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ReWalk Robotics Inc hal exoskeleton
Hal Exoskeleton, supplied by ReWalk Robotics Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/hal+exoskeleton/hal+exoskeleton/pm40472827-79-14-66
Average 90 stars, based on 1 article reviews
hal exoskeleton - by Bioz Stars, 2026-09
90/100 stars

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Article Title: Actively Controlled Exoskeletons Show Improved Function and Neuroplasticity Compared to Passive Control: A Systematic Review.
Article Snippet: Brinkemper et al showed a reduction in Wexner Score from 8.89 to 6.51 with HAL (P = 0.008).34 Van nes et al showed significant improvements in bladder management using the Neurogenic Bladder Symptoms Score from 3 to 4 (P = 0.01).19 Chun et al showed significant improvements in 7 patients (defined by >10% in decrease) using the SCI-QoL bowel management difficulties short form instrument with the ReWalk.

Article Title: Terapia robótica para la rehabilitación de la marcha en patología neurológica
Article Snippet: Objective: To describe and classify the main characteristics of the various robotic systems used for functional rehabilitation of the lower limb.. ∗ Autor para correspondencia.. Correo electrónico: roberto.cano@urjc.es (R. Cano-de la Cuerda). http://dx.doi.org/10.1016/j.rh.2014.11.003 0048-7120/© 2014 Elsevier España, S.L.U. y SERMEF.

Article Title: The effects of gait training using powered lower limb exoskeleton robot on individuals with complete spinal cord injury
Article Snippet: Commercialized exoskeletons have been developed for paraplegia such as the HAL [ ], ReWalk [ ], and EKSO [ ].

Article Title: Actively Controlled Exoskeletons Show Improved Function and Neuroplasticity Compared to Passive Control: A Systematic Review.
Article Snippet: This was in a group of patients with a median and range of 5.4 years (0.8 to 27 years) since the time of injury, again a more chronic group of SCI patients.19 Significant improvements were also observed in Chun et al’s study in a cohort of chronic SCI patients.35 Kim et al’s study using the H-MEX and Kerdraon et al’s study using the Atlante both did not show significant improvements in a cohort of chronic SCI patients.33,41 In addition, 2 patients in Williams et al’s study with Ekso also showed no significant improvements in a cohort of chronic SCI patients.37 This suggests that HAL and ReWalk may be better than H-MEX and Atlante at improving continence post SCI.

Article Title: Actively Controlled Exoskeletons Show Improved Function and Neuroplasticity Compared to Passive Control: A Systematic Review.
Article Snippet: Eight studies including 125 patients looked at QoL (HAL n = 2, ReWalk n = 2, Indego n = 1, Ekso n = 1, H-MEX n = 1, Rex Bionics n = 1).9,16,19,26,29,36,39 One HAL, Rewalk and Ekso study showed significant improvements in QoL.



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The HAL® Lumbar Type exoskeleton (CYBERDYNE Inc., Japan), shown here in its waterproof version. The device supports the lower back during physically demanding tasks and features an active control system that utilizes bioelectrical signals to assist movement.

Journal: Frontiers in Digital Health

Article Title: Evaluation of the HAL® lumbar type exoskeleton in long-term care: protocol for a mixed-methods feasibility study

doi: 10.3389/fdgth.2025.1591866

Figure Lengend Snippet: The HAL® Lumbar Type exoskeleton (CYBERDYNE Inc., Japan), shown here in its waterproof version. The device supports the lower back during physically demanding tasks and features an active control system that utilizes bioelectrical signals to assist movement.

Article Snippet: The HAL® Lumbar Type Exoskeleton (HAL-LB03), developed by Cyberdyne Inc., is an active, battery-powered exoskeleton designed to assist the lower back during physically demanding tasks ( ) ( ).

Techniques: Control

Practical application of the HAL® Lumbar Type Exoskeleton (HAL-LB03) during a patient transfer scenario. The device supports the caregiver's lower back while performing physically demanding tasks in a care setting. Reprinted with permission from HAL® Lumbar Type Exoskeleton product materials by Cyberdyne Inc., all rights reserved, https://www.cyberdyne.jp .

Journal: Frontiers in Digital Health

Article Title: Evaluation of the HAL® lumbar type exoskeleton in long-term care: protocol for a mixed-methods feasibility study

doi: 10.3389/fdgth.2025.1591866

Figure Lengend Snippet: Practical application of the HAL® Lumbar Type Exoskeleton (HAL-LB03) during a patient transfer scenario. The device supports the caregiver's lower back while performing physically demanding tasks in a care setting. Reprinted with permission from HAL® Lumbar Type Exoskeleton product materials by Cyberdyne Inc., all rights reserved, https://www.cyberdyne.jp .

Article Snippet: The HAL® Lumbar Type Exoskeleton (HAL-LB03), developed by Cyberdyne Inc., is an active, battery-powered exoskeleton designed to assist the lower back during physically demanding tasks ( ) ( ).

Techniques:

Rear view of a caregiver wearing the HAL® Lumbar Type Exoskeleton. The device is designed to reduce physical strain on the lower back during physically demanding care tasks, such as patient handling. Reprinted with permission from HAL® Lumbar Type Exoskeleton product materials by Cyberdyne Inc., all rights reserved, https://www.cyberdyne.jp .

Journal: Frontiers in Digital Health

Article Title: Evaluation of the HAL® lumbar type exoskeleton in long-term care: protocol for a mixed-methods feasibility study

doi: 10.3389/fdgth.2025.1591866

Figure Lengend Snippet: Rear view of a caregiver wearing the HAL® Lumbar Type Exoskeleton. The device is designed to reduce physical strain on the lower back during physically demanding care tasks, such as patient handling. Reprinted with permission from HAL® Lumbar Type Exoskeleton product materials by Cyberdyne Inc., all rights reserved, https://www.cyberdyne.jp .

Article Snippet: The HAL® Lumbar Type Exoskeleton (HAL-LB03), developed by Cyberdyne Inc., is an active, battery-powered exoskeleton designed to assist the lower back during physically demanding tasks ( ) ( ).

Techniques:

Methodological timeline of the exoskeleton study, illustrating the three study phases (Baseline, Intervention, Post-Intervention) and corresponding measurement time points (T1–T3). The figure outlines the temporal structure, content, and assessment tools used to evaluate the HAL® lumbar exoskeleton in daily caregiving practice. Reprinted with permission from HAL® Lumbar Type Exoskeleton product materials by Cyberdyne Inc., all rights reserved, https://www.cyberdyne.jp .

Journal: Frontiers in Digital Health

Article Title: Evaluation of the HAL® lumbar type exoskeleton in long-term care: protocol for a mixed-methods feasibility study

doi: 10.3389/fdgth.2025.1591866

Figure Lengend Snippet: Methodological timeline of the exoskeleton study, illustrating the three study phases (Baseline, Intervention, Post-Intervention) and corresponding measurement time points (T1–T3). The figure outlines the temporal structure, content, and assessment tools used to evaluate the HAL® lumbar exoskeleton in daily caregiving practice. Reprinted with permission from HAL® Lumbar Type Exoskeleton product materials by Cyberdyne Inc., all rights reserved, https://www.cyberdyne.jp .

Article Snippet: The HAL® Lumbar Type Exoskeleton (HAL-LB03), developed by Cyberdyne Inc., is an active, battery-powered exoskeleton designed to assist the lower back during physically demanding tasks ( ) ( ).

Techniques:

Schematic diagram of the ‘MIT-Manus’ exoskeleton ( a ), ‘HAL’ exoskeleton ( b ), and ‘XOS’ exoskeleton ( c ).

Journal: Sensors (Basel, Switzerland)

Article Title: Review of sEMG for Exoskeleton Robots: Motion Intention Recognition Techniques and Applications

doi: 10.3390/s25082448

Figure Lengend Snippet: Schematic diagram of the ‘MIT-Manus’ exoskeleton ( a ), ‘HAL’ exoskeleton ( b ), and ‘XOS’ exoskeleton ( c ).

Article Snippet: The HAL (hybrid assistive limb) exoskeleton developed by Cyberdyne of Japan mainly adopts the design method of a motor–reducer–exoskeleton mechanism.

Techniques: