DOI QR코드

DOI QR Code

Effects of Vibration Stimulation Method on Upper Limbs Spasticity in Patients with Brain Lesion

진동자극 방식이 뇌병변 환자의 상지경직에 미치는 영향

  • 배세현 (광주희망병원 물리치료실) ;
  • 김경윤 (동신대학교 물리치료학과)
  • Received : 2011.05.24
  • Accepted : 2011.07.07
  • Published : 2011.07.31

Abstract

We studied the effects of vibration stimulation method on upper limbs spasticity in patients with brain lesion. 21 patients with spasticity of the upper limbs selected and divided randomly 3 groups. And then vibratory stimulation was applied to the triceps brachii muscle in group I(n=7), to biceps brachii muscle in group II (n=7), and to both muscles in group III (n=7). Using Neuro-EMG_Micro to investigate the changes in spinal neuronal excitability, F-waves were measured at before and directly after stimulation, and 10 minutes later and 20 minutes later after stimulation especially. MAS(Modified Ashworth Scale) test for muscle tone and MFT(Manual Function Test) for the upper extremity motor function were performed before stimulation and 20 minutes later after stimulation for the purpose of clinical evaluation. In our study, MAS was significant decreased in all groups, F wave and F/M ratio parameters were decreased in all groups and more decreased specially in group III. MFT was increased in group II and III, and more increased specially in group III. Vibration stimulation reduced the neuronal excitability of spinal cord and also muscle tone, and improved the motor function of the upper extremity. These results suggested that vibration stimulation giving to both muscles(triceps and biceps brachii muscle) at the same time was more efficiency in reducing the neuronal excitability of spinal cord and improving the motor function of the upper limbs.

본 연구는 뇌병변으로 상지경직이 관찰되는 환자를 대상으로 자극방식에 따른 진동자극이 경직에 미치는 영향에 대하여 알아보고자 하였다. 뇌병변으로 인해 상지경직이 있는 21명의 환자가 연구에 참여하였고, 실험군 I: 길항근(상완삼두근)자극, 실험군II: 주동근(상완이두근)자극, 실험군III: 동시(상완삼두근 및 상완이두근)자극에 각 7명씩을 배정하여 진동자극을 실시하였다. 척수운동신경원 흥분성을 알아보기 위해 Neuro-EMG_Micro를 이용한 F파를 자극전, 자극 직후, 자극 10분 후, 자극 20분 후에 측정하였고, 임상적 평가로는 MAS(Modified Ashworth Scale)와 MFT(Manual Function Test)를 자극 전, 자극 20분 후에 평가하였다. 본 연구의 결과, MAS는 세군 모두 유의한 감소를 나타냈고, F파 진폭 및 F/M비에서는 세군 모두에서 자극 직후에서부터 유의한 감소를 나타냈으며, 실험군III에서 시간 경과상 변화량이 가장 크게 나타났다. MFT에서는 실험군II와 III에서 유의한 증가를 나타냈으며 특히, 실험군III에서 기능적 변화량이 가장 크게 나타났다. 이러한 결과는 경직근에 대한 진동자극시 경직 주동근이나 길항근에 대한 단일 자극 방식보다는 동시자극 방식이 척수운동신경원의 흥분성 감소 및 상지 운동 기능 향상에 더 효과적임을 확인할 수 있었다.

Keywords

References

  1. N. H. Mayer. "Clinicophysiologic concepts of spasticity and motor dysfunction in adults with an upper motoneuron lesion", Muscle Nerve Suppl, Vol. 6, pp. 1-13, 1997.
  2. W. Z. Rymer and R. T. Katz. "Mechanism of spastic hypertonia", Phys Med Rehabil, Vol. 18, pp. 441-454, 1994.
  3. L. Erik, S. Anja, B. Jorgen and T. Andreas. "Four-fold increase in direct costs of stroke survivors with spasticity compared with stroke survivors without spasticity", Stroke, Vol. 41(2), pp. 319-324, 2010. https://doi.org/10.1161/STROKEAHA.109.558619
  4. W. Ann-Karin, A. Magnus, W. H. Lotta and K. S. Disa. "Spasticity and its association with functioning and health-related quality of life 18 months after stroke", Cerebrovasc Dis, Vol. 21(4), pp. 247-253, 2006. https://doi.org/10.1159/000091222
  5. M. M. Adams and A. I. Hicks. "Spasticity after spinal cord injury", Spinal Cord, Vol. 43(10), pp. 577-586, 2005. https://doi.org/10.1038/sj.sc.3101757
  6. W. B. Greene, F. R. Dietz, M. J. Goldberg, R. H. Gross, F. Miller and M. D. Sussman. "Rapid progression of hip subluxation in cerebral palsy after selective posterior rhizotomy", J Pediatr Orthop, Vol. 11(4), pp. 494-497, 1991. https://doi.org/10.1097/01241398-199107000-00014
  7. T. Noma, S. Matsumoto, S. Etoh, M. Shimodozono and K. Kawahira. "Anti-spastic effects of the direct application of vibratory stimuli to the spastic muscles of hemiplegic limbs in post-stroke patients", Brain inj, Vol. 23(7), pp. 623-631, 2009. https://doi.org/10.1080/02699050902997896
  8. M. Cardinale and J. Wakeling. "Whole body vibration exercise: are vibrations good for you?", Br J Sports Med, Vol. 39(9), pp. 585-589, 2005. https://doi.org/10.1136/bjsm.2005.016857
  9. J. Rittweger, K. Just, K. Kautzsch, P. Reeg and D. Felsenberg. "Treatment of chronic lower back pain with lumbar extension and whole-body vibration exercise : a randomized controlled trial", Spine, Vol. 27(17), pp. 1829-1834, 2002. https://doi.org/10.1097/00007632-200209010-00003
  10. S. A. Ageranoti and K. C. Hayes. "Effects of vibration on hypertonia and hyperreflexia in the wrist joint of patients with spastic hemiparesis", Physiotherapy Canada, Vol. 42(1), pp. 24-33, 1990.
  11. I .Shirahashi, S. Matsumoto, M. Shimodozono, S. Etoh and K. Kawahira. "Functional vibratory stimulation on the hand facilitates voluntary movements of a hemiplegic upper limb in a patient with stroke", Int J Rehabil Res, Vol. 30(3), pp. 227-230, 2007. https://doi.org/10.1097/MRR.0b013e32829fa4b6
  12. L. Ahlborg, C. Andersson and P. Julin. "Whole-body vibration training compared with resistance training: effect on spasticity, muscle strength and motor performance in adults with cerebral palsy", J Rehabil Med, Vol. 38(5), pp. 302-308, 2006. https://doi.org/10.1080/16501970600680262
  13. N. N. Ansari, S. Naghdi, T. K. Arab and S. Jalaie. "The interrater and intrarater reliability of the Modified Ashworth Scale in the assessment of muscle spasticity: limb and muscle group effect", NeuroRehabilitation, Vol. 23(3), pp. 231-237, 2008.
  14. J. Rosche, K. Rub, B. Niemann-Delius, E. Mauch and H.H. Kornhuber. "Effects of physiotheraphy on F-wave-amplitudes in spasticity", Electromyogr Clin Neurophysiol, Vol. 36(8), pp. 509-511, 1996.
  15. S. Miyamoto, T. Kondo, Y. Suzukamo, A. Michimata and S. Izumi. "Reliability and validity of the Manual Function Test in patients with stroke", Am J Phys Med Rehabil, Vol. 88(3), pp. 247-255, 2009. https://doi.org/10.1097/PHM.0b013e3181951133
  16. H. Morita, C. Crone, D. Christenhuis, N. T. Petersen and J. B. Nielsen. "Modulation of presynaptic inhibition and disynaptic reciprocal Ia inhibition during voluntary movement in spasticity", Brain, Vol. 124(4), pp. 826-837, 2001. https://doi.org/10.1093/brain/124.4.826
  17. E. Pierrot-Deseilligny and D. Burke. "Presynaptic inhibition of Ia Terminals", The Circuitry of the Human Spinal Cord, Cambridge University Press, pp. 337-378, 2005.
  18. Q. Aziz, D. G. Thompson, V. W. Ng, S. Hamdy, S. Sarkar, M. J. Brammer, E. T. Bullmore, A. Hobson, I. Tracey, L. Gregory, A. Simmons and S. C. Williams. "Cortical processing of human somatic and visceral sensation", J Neurosci, Vol. 20(7), pp. 2657-2663, 2000. https://doi.org/10.1523/JNEUROSCI.20-07-02657.2000
  19. M. Roelants, S. M. Verschueren, C. Delecluse, O. Levin and V. Stijnen. "Whole-bidy-vibration-induced increase in leg muscle activity during different squat exercises", J Strength Cond Res, Vol. 20(1), pp. 124-129, 2006.
  20. S. Matsumoto, K. Kawahira, S. Etoh, S. Ikeda and N. Tanaka.. "Short-term effects of thermotherapy for spasticity on tibial nerve F-waves in post-stroke patients", Int J Biometeorol, Vol. 50(4), pp. 243-250, 2006. https://doi.org/10.1007/s00484-005-0009-4
  21. K. H. Tasi, C. Y. Yeh, H. Y. Chang and J. J. Chen. "Effects if a single session of prolonged muscle stretch on spastic muscle of stroke patients", Proc Natl Sci Counc Repub China B, Vol. 25(2), pp. 76-81, 2001.
  22. T. I. King. "The effect of neuromuscular electrical stimulation in reducing tone", Am J Occup Ther, Vol. 50(1), pp. 62-64, 1996. https://doi.org/10.5014/ajot.50.1.62
  23. H. Nishimaru, T. Koqanezawa, M. Kakizaki, T. Ebihara and Y. Yanaqawa. "Inhibitory synaptic modulation of renshaw cell activity in the lumbar spinal cord of neonatal mice", J Neurophysiol, Vol. 103(6), pp. 3437-3447, 2010. https://doi.org/10.1152/jn.00100.2010
  24. M. A. Lebedev and A. V. Poliakov. "Analysis of the interference electromyogram of human soleus muscle after exposure to vibration", Neirofiziologiia, Vol. 23(1), pp. 57-65, 1991.
  25. T. Kasai, M. Kawanishi and S. Yahagi. "The effects of wrist muscle vibration on human voluntary elbow flexion-extension movements", Exp Brain Res, Vol. 90(1), pp. 217-220, 1992.

Cited by

  1. The effects of non-elastic taping on muscle tone in stroke patients: a pilot study vol.27, pp.12, 2015, https://doi.org/10.1589/jpts.27.3901