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Comment
. 2018 Nov 28:2018:7634965.
doi: 10.1155/2018/7634965. eCollection 2018.

Comment on "Assessing Effectiveness and Costs in Robot-Mediated Lower Limbs Rehabilitation: A Meta-Analysis and State of the Art"

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Comment

Comment on "Assessing Effectiveness and Costs in Robot-Mediated Lower Limbs Rehabilitation: A Meta-Analysis and State of the Art"

Alberto Esquenazi. J Healthc Eng. .
No abstract available

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References

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    1. Morrison S. A. Financial feasibility of robotics in neurorehabilitation. Topics in Spinal Cord Injury Rehabilitation. 2011;17(1):77–81. doi: 10.1310/sci1701-77. - DOI - PMC - PubMed
    1. Esquenazi A., Lee S., Wikoff A., Packel A., Toczylowski T., Feeley J. A comparison of locomotor therapy interventions: partial body weight-supported treadmill, lokomat, and G-EO training in people with traumatic brain injury. PM&R. 2017;9(9):839–846. doi: 10.1016/j.pmrj.2016.12.010. - DOI - PubMed
    1. Spiess M. R., Colombo G. Intensity: what rehabilitation technology can add to the subject. Neurol Rehabil. 2017;23(1):53–56.
    1. Esquenazi A., Maier I. C., Schuler T. A., et al. Clinical Application of Robotics and Technology in the Restoration of Walking. Neurorehabilitation Technology. New York, NY, USA: Springer International Publishing; 2016.

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