Effects of an active ankle exoskeleton on the walking biomechanics of healthy men

被引:0
|
作者
Nagaraja, Sridevi [1 ,2 ]
Rubio, Jose E. [1 ,2 ]
Tong, Junfei [1 ,2 ]
Sundaramurthy, Aravind [1 ,2 ]
Pant, Anup [1 ,2 ]
Owen, Meredith K. [3 ]
Samaan, Michael A. [4 ]
Noehren, Brian [3 ]
Reifman, Jaques [1 ]
机构
[1] Med Res & Dev Command, Dept Def Biotechnol, High Performance Comp Software Applicat Inst, Telemed & Adv Technol Res Ctr,Def Hlth Agcy Res &, Ft Detrick, MD 21702 USA
[2] Henry M Jackson Fdn Advancement Mil Med Inc, Bethesda, MD USA
[3] Univ Kentucky, Dept Phys Therapy, Lexington, KY USA
[4] Univ Kentucky, Dept Kinesiol & Hlth Promot, Lexington, KY USA
关键词
exoskeleton; individualized models; walking; load carriage; musculoskeletal biomechanics; LOAD CARRIAGE INJURIES; METABOLIC COST; INCLINE WALKING; MUSCLE; FATIGUE; HIP; ASSISTANCE; MECHANICS; PAIN; GAIT;
D O I
10.3389/fbioe.2025.1533001
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
Active lower-body exoskeleton devices can decrease the energy requirement of the human body by providing mechanical assistance to lower-body muscles. However, they also alter gait kinematics and kinetics, and it is not well understood whether such alterations are detrimental or beneficial to the human body. In this pilot study, we investigated the impact of walking with an ankle exoskeleton device on the biomechanics of men while carrying a heavy load. We collected computed tomography images and motion-capture data for five young, healthy men who walked 5 km (similar to 60 min) with a 22.7-kg load, with and without an active ankle exoskeleton (the ExoBoot EB60). We developed personalized musculoskeletal models and calculated the joint kinematics and kinetics for each participant under each walking condition. Without the ExoBoot, at 5 km compared to 0 km, on average, the peak trunk flexion angle increased by similar to 35% and the stride length increased by similar to 3.5%. In contrast, with the ExoBoot, the magnitude of the corresponding increases was smaller (similar to 16% and similar to 2%, respectively). After the 5-km walk, compared to walking without the ExoBoot, its use considerably altered hip-related biomechanical parameters, e.g., it increased hip abduction angle by similar to 17%, increased hip flexion moment by similar to 3.5%, and decreased hip adduction moment by similar to 19%. Finally, irrespective of distance, ExoBoot use significantly increased the stance duration and peak ankle plantarflexion angle (p < 0.001). Overall, the use of the ExoBoot induced beneficial alterations in stride length and trunk-, ankle-, and hip-related parameters for men walking with load carriage. The quantitative analysis provided by this pilot study should help guide future investigations and inform the development of standards for safe and effective use of emerging exoskeleton technologies.
引用
收藏
页数:16
相关论文
共 50 条
  • [41] The Effects of Obesity on the Biomechanics of Gradient Walking
    Board, Wayne J.
    Reynolds, Michelle M.
    Ehlen, Kellie
    Reiser, Raoul, II
    Browning, Raymond C.
    MEDICINE AND SCIENCE IN SPORTS AND EXERCISE, 2011, 43 (05): : 29 - 30
  • [42] Actuation Timing Perception of a Powered Ankle Exoskeleton and Its Associated Ankle Angle Changes During Walking
    Peng, Xiangyu
    Acosta-Sojo, Yadrianna
    Wu, Man, I
    Stirling, Leia
    IEEE TRANSACTIONS ON NEURAL SYSTEMS AND REHABILITATION ENGINEERING, 2022, 30 : 869 - 877
  • [43] WALKING PATTERNS IN HEALTHY OLD MEN
    MURRAY, MP
    KORY, RC
    CLARKSON, BH
    JOURNALS OF GERONTOLOGY, 1969, 24 (02): : 169 - &
  • [44] Effects of ankle exoskeleton assistance and plantar pressure biofeedback on incline walking mechanics and muscle activity in cerebral palsy
    Fang, Ying
    Lerner, Zachary F.
    JOURNAL OF BIOMECHANICS, 2024, 163
  • [45] Improving Walking Economy With an Ankle Exoskeleton Prior to Human-in-the-Loop Optimization
    Wang, Wei
    Chen, Jianyu
    Ding, Jianquan
    Zhang, Juanjuan
    Liu, Jingtai
    FRONTIERS IN NEUROROBOTICS, 2022, 15
  • [46] Optimized hip-knee-ankle exoskeleton assistance at a range of walking speeds
    Bryan, Gwendolyn M.
    Franks, Patrick W.
    Song, Seungmoon
    Voloshina, Alexandra S.
    Reyes, Ricardo
    O'Donovan, Meghan P.
    Gregorczyk, Karen N.
    Collins, Steven H.
    JOURNAL OF NEUROENGINEERING AND REHABILITATION, 2021, 18 (01)
  • [47] Perception of Powered Ankle Exoskeleton Actuation Timing During Walking: A Pilot Study
    Peng, Xiangyu
    Acosta-Sojo, Yadrianna
    Wu, Man, I
    Stirling, Leia
    2021 43RD ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE & BIOLOGY SOCIETY (EMBC), 2021, : 4654 - 4657
  • [48] Experimental comparison of torque control methods on an ankle exoskeleton during human walking
    Zhang, Juanjuan
    Cheah, Chien Chern
    Collins, Steven H.
    2015 IEEE INTERNATIONAL CONFERENCE ON ROBOTICS AND AUTOMATION (ICRA), 2015, : 5584 - 5589
  • [49] Influence of Motion Restrictions in an Ankle Exoskeleton on Gait Kinematics and Stability in Straight Walking
    Dezman, Miha
    Marquardt, Charlotte
    Ugur, Adnan
    Moeller, Tobias
    Asfour, Tamim
    IEEE TRANSACTIONS ON MEDICAL ROBOTICS AND BIONICS, 2025, 7 (01): : 114 - 122
  • [50] Enhancing performance during inclined loaded walking with a powered ankle–foot exoskeleton
    Samuel Galle
    Philippe Malcolm
    Wim Derave
    Dirk De Clercq
    European Journal of Applied Physiology, 2014, 114 : 2341 - 2351