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. 2016 Mar;28(3):769-73.
doi: 10.1589/jpts.28.769. Epub 2016 Mar 31.

Changes in skeletal muscle perfusion and spasticity in patients with poststroke hemiparesis treated by robotic assistance (Gloreha) of the hand

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Changes in skeletal muscle perfusion and spasticity in patients with poststroke hemiparesis treated by robotic assistance (Gloreha) of the hand

Luciano Bissolotti et al. J Phys Ther Sci. 2016 Mar.

Abstract

[Purpose] The purpose of this case series was to determine the effects of robot-assisted hand rehabilitation with a Gloreha device on skeletal muscle perfusion, spasticity, and motor function in subjects with poststroke hemiparesis. [Subjects and Methods] Seven patients, 2 women and 5 men (mean ± SD age: 60.5 ±6.3 years), with hemiparesis (>6 months poststroke), received passive mobilization of the hand with a Gloreha (Idrogenet, Italy), device (30 min per day; 3 sessions a week for 3 weeks). The outcome measures were the total hemoglobin profiles and tissue oxygenation index (TOI) in the muscle tissue evaluated through near-infrared spectroscopy. The Motricity Index and modified Ashworth Scale for upper limb muscles were used to assess mobility of the upper extremity. [Results] Robotic assistance reduced spasticity after the intervention by 68.6% in the upper limb. The Motricity Index was unchanged in these patients after treatment. Regarding changes in muscle perfusion, significant improvements were found in total hemoglobin. There were significant differences between the pre- and posttreatment modified Ashworth scale. [Conclusion] The present work provides novel evidence that robotic assistance of the hand induced changes in local muscle blood flow and oxygen supply, diminished spasticity, and decreased subject-reported symptoms of heaviness and stiffness in subjects with post-stroke hemiparesis.

Keywords: Near-infrared spectroscopy; Robotic rehabilitation; Stroke.

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References

    1. Kelly-Hayes M, Beiser A, Kase CS, et al. : The influence of gender and age on disability following ischemic stroke: the Framingham study. J Stroke Cerebrovasc Dis, 2003, 12: 119–126. - PubMed
    1. Yoo C, Park J: Impact of task-oriented training on hand function and activities of daily living after stroke. J Phys Ther Sci, 2015, 27: 2529–2531. - PMC - PubMed
    1. Lang CE, Bland MD, Bailey RR, et al. : Assessment of upper extremity impairment, function, and activity after stroke: foundations for clinical decision making. J Hand Ther, 2013, 26: 104–114, quiz 115. - PMC - PubMed
    1. Yoo DH, Kim SY: Effects of upper limb robot-assisted therapy in the rehabilitation of stroke patients. J Phys Ther Sci, 2015, 27: 677–679. - PMC - PubMed
    1. Hu XL, Tong KY, Wei XJ, et al. : The effects of post-stroke upper-limb training with an electromyography (EMG)-driven hand robot. J Electromyogr Kinesiol, 2013, 23: 1065–1074. - PubMed