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The Effects of Navigated Repetitive Transcranial Magnetic Simulation and Brunnstrom Movement Therapy on Upper Extremity Proprioceptive Sense and Spasticity in Stroke Patients: A Double-Blind Randomized Trial

Year 2017, Volume: 1 Issue: 2, 29 - 35, 01.06.2017
https://doi.org/10.5152/jbachs.2017.110

Abstract

Purpose: The purpose of this study is to investigate the effects of various treatments repetitive transcranial magnetic stimulation and Brunnstrom movement therapy on upper extremity proprioceptive sense and spasticity.Methods: Twenty-one stroke patients were included in the study. The treatment group Group 1; n=10 was administered navigated real repetitive transcranial magnetic stimulation rTMS , and the control group Group 2; n=11 was administered sham rTMS by the first researcher. The patients in both groups had upper extremity exercises according to Brunnstrom movement therapy BMT . The patients were assessed using the Brunnstrom recovery stages BRS , proprioceptive sense assessment, and the modified Ashworth scale MAS .Results: Between the treatment group and control group patients, there were no significant statistical differences obtained from pre-treatment and postreatment tenth day, first month, and third month by BRS wrist, hand, and upper extremity stages. The intragroup comparison of the treatment group patients revealed a statistically significant difference between the pre-treatment and post-treatment third month BRS-hand and BRS-upper extremity stages.The pretreatment and postreatment tenth day and first month evaluations of the wrist proprioceptive sense of the groups presented a significant difference. There was no statistically significant difference between the groups in terms of MAS scores before and after treatment evaluations.Conclusion: The rTMS and BMT approaches that were implemented in the study affected the proprioceptive sense of the wrist after the treatment and in the early period but did not change spasticity

References

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  • Hagert E. Proprioception of the wrist joint: a review of current con- cepts and possible implications on the rehabilitation of the wrist. J Hand Ther 2010; 23:2-16. [CrossRef]
  • Ribeiro F, Oliveira J. Aging effects on joint proprioception: the role of physical activity in proprioceptive sense preservation. Eur Rev Ag- ing Phys Act 2007; 4:71-76. [CrossRef]
  • Hughes CM, Tommasino P, Budhota A, Campolo D. Upper ex- tremity proprioception in healthy aging and stroke populations, and the effects of therapist- and robot- based rehabilitation therapies on proprioceptive function. Front Hum Neurosci 2015; 9:120. [CrossRef]
  • Tyson S, Hanley M, Chillala J, Selley AB, Tallis RC. Sensory loss in hospital-admitted people with stroke: characteristics, associated factors and relationship with function. Neurorehabil Neural Repair 2008; 22:166-172. [CrossRef]
  • Dukelow SP, Herter TM, Moore KD, et al. Quantitative assessment of limb position sense following stroke. Neurorehabil Neural Repair 2010; 24:178-187. [CrossRef]
  • Semrau JA, Herter TM, Scott SH, Dukelow SP. Robotic identifica- tion of kinesthetic deficits after stroke. Stroke 2013; 44:3414-3421. [CrossRef]
  • Semrau JA, Herter TM, Scott SH, Dukelow SP. Examining differences in patterns of sensory and motor recovery after stroke with robot- ics. Stroke 2015; 46:3459-3469. [CrossRef]
  • Celnik P, Hummel F, Harris-Love M, Wolk R, Cohen LG. Somatosen- sory stimulation enhances the effects of training functional hand tasks in patients with chronic stroke. Arch Phys Med Rehabil 2007; 88:1369-1376. [CrossRef]
  • Karaduman A. Hemipleji rehabilitasyonunda nörofizyolojik yak- laşımlar ve nörogelişimsel tedavi. In: Karaduman A, Yıldırım SA, Yıl- maz ÖT eds İnme sonrası fizyoterapi rehabilitasyon. 2013; 125-154.
  • Kakuda W, Abo M, Kobayashi K, et al. Low-frequency repetitive transcranial magnetic stimulation and intensive occupational treat- ment for poststroke patients with upper limb hemiparesis: prelimi- nary study of a 15-day protocol. Int J Rehabil Res 2010; 33:339-345. [CrossRef]
  • Kakuda W, Abo M, Kobayashi K, et al. Anti-spastic effect of low-fre- quency rTMS applied with occupational treatment in poststroke patients with upper limb hemiparesis. Brain Inj 2011; 25:496-502. [CrossRef]
  • Etoh S, Noma T, Ikeda K, et al. Effects of repetitive trascranial mag- netic stimulation on repetitive facilitation exercises of the hemiple- gic hand in chronic stroke patients. J Rehabil Med 2013; 45:843-847. [CrossRef]
  • Takeuchi N, Tada T, Toshima M, Chuma T, Matsuo Y, Ikoma K. Inhibi- tion of the unaffected motor cortex by 1 Hz repetitive transcranial magnetic stimulation enhances motor performance and training effect of the paretic hand in patients with chronic stroke. J Rehabil Med 2008; 40:298-303. [CrossRef]
  • Nowak DA, Grefkes C, Dafotakis M, et al. Effects of low-frequency repetitive transcranial magnetic stimulation of the contralesional primary motor cortex on movement kinematics and neural activity in subcortical stroke. Arch Neurol 2008; 65:741-747. [CrossRef]
  • Wassermann EM. Risk and safety of repetitive transcranial magnetic stimulation: report and suggested guidelines from the International Workshop on the Safety of Repetitive Transcranial Magnetic Stim- ulation, 1996 June 5-7, 1996. Electroencephalogr Clin Neurophysiol 1998; 108:1-16. [CrossRef]
  • Livanelioğlu A, Kerem M. In Brunnstrom Yöntemi In (eds) Otman AS, Karaduman A, Livanelioğlu A Kerem M, Aksu S, Köse N, Aras Ö, Meriç A Hemipleji rehabilitasyonunda nörofizyolojik yaklaşımlar. 2010; 16-56.
  • Edwards S. An physioterapy approaches to the treatment of neu- rological conditions and historical perspectives. In: Edwards S ed Neurological physiotherapy. 1996; 3-14.
  • Sawner KA, LaVigne JM, Brunnstrom S. Brunnstrom’s movement treatment in hemiplegia: a neurophysiological approach: Lippin- cott; 1992.
  • Tombaugh TN, McIntyre NJ. The mini-mental state examination: a comprehensive review. J Am Geriatr Soc, 1992; 40:922-935. [CrossRef]
  • Li F, Wu Y, Li X. Test-retest reliability and inter-rater reliability of the Modified Tardieu Scale and the Modified Ashworth Scale in hemi- plegic patients with stroke. Eur J Phys Rehabil Med 2014; 50:9-15.
  • Bohannon RW, Smith MB. Interrater reliability of a modified Ashworth scale of muscle spasticity. Phys Ther 1987; 67:206-207. [CrossRef]
  • Carod-Artal J, Egido JA, González JL, Varela de Seijas E. Quality of life among stroke survivors evaluated 1 year after stroke: experience of a stroke unit. Stroke 2000; 31:2995-3000. [CrossRef]
  • Sullivan JE, Hedman LD. Sensory dysfunction following stroke: inci- dence, significance, examination, and intervention. Top Stroke Re- habil 2008; 15:200-17. [CrossRef]
  • Connell LA, Lincoln NB, Radford KA. Somatosensory impairment after stroke: frequency of different deficits and their recovery. Clin Rehabil 2008; 22:758-767. [CrossRef]
  • Hüseyinsioğlu BE, Özdinçler AR, Oğul EA, Krespi Y. Reliability And Validity Of Turkish Version Of Motor Activity Log-28. Turk J Neurol 2011; 17:83-89.
  • Huang CY, Lin GH, Huang YJ, et al. Improving the utility of the Brunn- strom recovery stages in patients with stroke: validation and quan- tification. Medicine 2016; 95:e4508.
  • Butler JA, Wolf SL. Putting the brain on the map: Use of transcranial magnetic stimulation to assess and ınduce cortical plasticity of up- per-extremity movement. Phys Ther 2007; 87:719-736. [CrossRef]
  • Tüzün EH, Karaduman A. İnmeli hastalarda kanıta dayalı rehabili- tasyon uygulamaları In: Karaduman A, Yıldırım SA, Yılmaz ÖT eds İnme sonrası fizyoterapi rehabilitasyon. 2013; 247-268
  • Oujamaa L, Relave I, Froger J, Mottet D, Pelissier JY. Rehabilitation of arm function after stroke. Literature review. Ann Phys Rehabil Med 2009; 52:269-293. [CrossRef]
  • Carey LM, Oke LE, Matyas TA. Impaired limb position sense after stroke: a quantitative test for clinical use. Arch Phys Med Rehabil 1996; 77:1271-1278. [CrossRef]
  • Barros Galvão SC, Borba Costa dos Santos R, Borba dos Santos P, Cabral ME1, Monte-Silva K. Efficacy of coupling repetitive tran- scranial magnetic stimulation and physical treatment to reduce up- per-limb spasticity in patients with stroke: a randomized controlled trial. Arch Phys Med Rehabil 2014; 95:222-229.[CrossRef]
Year 2017, Volume: 1 Issue: 2, 29 - 35, 01.06.2017
https://doi.org/10.5152/jbachs.2017.110

Abstract

References

  • Edin BB. Cutaneous afferents provide information about knee joint movements in humans. J Physiol 2001; 531:289-297. [CrossRef]
  • Hagert E. Proprioception of the wrist joint: a review of current con- cepts and possible implications on the rehabilitation of the wrist. J Hand Ther 2010; 23:2-16. [CrossRef]
  • Ribeiro F, Oliveira J. Aging effects on joint proprioception: the role of physical activity in proprioceptive sense preservation. Eur Rev Ag- ing Phys Act 2007; 4:71-76. [CrossRef]
  • Hughes CM, Tommasino P, Budhota A, Campolo D. Upper ex- tremity proprioception in healthy aging and stroke populations, and the effects of therapist- and robot- based rehabilitation therapies on proprioceptive function. Front Hum Neurosci 2015; 9:120. [CrossRef]
  • Tyson S, Hanley M, Chillala J, Selley AB, Tallis RC. Sensory loss in hospital-admitted people with stroke: characteristics, associated factors and relationship with function. Neurorehabil Neural Repair 2008; 22:166-172. [CrossRef]
  • Dukelow SP, Herter TM, Moore KD, et al. Quantitative assessment of limb position sense following stroke. Neurorehabil Neural Repair 2010; 24:178-187. [CrossRef]
  • Semrau JA, Herter TM, Scott SH, Dukelow SP. Robotic identifica- tion of kinesthetic deficits after stroke. Stroke 2013; 44:3414-3421. [CrossRef]
  • Semrau JA, Herter TM, Scott SH, Dukelow SP. Examining differences in patterns of sensory and motor recovery after stroke with robot- ics. Stroke 2015; 46:3459-3469. [CrossRef]
  • Celnik P, Hummel F, Harris-Love M, Wolk R, Cohen LG. Somatosen- sory stimulation enhances the effects of training functional hand tasks in patients with chronic stroke. Arch Phys Med Rehabil 2007; 88:1369-1376. [CrossRef]
  • Karaduman A. Hemipleji rehabilitasyonunda nörofizyolojik yak- laşımlar ve nörogelişimsel tedavi. In: Karaduman A, Yıldırım SA, Yıl- maz ÖT eds İnme sonrası fizyoterapi rehabilitasyon. 2013; 125-154.
  • Kakuda W, Abo M, Kobayashi K, et al. Low-frequency repetitive transcranial magnetic stimulation and intensive occupational treat- ment for poststroke patients with upper limb hemiparesis: prelimi- nary study of a 15-day protocol. Int J Rehabil Res 2010; 33:339-345. [CrossRef]
  • Kakuda W, Abo M, Kobayashi K, et al. Anti-spastic effect of low-fre- quency rTMS applied with occupational treatment in poststroke patients with upper limb hemiparesis. Brain Inj 2011; 25:496-502. [CrossRef]
  • Etoh S, Noma T, Ikeda K, et al. Effects of repetitive trascranial mag- netic stimulation on repetitive facilitation exercises of the hemiple- gic hand in chronic stroke patients. J Rehabil Med 2013; 45:843-847. [CrossRef]
  • Takeuchi N, Tada T, Toshima M, Chuma T, Matsuo Y, Ikoma K. Inhibi- tion of the unaffected motor cortex by 1 Hz repetitive transcranial magnetic stimulation enhances motor performance and training effect of the paretic hand in patients with chronic stroke. J Rehabil Med 2008; 40:298-303. [CrossRef]
  • Nowak DA, Grefkes C, Dafotakis M, et al. Effects of low-frequency repetitive transcranial magnetic stimulation of the contralesional primary motor cortex on movement kinematics and neural activity in subcortical stroke. Arch Neurol 2008; 65:741-747. [CrossRef]
  • Wassermann EM. Risk and safety of repetitive transcranial magnetic stimulation: report and suggested guidelines from the International Workshop on the Safety of Repetitive Transcranial Magnetic Stim- ulation, 1996 June 5-7, 1996. Electroencephalogr Clin Neurophysiol 1998; 108:1-16. [CrossRef]
  • Livanelioğlu A, Kerem M. In Brunnstrom Yöntemi In (eds) Otman AS, Karaduman A, Livanelioğlu A Kerem M, Aksu S, Köse N, Aras Ö, Meriç A Hemipleji rehabilitasyonunda nörofizyolojik yaklaşımlar. 2010; 16-56.
  • Edwards S. An physioterapy approaches to the treatment of neu- rological conditions and historical perspectives. In: Edwards S ed Neurological physiotherapy. 1996; 3-14.
  • Sawner KA, LaVigne JM, Brunnstrom S. Brunnstrom’s movement treatment in hemiplegia: a neurophysiological approach: Lippin- cott; 1992.
  • Tombaugh TN, McIntyre NJ. The mini-mental state examination: a comprehensive review. J Am Geriatr Soc, 1992; 40:922-935. [CrossRef]
  • Li F, Wu Y, Li X. Test-retest reliability and inter-rater reliability of the Modified Tardieu Scale and the Modified Ashworth Scale in hemi- plegic patients with stroke. Eur J Phys Rehabil Med 2014; 50:9-15.
  • Bohannon RW, Smith MB. Interrater reliability of a modified Ashworth scale of muscle spasticity. Phys Ther 1987; 67:206-207. [CrossRef]
  • Carod-Artal J, Egido JA, González JL, Varela de Seijas E. Quality of life among stroke survivors evaluated 1 year after stroke: experience of a stroke unit. Stroke 2000; 31:2995-3000. [CrossRef]
  • Sullivan JE, Hedman LD. Sensory dysfunction following stroke: inci- dence, significance, examination, and intervention. Top Stroke Re- habil 2008; 15:200-17. [CrossRef]
  • Connell LA, Lincoln NB, Radford KA. Somatosensory impairment after stroke: frequency of different deficits and their recovery. Clin Rehabil 2008; 22:758-767. [CrossRef]
  • Hüseyinsioğlu BE, Özdinçler AR, Oğul EA, Krespi Y. Reliability And Validity Of Turkish Version Of Motor Activity Log-28. Turk J Neurol 2011; 17:83-89.
  • Huang CY, Lin GH, Huang YJ, et al. Improving the utility of the Brunn- strom recovery stages in patients with stroke: validation and quan- tification. Medicine 2016; 95:e4508.
  • Butler JA, Wolf SL. Putting the brain on the map: Use of transcranial magnetic stimulation to assess and ınduce cortical plasticity of up- per-extremity movement. Phys Ther 2007; 87:719-736. [CrossRef]
  • Tüzün EH, Karaduman A. İnmeli hastalarda kanıta dayalı rehabili- tasyon uygulamaları In: Karaduman A, Yıldırım SA, Yılmaz ÖT eds İnme sonrası fizyoterapi rehabilitasyon. 2013; 247-268
  • Oujamaa L, Relave I, Froger J, Mottet D, Pelissier JY. Rehabilitation of arm function after stroke. Literature review. Ann Phys Rehabil Med 2009; 52:269-293. [CrossRef]
  • Carey LM, Oke LE, Matyas TA. Impaired limb position sense after stroke: a quantitative test for clinical use. Arch Phys Med Rehabil 1996; 77:1271-1278. [CrossRef]
  • Barros Galvão SC, Borba Costa dos Santos R, Borba dos Santos P, Cabral ME1, Monte-Silva K. Efficacy of coupling repetitive tran- scranial magnetic stimulation and physical treatment to reduce up- per-limb spasticity in patients with stroke: a randomized controlled trial. Arch Phys Med Rehabil 2014; 95:222-229.[CrossRef]
There are 32 citations in total.

Details

Primary Language English
Journal Section Research Article
Authors

Mehmet Özkeskin This is me

Vesile Öztürk This is me

Raif Çakmur This is me

Bilge Kara This is me

Fadime Küçük This is me

Publication Date June 1, 2017
Published in Issue Year 2017 Volume: 1 Issue: 2

Cite

APA Özkeskin, M., Öztürk, V., Çakmur, R., Kara, B., et al. (2017). The Effects of Navigated Repetitive Transcranial Magnetic Simulation and Brunnstrom Movement Therapy on Upper Extremity Proprioceptive Sense and Spasticity in Stroke Patients: A Double-Blind Randomized Trial. Journal of Basic and Clinical Health Sciences, 1(2), 29-35. https://doi.org/10.5152/jbachs.2017.110
AMA Özkeskin M, Öztürk V, Çakmur R, Kara B, Küçük F. The Effects of Navigated Repetitive Transcranial Magnetic Simulation and Brunnstrom Movement Therapy on Upper Extremity Proprioceptive Sense and Spasticity in Stroke Patients: A Double-Blind Randomized Trial. JBACHS. June 2017;1(2):29-35. doi:10.5152/jbachs.2017.110
Chicago Özkeskin, Mehmet, Vesile Öztürk, Raif Çakmur, Bilge Kara, and Fadime Küçük. “The Effects of Navigated Repetitive Transcranial Magnetic Simulation and Brunnstrom Movement Therapy on Upper Extremity Proprioceptive Sense and Spasticity in Stroke Patients: A Double-Blind Randomized Trial”. Journal of Basic and Clinical Health Sciences 1, no. 2 (June 2017): 29-35. https://doi.org/10.5152/jbachs.2017.110.
EndNote Özkeskin M, Öztürk V, Çakmur R, Kara B, Küçük F (June 1, 2017) The Effects of Navigated Repetitive Transcranial Magnetic Simulation and Brunnstrom Movement Therapy on Upper Extremity Proprioceptive Sense and Spasticity in Stroke Patients: A Double-Blind Randomized Trial. Journal of Basic and Clinical Health Sciences 1 2 29–35.
IEEE M. Özkeskin, V. Öztürk, R. Çakmur, B. Kara, and F. Küçük, “The Effects of Navigated Repetitive Transcranial Magnetic Simulation and Brunnstrom Movement Therapy on Upper Extremity Proprioceptive Sense and Spasticity in Stroke Patients: A Double-Blind Randomized Trial”, JBACHS, vol. 1, no. 2, pp. 29–35, 2017, doi: 10.5152/jbachs.2017.110.
ISNAD Özkeskin, Mehmet et al. “The Effects of Navigated Repetitive Transcranial Magnetic Simulation and Brunnstrom Movement Therapy on Upper Extremity Proprioceptive Sense and Spasticity in Stroke Patients: A Double-Blind Randomized Trial”. Journal of Basic and Clinical Health Sciences 1/2 (June 2017), 29-35. https://doi.org/10.5152/jbachs.2017.110.
JAMA Özkeskin M, Öztürk V, Çakmur R, Kara B, Küçük F. The Effects of Navigated Repetitive Transcranial Magnetic Simulation and Brunnstrom Movement Therapy on Upper Extremity Proprioceptive Sense and Spasticity in Stroke Patients: A Double-Blind Randomized Trial. JBACHS. 2017;1:29–35.
MLA Özkeskin, Mehmet et al. “The Effects of Navigated Repetitive Transcranial Magnetic Simulation and Brunnstrom Movement Therapy on Upper Extremity Proprioceptive Sense and Spasticity in Stroke Patients: A Double-Blind Randomized Trial”. Journal of Basic and Clinical Health Sciences, vol. 1, no. 2, 2017, pp. 29-35, doi:10.5152/jbachs.2017.110.
Vancouver Özkeskin M, Öztürk V, Çakmur R, Kara B, Küçük F. The Effects of Navigated Repetitive Transcranial Magnetic Simulation and Brunnstrom Movement Therapy on Upper Extremity Proprioceptive Sense and Spasticity in Stroke Patients: A Double-Blind Randomized Trial. JBACHS. 2017;1(2):29-35.