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      KCI등재후보

      연속 반응 시간 과제 수행의 행위 관찰과 운동 상상이 거울신경활성에 미치는 영향 = The effects of action observation and motor imagery of serial reaction time task (SRTT) in mirror neuron activation

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      https://www.riss.kr/link?id=A60203940

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      다국어 초록 (Multilingual Abstract)

      Purpose:The object of this study was to examine the effect of motor learning on brain activation depending on the method of motor learning. Methods:The brain activation was measured in 9 men by fMRI. The subjects were divided into the following gr...

      Purpose:The object of this study was to examine the effect of motor learning on brain activation depending on the method of motor learning. Methods:The brain activation was measured in 9 men by fMRI. The subjects were divided into the following groups depending on the method of motor learning: actually practice (AP, n=3) group, action observation (AO, n=3) group and motor imagery (MI, n=3) group. In order to examine the effect of motor learning depending on the method of motor learning, the brain activation data were measured during learning. For the investigation of brain activation, fMRI was conducted. Results:The results of brain activation measured before and during learning were as follows; (1) During learning, the AP group showed the activation in the following areas: primary motor area located in precentral gyrus, somatosensory area located in postcentral gyrus, supplemental motor area and prefrontal association area located in precentral gyrus, middle frontal gyrus and superior frontal gyrus, speech area located in superior temporal gyrus and middle temporal gyrus, Broca`s area located in inferior parietal lobe and somatosensory association area of precuneus; (2) During learning, the AO groups showed the activation in the following areas: primary motor area located in precentral gyrus, prefrontal association area located in middle frontal gyrus and superior frontal gyrus, speech area and supplemental motor area located in superior temporal gyrusand middle temporal gyrus, Broca`s area located in inferior parietal lobe, somatosensory area and primary motor area located in precentral gyrus of right cerebrum and left cerebrum, and somatosensory association area located in precuneus; and (3) During learning, the MI group showed activation in the following areas: speech area located in superior temporal gyrus, supplemental area, and somatosensory association area located in precuneus. Conclusion:Given the results above, in this study, the action observation was suggested as an alternative to motor learning through actual practice in serial reaction time task of motor learning. It showed the similar results to the actual practice in brain activation which were obtained using activation of mirror neuron. This result suggests that the brain activation occurred by the activation of mirror neuron, which was observed during action observation. The mirror neurons are located in primary motor area, somatosensory area, premotor area, supplemental motor area and somatosensory association area. In sum, when we plan a training program through physiotherapy to increase the effect during reeducation of movement, the action observation as well as best resting is necessary in increasing the effect of motor learning with the patients who cannot be engaged in actual practice.

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      참고문헌 (Reference)

      1 박민철, "정신훈련이 편마비환자의 상지기능 향상에 미치는 영향" 부산가톨릭대학교 2006

      2 이명희, "신호 형태와 수면 의존성 학습이 운동수행능력과 뇌 활성화에 미치는 영향" 대구대학교 2009

      3 배성수, "신경⋅근육⋅관절의 치료, 고유수용성신경근촉진법; 근거에 의한 진단과 중재" 대학서림 2009

      4 김태호, "골프퍼팅과제에 대한 운동심상과 활동관찰의 학습촉진효과 차이" 한국사회체육학회 (36) : 643-653, 2009

      5 Molnar-Szakacs I, "complex action sequences: The role of the fronto-parietal mirror neuron system" 33 : 923-935, 2006

      6 Stevens JA, "Using motor imagery in the rehabilitation of hemiparesis" 84 (84): 1090-1092, 2003

      7 Orban P, "The multifaceted nature of the relationship between performance and brain activity in motor sequence learning" 49 (49): 694-702, 2010

      8 Rizzolatti G, "The mirror neuron system and its function in humans" 210 : 419-422, 2005

      9 Braun SM, "The effects of mental practice in stroke rehabilitation: a systematic review" 87 (87): 842-852, 2006

      10 Smith D, "The effect of imagery modality on golf putting performance" 26 : 385-395, 2004

      1 박민철, "정신훈련이 편마비환자의 상지기능 향상에 미치는 영향" 부산가톨릭대학교 2006

      2 이명희, "신호 형태와 수면 의존성 학습이 운동수행능력과 뇌 활성화에 미치는 영향" 대구대학교 2009

      3 배성수, "신경⋅근육⋅관절의 치료, 고유수용성신경근촉진법; 근거에 의한 진단과 중재" 대학서림 2009

      4 김태호, "골프퍼팅과제에 대한 운동심상과 활동관찰의 학습촉진효과 차이" 한국사회체육학회 (36) : 643-653, 2009

      5 Molnar-Szakacs I, "complex action sequences: The role of the fronto-parietal mirror neuron system" 33 : 923-935, 2006

      6 Stevens JA, "Using motor imagery in the rehabilitation of hemiparesis" 84 (84): 1090-1092, 2003

      7 Orban P, "The multifaceted nature of the relationship between performance and brain activity in motor sequence learning" 49 (49): 694-702, 2010

      8 Rizzolatti G, "The mirror neuron system and its function in humans" 210 : 419-422, 2005

      9 Braun SM, "The effects of mental practice in stroke rehabilitation: a systematic review" 87 (87): 842-852, 2006

      10 Smith D, "The effect of imagery modality on golf putting performance" 26 : 385-395, 2004

      11 Bandura A, "Social learning through imitation. In Nebraska symposium on motivation" University of Nebraska Press 1962

      12 Ashford D, "Observational modeling effects for movement dynamics and movement outcome measures across differing task constraints: A meta analysis" 38 : 185-205, 2006

      13 Rizzolatti G, "Neurophysiological mechanisms underlying the understanding and imitation of action" 2 (2): 661-670, 2001

      14 Iacoboni M, "Neural mechanisms of imitation" 15 (15): 632-637, 2005

      15 Halsband U, "Motor learning in man: a review of functional and clinical studied" 99 (99): 414-424, 2006

      16 Mulder T, "Motor imagery: The relation between age and imagery capacity" 26 (26): 203-211, 2007

      17 Cheng YW, "Modulation of spinal excitability during observation of bipedal location" 16 (16): 1711-1714, 2005

      18 Breslin G, "Modelling relative motion to faciitate intra-limb coordination" 24 (24): 446-463, 2005

      19 Perry A, "Mirror activity in the human brain while observing hand movement: A Comparison between EEG desynchronization in the μ-range and previous fMRI results" 1282 : 126-132, 2009

      20 Orrell AJ, "Implicit sequence learning processes after unilateral stroke" 17 (17): 335-354, 2007

      21 Page SJ, "Effects of mental practice on affected limb use and function in chronic strock" 86 (86): 399-402, 2005

      22 Papadelis C, "Effects of imagery training on cognitive performance and use of physiological measures as an assessment tool of mental effort" 64 (64): 74-85, 2007

      23 Gazzaniga MS, "Cognitive Neuroscience(2)" W.W.Norton & Company. Ltd 2002

      24 Tremblay C, "Action observation and execution: intracranial recordings in a human subject" 63 : 937-938, 2004

      25 Buccino G, "Action observation activates premotor and parietal area in a somatotopic manner: An fMRI study" 13 (13): 400-404, 2001

      26 Hashimoto K, "Ability for basic movement as an early predictor of functioning related to activities of daily living in stroke patients" 21 (21): 353-367, 2007

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2027 평가예정 재인증평가 신청대상 (재인증)
      2021-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2018-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2015-01-01 평가 등재학술지 선정 (계속평가) KCI등재
      2013-01-01 평가 등재후보 1차 FAIL (등재후보1차) KCI등재후보
      2012-01-01 평가 등재후보학술지 유지 (기타) KCI등재후보
      2011-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2009-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.85 0.85 0.91
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.93 0.89 0.569 0.23
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