuitIEEE Transactions on Medical Robotics and Bionics 2020; 2(2): 216 doi: 10.1109/TMRB.2020.2988305
23
N.N. Karjakin, A.N. Belova, V.O. Sushin, G.E. Sheiko, Y.A. Israeljan, N.Y. Litvinova. Potential benefits and limitations of robotic exoskeleton usage in patients with spinal cord injury: a reviewBulletin of Restorative Medicine 2020; 96(2): 68 doi: 10.38025/2078-1962-2020-96-2-68-78
24
Raphaël Candelier, Alex Bois, Stéphane Tronche, Jéremy Mahieu, Abdelkrim Mannioui. A Semi-Automatic Dispenser for Solid and Liquid Food in Aquatic FacilitiesZebrafish 2019; 16(4): 401 doi: 10.1089/zeb.2019.1733
25
Saheli Datta Burton. Responsible use of exoskeletons and exosuits: Ensuring domestic security in a European contextPaladyn, Journal of Behavioral Robotics 2020; 11(1): 370 doi: 10.1515/pjbr-2020-0015
26
Vadim A. Chukreev. Imitation Market Modeling in Digital Economy: Game Theoretic ApproachesLecture Notes in Networks and Systems 2022; 368: 817 doi: 10.1007/978-3-030-93244-2_87
27
R. Verron, D. Ricard. Exosquelettes chez les blessés médullairesPratique Neurologique - FMC 2021; 12(3): 224 doi: 10.1016/j.praneu.2021.03.016
28
Tommy W. Sutor, Mina P. Ghatas, Lance L. Goetz, Timothy D. Lavis, Ashraf S. Gorgey. Exoskeleton Training and Trans-Spinal Stimulation for Physical Activity Enhancement After Spinal Cord Injury (EXTra-SCI): An Exploratory StudyFrontiers in Rehabilitation Sciences 2022; 2 doi: 10.3389/fresc.2021.789422
29
Namita Anil Kumar, Shawanee Patrick, Pilwon Hur. Pilot Study on the Needs of Prospective Exoskeleton Users with Impaired Mobility2019 IEEE International Conference on Advanced Robotics and its Social Impacts (ARSO) 2019; : 106 doi: 10.1109/ARSO46408.2019.8948804
30
Tianyun Sun, Qin Hu, Paras Gulati, S. Farokh Atashzar. Temporal Dilation of Deep LSTM for Agile Decoding of sEMG: Application in Prediction of Upper-Limb Motor Intention in NeuroRoboticsIEEE Robotics and Automation Letters 2021; 6(4): 6212 doi: 10.1109/LRA.2021.3091698
31
Fulan Zhong, Yijun Wang, Guilan Li, Chuyun Huang, Anding Xu, Changrong Lin, Zhiguang Xu, Yurong Yan, Songping Wu. Beyond-carbon materials for potassium ion energy-storage devicesRenewable and Sustainable Energy Reviews 2021; 146: 111161 doi: 10.1016/j.rser.2021.111161
32
I. Sinovas-Alonso, A. Gil-Agudo, N. Comino-Suárez, A. Megía-García, N. Murillo-Licea, E. Opisso-Salleras, J. Vidal-Samsó, A. J. del-Ama. Converging Clinical and Engineering Research on Neurorehabilitation IVBiosystems & Biorobotics 2022; 28: 941 doi: 10.1007/978-3-030-70316-5_150
33
Amelia Lita, I. Made Mas Dwiyana Prasetya Wibawa, Alinda Anggraini, Akif Rahmatillah, Riries Rulaningtyas, Alfian Pramudita Putra, Khusnul Ain. Elbow angle estimation for medical rehabilitation device based on EMG sensor with ARIMAX methodTHE 3RD INTERNATIONAL CONFERENCE ON PHYSICAL INSTRUMENTATION AND ADVANCED MATERIALS (ICPIAM) 2021 2022; 2663: 020005 doi: 10.1063/5.0108512
34
Timothy R. Pote, Nicole V. Asbeck, Alan T. Asbeck. The Ethics of Mandatory Exoskeleton Use in Commercial and Industrial SettingsIEEE Transactions on Technology and Society 2023; 4(4): 302 doi: 10.1109/TTS.2023.3264807
35
Tan Jian Ding, Chia Chao Kang, Wang Han, Mohammadmahdi Ariannejad, Lee Yan Kang, Cheng Khai Ren. Development Trend of Robotic Exoskeletons2023 IEEE International Conference on Cybernetics and Intelligent Systems (CIS) and IEEE Conference on Robotics, Automation and Mechatronics (RAM) 2023; : 114 doi: 10.1109/CIS-RAM55796.2023.10370016
36
Sierra Zabel, Zachariah Lockhart, Nikhita Badiani, James Cornish, Leo Falzon, Adrian Flis, Kara Patterson, Sarah Gregor, Julie Vaughan-Graham. Physiotherapy students’ perspectives on the use and implementation of exoskeletons as a rehabilitative technology in clinical settingsDisability and Rehabilitation: Assistive Technology 2022; 17(7): 840 doi: 10.1080/17483107.2020.1818139
37
Qianqian Fang, Tian Xu, Tianjiao Zheng, Hegao Cai, Jie Zhao, Yanhe Zhu, Jaime Gallardo Alvarado. A Rehabilitation Training Interactive Method for Lower Limb Exoskeleton RobotMathematical Problems in Engineering 2022; 2022: 1 doi: 10.1155/2022/2429832
38
Susan Kotowski, Kermit Davis, Amit Bhattacharya. Patty's Industrial Hygiene2021; : 1 doi: 10.1002/0471435139.hyg108.pub2
39
Alexandre Vallée. Exoskeleton technology in nursing practice: assessing effectiveness, usability, and impact on nurses’ quality of work life, a narrative reviewBMC Nursing 2024; 23(1) doi: 10.1186/s12912-024-01821-3
40
Guido Axmann. Präventionsmedizin und Anti-Aging-Medizin2022; : 431 doi: 10.1007/978-3-662-61417-4_21
41
Rocco Salvatore Calabrò, Luana Billeri, Fabrizio Ciappina, Tina Balletta, Bruno Porcari, Antonino Cannavò, Loris Pignolo, Alfredo Manuli, Antonino Naro. Toward improving functional recovery in spinal cord injury using robotics: a pilot study focusing on ankle rehabilitationExpert Review of Medical Devices 2022; 19(1): 83 doi: 10.1080/17434440.2021.1894125
42
V. Moro, M. Scandola, S. M. Aglioti. What the study of spinal cord injured patients can tell us about the significance of the body in cognitionPsychonomic Bulletin & Review 2022; 29(6): 2052 doi: 10.3758/s13423-022-02129-6
43
Ifeanyi Okpala, Chukwuma Nnaji. Insidious risks of wearable robots to worker safety and health: A scoping reviewJournal of Safety Research 2024; 88: 382 doi: 10.1016/j.jsr.2023.11.010
44
Jenna E. Thorp, Peter Gabriel Adamczyk, Kei Masani. Mechanisms of gait phase entrainment in healthy subjects during rhythmic electrical stimulation of the medial gastrocnemiusPLOS ONE 2020; 15(10): e0241339 doi: 10.1371/journal.pone.0241339
45
Grégoire Courtine, Michael V. Sofroniew. Spinal cord repair: advances in biology and technologyNature Medicine 2019; 25(6): 898 doi: 10.1038/s41591-019-0475-6
46
Hyuk-Jae Choi, Gyoo-Suk Kim, Jung Hoon Chai, Chang-Yong Ko. <p>Effect of Gait Training Program with Mechanical Exoskeleton on Body Composition of Paraplegics</p>Journal of Multidisciplinary Healthcare 2020; : 1879 doi: 10.2147/JMDH.S285682
47
Junmo Yang, Donghyun Kim, Jingon Yoon, Jisu Kim, Dongwon Yun. Ring-pull Type Soft Wearable Robotic Glove for Hand Strength AssistanceIEEE Robotics and Automation Letters 2022; 7(4): 11378 doi: 10.1109/LRA.2022.3193634
48
Deyby Huamanchahua, Jorge Sierra-Huertas, Dana Terrazas-Rodas, Alexander Janampa-Espinoza, Jorge Gonzales, Sofia Huaman-Vizconde. Kinematic Analysis of an 4 DOF Upper-Limb Exoskeleton2021 IEEE 12th Annual Ubiquitous Computing, Electronics & Mobile Communication Conference (UEMCON) 2021; : 0914 doi: 10.1109/UEMCON53757.2021.9666604
49
Shruti Khatana, Sandeep Kumar, Rachit Khatana. Craniofacial exoskeleton: cyborg realm or new age reality?Disability and Rehabilitation: Assistive Technology 2022; 17(4): 368 doi: 10.1080/17483107.2020.1799441
50
Ashna S Khose. Pneumatic exoskeletons for orthopedic rehabilitation of the upper arm—An overviewJournal of Orthopaedics, Trauma and Rehabilitation 2022; 29(1): 221049172110569 doi: 10.1177/22104917211056947
51
Isa Halim, Muhammad Nadzirul Izzat Mahadzir, Zulkeflee Abdullah, Muhammad Zaimi Zainal Abidin, Mohd Nazrin Muhammad, Adi Saptari. A Review on Ergonomics Factors Determining Working in Harmony with ExoskeletonsMalaysian Journal of Medicine and Health Sciences 2023; 19(6): 311 doi: 10.47836/mjmhs.19.6.41
52
Shabia Shabir, Henna Hamadani. A Biologist�s Guide to Artificial Intelligence2024; : 255 doi: 10.1016/B978-0-443-24001-0.00015-4
53
Nicola Postol, Julia Barton, Luke Wakely, Andrew Bivard, Neil J. Spratt, Jodie Marquez. “Are we there yet?” expectations and experiences with lower limb robotic exoskeletons: a qualitative evaluation of the therapist perspectiveDisability and Rehabilitation 2024; 46(5): 1023 doi: 10.1080/09638288.2023.2183992
54
Nikola Fischer, Hosam Alagi, Michael Beigl, Björn Hein, Franziska Mathis-Ullrich. A Compliant Actuator-Sensor Unit using a Shape Memory Alloy and Capacitive Force Sensing for Active Exoskeleton Interfaces2023 IEEE-RAS 22nd International Conference on Humanoid Robots (Humanoids) 2023; : 1 doi: 10.1109/Humanoids57100.2023.10375226
55
Woun Yoong Gan, Raja Ariffin Raja Ghazilla, Hwa Jen Yap, Suman Selvarajoo. Industrial practitioner's perception on the application of exoskeleton system in automotive assembly industries: A Malaysian case studyHeliyon 2024; 10(4): e26183 doi: 10.1016/j.heliyon.2024.e26183
56
Shivansh Mishra, Jyotindra Narayan, Ankit Kumar Nikum, Rajat Singh. Revolutions in Product Design for HealthcareDesign Science and Innovation 2022; : 53 doi: 10.1007/978-981-16-9455-4_4
57
Mingxiao Liu, Samuel Wilder, Sean Sanford, Michael Glassen, Sophie Dewil, Soha Saleh, Raviraj Nataraj. Augmented feedback modes during functional grasp training with an intelligent glove and virtual reality for persons with traumatic brain injuryFrontiers in Robotics and AI 2023; 10 doi: 10.3389/frobt.2023.1230086
58
Justine Berson, Patrick Nenert, Arnaud Choplin. La place des exosquelettes d’assistance dans le quotidien des personnes blessées médullairesKinésithérapie, la Revue 2021; 21(235): 20 doi: 10.1016/j.kine.2020.10.016
59
João V. Paulin, Carlos F. O. Graeff. From nature to organic (bio)electronics: a review on melanin-inspired materialsJournal of Materials Chemistry C 2021; 9(41): 14514 doi: 10.1039/D1TC03029A
60
Richa Gupta, Kyra Grove, Alice Wei, Jennifer Lee, Adil Akkouch. Ankle and Foot Arthroplasty and Prosthesis: A Review on the Current and Upcoming State of Designs and ManufacturingMicromachines 2023; 14(11): 2081 doi: 10.3390/mi14112081
61
C. Cumplido-Trasmonte, F. Molina-Rueda, G. Puyuelo-Quintana, A. Plaza-Flores, M. Hernández-Melero, E. Barquín-Santos, MA. Destarac-Eguizabal, E. García-Armada. Satisfaction analysis of overground gait exoskeletons in people with neurological pathology. a systematic reviewJournal of NeuroEngineering and Rehabilitation 2023; 20(1) doi: 10.1186/s12984-023-01161-4
62
Ashraf S. Gorgey, Hope Jervis Rademeyer. Robotics in Physical Medicine and Rehabilitation2025; : 93 doi: 10.1016/B978-0-323-87865-4.00007-8
63
Myounghoon Shim, Jong In Han, Ho Seon Choi, Seong Min Ha, Jung-Hoon Kim, Yoon Su Baek. Terrain Feature Estimation Method for a Lower Limb Exoskeleton Using Kinematic Analysis and Center of PressureSensors 2019; 19(20): 4418 doi: 10.3390/s19204418
64
M. T. C. Perera, A. P. A. Madupriya, B. D. S. Kaushalya, R. K. P. S. Ranaweera, R. A. R. C. Gopura. Design of a Lower Extremity Exoskeleton Robot for Balance Control of Paraplegics2021 7th International Conference on Control, Automation and Robotics (ICCAR) 2021; : 162 doi: 10.1109/ICCAR52225.2021.9463507
65
Andrew D. Delgado, Miguel X. Escalon, Thomas N. Bryce, William Weinrauch, Stephanie J. Suarez, Allan J. Kozlowski. Safety and feasibility of exoskeleton-assisted walking during acute/sub-acute SCI in an inpatient rehabilitation facility: A single-group preliminary studyThe Journal of Spinal Cord Medicine 2020; 43(5): 657 doi: 10.1080/10790268.2019.1671076
66
Rosanne B. van Dijsseldonk, Johanna E. Vriezekolk, Noël L. W. Keijsers, Alexander C. H. Geurts, Ilse J. W. van Nes. Needs and wishes for the future lower limb exoskeleton: an interview study among people with spinal cord injury with community-based exoskeleton experienceDisability and Rehabilitation 2023; 45(7): 1139 doi: 10.1080/09638288.2022.2055158
67
Ganesh Roy, Dristanta Nirola, Subhasis Bhaumik. An Approach towards Development of Brain Controlled Lower Limb Exoskeleton for Mobility Regeneration2019 IEEE Region 10 Symposium (TENSYMP) 2019; : 385 doi: 10.1109/TENSYMP46218.2019.8971173
68
Chukwuma Nnaji, Ifeanyi Okpala, John Gambatese, Ziyu Jin. Controlling safety and health challenges intrinsic in exoskeleton use in constructionSafety Science 2023; 157: 105943 doi: 10.1016/j.ssci.2022.105943
69
Nicola Postol, Neil J. Spratt, Andrew Bivard, Jodie Marquez. Physiotherapy using a free-standing robotic exoskeleton for patients with spinal cord injury: a feasibility studyJournal of NeuroEngineering and Rehabilitation 2021; 18(1) doi: 10.1186/s12984-021-00967-4
70
Palaniappan Ganesh Nagappan, Hong Chen, De-Yun Wang. Neuroregeneration and plasticity: a review of the physiological mechanisms for achieving functional recovery postinjuryMilitary Medical Research 2020; 7(1) doi: 10.1186/s40779-020-00259-3
71
Giulia Stampacchia, Valeria Gazzotti, Matteo Olivieri, Elisa Andrenelli, Donatella Bonaiuti, Rocco Salvatore Calabro, Simona Maria Carmignano, Anna Cassio, Cira Fundaro, Isabella Companini, David Mazzoli, Simona Cerulli, Carmelo Chisari, Valentina Colombo, Stefania Dalise, Daniele Mazzoleni, Corrado Melegari, Andrea Merlo, Paolo Boldrini, Stefano Mazzoleni, Federico Posteraro, Miriam Mazzucchelli, Paolo Benanti, Enrico Castelli, Francesco Draicchio, Vincenzo Falabella, Silvia Galeri, Francesca Gimigliano, Mauro Grigioni, Stefano Mazzon, Franco Molteni, Giovanni Morone, Maurizio Petrarca, Alessandro Picelli, Michele Senatore, Giuseppe Turchetti, Emiliana Bizzarrini, Giovanni Morone, Robert Riener, Stefano Mazzoleni. Gait robot-assisted rehabilitation in persons with spinal cord injury: A scoping reviewNeuroRehabilitation 2022; 51(4): 609 doi: 10.3233/NRE-220061
72
Jesus de Miguel-Fernandez, Antonio Rodriguez-Fernandez, Pau Morey-Olive, Joan Lobo-Prat, Josep M. Font-Llagunes. Biomechanical Effects of a Passive Hip Structure in a Knee Exoskeleton for People with Spinal Cord Injury: A Comparative Case Study2020 8th IEEE RAS/EMBS International Conference for Biomedical Robotics and Biomechatronics (BioRob) 2020; : 797 doi: 10.1109/BioRob49111.2020.9224307
73
Katelyn D. Bosteder, Ashlyn Moore, Ariana Weeks, Jonathan D. Dawkins, Molly Trammell, Simon Driver, Rita Hamilton, Chad Swank. Intensity of overground robotic exoskeleton training in two persons with motor-complete tetraplegia: a case seriesSpinal Cord Series and Cases 2023; 9(1) doi: 10.1038/s41394-023-00584-4
74
Takashi Goto, Swagata Das, Katrin Wolf, Pedro Lopes, Yuichi Kurita, Kai Kunze. Accelerating Skill Acquisition of Two-Handed Drumming using Pneumatic Artificial MusclesProceedings of the Augmented Humans International Conference 2020; : 1 doi: 10.1145/3384657.3384780
75
Kevin Langlois, David Rodriguez-Cianca, Ben Serrien, Joris De Winter, Tom Verstraten, Carlos Rodriguez-Guerrero, Bram Vanderborght, Dirk Lefeber. Investigating the Effects of Strapping Pressure on Human-Robot Interface Dynamics Using a Soft Robotic CuffIEEE Transactions on Medical Robotics and Bionics 2021; 3(1): 146 doi: 10.1109/TMRB.2020.3042255
76
John Howard, Vladimir V. Murashov, Brian D. Lowe, Ming‐Lun Lu. Industrial exoskeletons: Need for intervention effectiveness researchAmerican Journal of Industrial Medicine 2020; 63(3): 201 doi: 10.1002/ajim.23080
77
Manan Shah, Catherine Peterson, Emre Yilmaz, Dia Radi Halalmeh, Marc Moisi. Current advancements in the management of spinal cord injury: A comprehensive review of literatureSurgical Neurology International 2020; 11: 2 doi: 10.25259/SNI_568_2019
78
Manuel Andrés Vélez-Guerrero, Mauro Callejas-Cuervo, Stefano Mazzoleni. Artificial Intelligence-Based Wearable Robotic Exoskeletons for Upper Limb Rehabilitation: A ReviewSensors 2021; 21(6): 2146 doi: 10.3390/s21062146
79
Ildar Kagirov, Alexander Kapustin, Irina Kipyatkova, Konstantin Klyuzhev, Alexander Kudryavcev, Igor Kudryavcev, Yury Loskutov, Dmitry Ryumin, Alexey Karpov. Medical exoskeleton “Remotion” with an intelligent control system: Modeling, implementation, and testingSimulation Modelling Practice and Theory 2021; 107: 102200 doi: 10.1016/j.simpat.2020.102200
80
Fangyuan Ju, Yujie Wang, Bin Xie, Yunxuan Mi, Mengyun Zhao, Junwei Cao. The Use of Sports Rehabilitation Robotics to Assist in the Recovery of Physical Abilities in Elderly Patients with Degenerative Diseases: A Literature ReviewHealthcare 2023; 11(3): 326 doi: 10.3390/healthcare11030326
81
Jesmond Attard. Ethical Implications of Reshaping Healthcare With Emerging TechnologiesAdvances in Medical Technologies and Clinical Practice 2022; : 131 doi: 10.4018/978-1-7998-7888-9.ch007
82
Rachel L. Hybart, Daniel P. Ferris. Neuromechanical Adaptation to Walking With Electromechanical Ankle Exoskeletons Under Proportional Myoelectric ControlIEEE Open Journal of Engineering in Medicine and Biology 2023; 4: 119 doi: 10.1109/OJEMB.2023.3288469
83
Allen W. Heinemann, Dominique Kinnett-Hopkins, Chaithanya K. Mummidisetty, Rachel A. Bond, Linda Ehrlich-Jones, Catherine Furbish, Edelle Field-Fote, Arun Jayaraman. Appraisals of robotic locomotor exoskeletons for gait: focus group insights from potential users with spinal cord injuriesDisability and Rehabilitation: Assistive Technology 2020; 15(7): 762 doi: 10.1080/17483107.2020.1745910
84
Eduard Fosch-Villaronga, Anto Čartolovni, Robin L. Pierce. Promoting inclusiveness in exoskeleton robotics: Addressing challenges for pediatric accessPaladyn, Journal of Behavioral Robotics 2020; 11(1): 327 doi: 10.1515/pjbr-2020-0021
85
Antonio Rodríguez-Fernández, Joan Lobo-Prat, Josep M. Font-Llagunes. Systematic review on wearable lower-limb exoskeletons for gait training in neuromuscular impairmentsJournal of NeuroEngineering and Rehabilitation 2021; 18(1) doi: 10.1186/s12984-021-00815-5
86
Xiao-Na Xiang, Li-Ming Zhang, Hui-Yan Zong, Yi Ou, Xi Yu, Yan Liu, Hong-Ying Jiang, Hong Cheng, Hong-Chen He, Cheng-Qi He. Exoskeleton-Assisted Walking for Pulmonary and Exercise Performances of SCI IndividualsIEEE Transactions on Neural Systems and Rehabilitation Engineering 2023; 31: 39 doi: 10.1109/TNSRE.2022.3215652
87
Mingxiao Liu, Samuel Wilder, Sean Sanford, Sophie Dewil, Noam Harel, Raviraj Nataraj. Multimodal Augmented Feedback for Functional Grasp Training Using a Smart Glove and Virtual Reality for Persons with Spinal Cord Injury2023 9th International Conference on Virtual Reality (ICVR) 2023; : 435 doi: 10.1109/ICVR57957.2023.10169674
88
Lyndon Tang, Mohammad Shushtari, Arash Arami. IMU-Based Real-Time Estimation of Gait Phase Using Multi-Resolution Neural NetworksSensors 2024; 24(8): 2390 doi: 10.3390/s24082390
89
Christopher van Vlerken, Felipe Ballen-Moreno, Ellen Roels, Pasquale Ferrentino, Kevin Langlois, Bram Vanderborght, Tom Verstraten. Development of an Active Physical Interface for Physical Human-Robot Interaction: Investigation of Soft Pneumatic Actuator Straps for Automatic Enclosure SystemActuators 2023; 12(6): 241 doi: 10.3390/act12060241
90
Shawanee' Patrick, Namita Anil Kumar, Pilwon Hur. Evaluating Knee Mechanisms for Assistive DevicesFrontiers in Neurorobotics 2022; 16 doi: 10.3389/fnbot.2022.790070
91
Beverley Catharine Craven, Christopher M. Cirnigliaro, Laura D. Carbone, Philemon Tsang, Leslie R. Morse. The Pathophysiology, Identification and Management of Fracture Risk, Sublesional Osteoporosis and Fracture among Adults with Spinal Cord InjuryJournal of Personalized Medicine 2023; 13(6): 966 doi: 10.3390/jpm13060966
92
Konstantinos Mitsopoulos, Vasiliki Fiska, Konstantinos Tagaras, Athanasios Papias, Panagiotis Antoniou, Konstantinos Nizamis, Konstantinos Kasimis, Paschalina-Danai Sarra, Diamanto Mylopoulou, Theodore Savvidis, Apostolos Praftsiotis, Athanasios Arvanitidis, George Lyssas, Konstantinos Chasapis, Alexandros Moraitopoulos, Alexander Astaras, Panagiotis D. Bamidis, Alkinoos Athanasiou. NeuroSuitUp: System Architecture and Validation of a Motor Rehabilitation Wearable Robotics and Serious Game PlatformSensors 2023; 23(6): 3281 doi: 10.3390/s23063281
93
Anna L. Ármannsdóttir, Philipp Beckerle, Juan C. Moreno, Edwin H. F. van Asseldonk, Maria-Teresa Manrique-Sancho, Antonio J. del-Ama, Jan F. Veneman, Kristín Briem. Assessing the Involvement of Users During Development of Lower Limb Wearable Robotic Exoskeletons: A Survey StudyHuman Factors: The Journal of the Human Factors and Ergonomics Society 2020; 62(3): 351 doi: 10.1177/0018720819883500
94
Rand Hidayah, Tatiana Luna, Sunil Agrawal. Soft Robotics in Rehabilitation2021; : 135 doi: 10.1016/B978-0-12-818538-4.00005-8
95
Elena Yuryevna Shapkova, Dmitry Vladimirovich Emelyannikov, Yulia Evgenyevna Larionova, Nikita Aleksanrovich Kupreev, Ekaterina Vjacheslavovna Grigoreva. Dynamics of independence and locomotor capabilities caused by powered exoskeleton-induced walk training in patients with severe chronic spinal cord injuryHirurgiâ pozvonočnika (Spine Surgery) 2020; 17(4): 54 doi: 10.14531/ss2020.4.54-67
96
James Faulkner, Louis Martinelli, Kirsty Cook, Lee Stoner, Helen Ryan-Stewart, Eloise Paine, Helen Hobbs, Danielle Lambrick. Effects of robotic-assisted gait training on the central vascular health of individuals with spinal cord injury: A pilot studyThe Journal of Spinal Cord Medicine 2021; 44(2): 299 doi: 10.1080/10790268.2019.1656849
97
Roger Bennett, Rohini Vijaygopal. Exploring mobility and transportation technology futures for people with ambulatory disabilities: A science fiction prototypeTechnovation 2024; 133: 103001 doi: 10.1016/j.technovation.2024.103001
98
Carolina Correia, Kristin Nuckols, Diana Wagner, Yu Meng Zhou, Megan Clarke, Dorothy Orzel, Ryan Solinsky, Sabrina Paganoni, Conor J. Walsh. Improving Grasp Function After Spinal Cord Injury With a Soft Robotic GloveIEEE Transactions on Neural Systems and Rehabilitation Engineering 2020; 28(6): 1407 doi: 10.1109/TNSRE.2020.2988260
99
Flaviu Ionuț Birouaș, Radu Cătălin Țarcă, Simona Dzitac, Ioan Dzitac. Preliminary Results in Testing of a Novel Asymmetric Underactuated Robotic Hand Exoskeleton for Motor Impairment RehabilitationSymmetry 2020; 12(9): 1470 doi: 10.3390/sym12091470
100
Filip-Alexandru Harmon, Patricia-Isabela Brăileanu. International Conference on Reliable Systems Engineering (ICoRSE) - 2021Lecture Notes in Networks and Systems 2022; 305: 107 doi: 10.1007/978-3-030-83368-8_11
101
Farhad Farhadiyadkuri, Ahmad Masih Popal, Shaabanullah Sharif Paiwand, Xuping Zhang. Interaction dynamics modeling and adaptive impedance control of robotic exoskeleton for adolescent idiopathic scoliosisComputers in Biology and Medicine 2022; 145: 105495 doi: 10.1016/j.compbiomed.2022.105495
102
W. Ben Mortenson, Alex Pysklywec, Leena Chau, Michael Prescott, Andrea Townson. Therapists’ experience of training and implementing an exoskeleton in a rehabilitation centreDisability and Rehabilitation 2022; 44(7): 1060 doi: 10.1080/09638288.2020.1789765
103
Biao Chen, Yang Zhou, Chaoyang Chen, Zain Sayeed, Jie Hu, Jin Qi, Todd Frush, Henry Goitz, John Hovorka, Mark Cheng, Carlos Palacio. Volitional control of upper-limb exoskeleton empowered by EMG sensors and machine learning computingArray 2023; 17: 100277 doi: 10.1016/j.array.2023.100277
104
Abiola Akanmu, Adedeji Afolabi, Akinwale Okunola. CONVR 2023 - Proceedings of the 23rd International Conference on Construction Applications of Virtual Reality Proceedings e report 2023; 137: 691 doi: 10.36253/979-12-215-0289-3.69
105
Paul Palacios, Jose Cornejo, Milton V. Rivera, Jose Luis Napan, Walter Castillo, Victor Ticllacuri, Andres D. Reina, Adolfo Chaves-Jimenez, Gustavo Jamanca-Lino, Juan Carlos Chavez. Biomechatronic Embedded System Design of Sensorized Glove with Soft Robotic Hand Exoskeleton Used for Rover Rescue Missions on Mars2021 IEEE International IOT, Electronics and Mechatronics Conference (IEMTRONICS) 2021; : 1 doi: 10.1109/IEMTRONICS52119.2021.9422634
106
Jason Borenstein, Harshal P. Mahajan, Alan R. Wagner, Ayanna Howard. Trust and Pediatric Exoskeletons: A Comparative Study of Clinician and Parental PerspectivesIEEE Transactions on Technology and Society 2020; 1(2): 83 doi: 10.1109/TTS.2020.2974990
107
F. Tamburella, N. L. Tagliamonte, I. Pisotta, M. Masciullo, M. Arquilla, E. H. F. van Asseldonk, H. van der Kooij, A. R. Wu, F. Dzeladini, A. J. Ijspeert, M. Molinari. Neuromuscular Controller Embedded in a Powered Ankle Exoskeleton: Effects on Gait, Clinical Features and Subjective Perspective of Incomplete Spinal Cord Injured SubjectsIEEE Transactions on Neural Systems and Rehabilitation Engineering 2020; 28(5): 1157 doi: 10.1109/TNSRE.2020.2984790
108
Alyssa Merante, Yu Zhang, Satyam Kumar, Chang S. Nam. NeuroergonomicsCognitive Science and Technology 2020; : 315 doi: 10.1007/978-3-030-34784-0_16
109
Elena Bardi, Marta Gandolla, Francesco Braghin, Ferruccio Resta, Alessandra L. G. Pedrocchi, Emilia Ambrosini. Upper limb soft robotic wearable devices: a systematic reviewJournal of NeuroEngineering and Rehabilitation 2022; 19(1) doi: 10.1186/s12984-022-01065-9
110
Ali Golabchi, Negar Riahi, Mackenzie Fix, Linda Miller, Hossein Rouhani, Mahdi Tavakoli. A framework for evaluation and adoption of industrial exoskeletonsApplied Ergonomics 2023; 113: 104103 doi: 10.1016/j.apergo.2023.104103
111
Rosanne B. van Dijsseldonk, Ilse J. W. van Nes, Alexander C. H. Geurts, Noël L. W. Keijsers. Exoskeleton home and community use in people with complete spinal cord injuryScientific Reports 2020; 10(1) doi: 10.1038/s41598-020-72397-6
112
V I Novikov, A G Muravyev, S A Muravyev, D S Stepura, N S Shmakova. Development of a biomechanical robotic orthopedic apparatus with a corset based on composite materialsIOP Conference Series: Materials Science and Engineering 2020; 939(1): 012056 doi: 10.1088/1757-899X/939/1/012056
113
Tanishka Goyal, Shahid Hussain, Elisa Martinez-Marroquin, Nicholas A. T. Brown, Prashant K. Jamwal. Stiffness-Observer-Based Adaptive Control of an Intrinsically Compliant Parallel Wrist Rehabilitation RobotIEEE Transactions on Human-Machine Systems 2023; 53(1): 65 doi: 10.1109/THMS.2022.3211164
114
António Diogo André, Pedro Martins. Exo Supportive Devices: Summary of Technical AspectsBioengineering 2023; 10(11): 1328 doi: 10.3390/bioengineering10111328
115
Liang Yang, Chenxi Qu, Bochen Jia, Shengguan Qu. The design of an affordable fault-tolerant control system of the brushless DC motor for an active waist exoskeletonNeural Computing and Applications 2023; 35(3): 2027 doi: 10.1007/s00521-022-07362-7
116
Christopher C. H. Yip, Chor-Yin Lam, Kenneth M. C. Cheung, Yat Wa Wong, Paul A. Koljonen. Knowledge Gaps in Biophysical Changes After Powered Robotic Exoskeleton Walking by Individuals With Spinal Cord Injury—A Scoping ReviewFrontiers in Neurology 2022; 13 doi: 10.3389/fneur.2022.792295
117
Ashraf S. Gorgey, Jacob A. Goldsmith, Melodie Anderson, Teodoro Castillo. Telerehabilitation2022; : 319 doi: 10.1016/B978-0-323-82486-6.00022-8
118
L. Leocani, K. Diserens, M. Moccia, C. Caltagirone. Disability through COVID‐19 pandemic: neurorehabilitation cannot waitEuropean Journal of Neurology 2020; 27(9) doi: 10.1111/ene.14320
119
F.A. Panizzolo, S. Cimino, E. Pettenello, A. Belfiore, N. Petrone, G. Marcolin. Effect of a passive hip exoskeleton on walking distance in neurological patientsAssistive Technology 2022; 34(5): 527 doi: 10.1080/10400435.2021.1880494
120
Daniel Leibman, HeeSun Choi. Individual Differences in Body Mass, Biological Sex, and Physical Fitness Affecting Human-Exoskeleton InteractionsProceedings of the Human Factors and Ergonomics Society Annual Meeting 2023; 67(1): 1794 doi: 10.1177/21695067231192559
121
Liviu Cristian Chiș, Monica Copotoiu, Liviu Moldovan. Different Types of Exoskeletons can Improve the Life of Spinal Cord Injury’s Patients – a Meta-AnalysisProcedia Manufacturing 2020; 46: 844 doi: 10.1016/j.promfg.2020.04.014
122
Abiola Akanmu, Adedeji Afolabi, Akinwale Okunola. CONVR 2023 - Proceedings of the 23rd International Conference on Construction Applications of Virtual Reality Proceedings e report 2023; 137: 691 doi: 10.36253/979-12-215-0289-3.69