Literature DB >> 22275603

Effect of a robotic rehabilitation device on upper limb function in a sub-acute cervical spinal cord injury population.

José Zariffa1, Naaz Kapadia, John L K Kramer, Philippa Taylor, Milad Alizadeh-Meghrazi, Vera Zivanovic, Rhonda Willms, Andrea Townson, Armin Curt, Milos R Popovic, John D Steeves.   

Abstract

Robotic rehabilitation devices have been suggested as a tool to increase the amount of rehabilitation delivered after a neurological injury. Clinical robotic rehabilitation studies of the upper extremity have generally focused on stroke survivors. We present the results of a multi-center pilot study where an upper-limb robotic rehabilitation device (Armeo Spring®, Hocoma AG) was incorporated into the rehabilitation program of 12 subjects with sub-acute cervical spinal cord injury (motor level C4-C6, AIS A-D). Outcomes were measured using two tests of upper extremity function: ARAT and GRASSP. The change in scores for the arm receiving the Armeo training were not statistically significant when compared to the arm not receiving the Armeo training at discharge from therapy and over follow up assessments (8.7 +/- 2.9 compared to 7.4 +/- 2.5 for ARAT at discharge, p = 0.98, and 13.0 +/- 3.2 compared to 13.3 +/- 3.3 for GRASSP at discharge, p = 0.69). Nevertheless, subjects with some minimal (partial) hand function at baseline had a significantly larger increase in GRASSP scores than subjects with no minimal hand function preserved at baseline (19.3 +/- 2.4 compared to 6.6 +/- 4.7, p = 0.02). This suggests that the initial functional capabilities of patients can influence the benefits measured after robotic rehabilitation training and heterogeneous subject populations should be avoided in early phase studies.
© 2011 IEEE

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Year:  2011        PMID: 22275603     DOI: 10.1109/ICORR.2011.5975400

Source DB:  PubMed          Journal:  IEEE Int Conf Rehabil Robot        ISSN: 1945-7898


  7 in total

1.  White matter changes in corticospinal tract associated with improvement in arm and hand functions in incomplete cervical spinal cord injury: pilot case series.

Authors:  Nuray Yozbatiran; Zafer Keser; Khader Hasan; Argyrios Stampas; Radha Korupolu; Sam Kim; Marcia K O'Malley; Felipe Fregni; Gerard E Francisco
Journal:  Spinal Cord Ser Cases       Date:  2017-06-15

2.  Transcutaneous Electrical Spinal Stimulation Promotes Long-Term Recovery of Upper Extremity Function in Chronic Tetraplegia.

Authors:  Fatma Inanici; Soshi Samejima; Parag Gad; V Reggie Edgerton; Christoph P Hofstetter; Chet T Moritz
Journal:  IEEE Trans Neural Syst Rehabil Eng       Date:  2018-06       Impact factor: 3.802

3.  Protection and Repair After Spinal Cord Injury: Accomplishments and Future Directions.

Authors:  W Dalton Dietrich
Journal:  Top Spinal Cord Inj Rehabil       Date:  2015-04-12

4.  Reliability of movement workspace measurements in a passive arm orthosis used in spinal cord injury rehabilitation.

Authors:  Claudia Rudhe; Urs Albisser; Michelle L Starkey; Armin Curt; Marc Bolliger
Journal:  J Neuroeng Rehabil       Date:  2012-06-09       Impact factor: 4.262

5.  Is two better than one? Muscle vibration plus robotic rehabilitation to improve upper limb spasticity and function: A pilot randomized controlled trial.

Authors:  Rocco Salvatore Calabrò; Antonino Naro; Margherita Russo; Demetrio Milardi; Antonino Leo; Serena Filoni; Antonia Trinchera; Placido Bramanti
Journal:  PLoS One       Date:  2017-10-03       Impact factor: 3.240

6.  Effects of Combined Upper Limb Robotic Therapy in Patients With Tetraplegic Spinal Cord Injury.

Authors:  Joo Hwan Jung; Hye Jin Lee; Duk Youn Cho; Jung-Eun Lim; Bum Suk Lee; Seung Hyun Kwon; Hae Young Kim; Su Jeong Lee
Journal:  Ann Rehabil Med       Date:  2019-08-31

Review 7.  Advanced rehabilitation technology in orthopaedics-a narrative review.

Authors:  Yuichi Kuroda; Matthew Young; Haitham Shoman; Anuj Punnoose; Alan R Norrish; Vikas Khanduja
Journal:  Int Orthop       Date:  2020-10-13       Impact factor: 3.075

  7 in total

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