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      KCI등재후보

      체간 훈련 운동이 만성기 뇌졸중 환자의 균형 및 에너지 소모에 미치는 효과 : 단일사례연구 = The Effect of Trunk Training Exercise on Balance and Energy Expenditure in chronic Stroke Patients : Single-subject research design

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      https://www.riss.kr/link?id=A104300233

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      다국어 초록 (Multilingual Abstract)

      Purpose This study was to determine the effect of trunk training exercise on dynamic balance and energy expenditure during walk in chronic stroke patients. Methods This study used a single subject research design. Two chronic stroke patients were part...

      Purpose This study was to determine the effect of trunk training exercise on dynamic balance and energy expenditure during walk in chronic stroke patients. Methods This study used a single subject research design. Two chronic stroke patients were participated and received general training five times per week. The trunk training exercise program was modified from preceding studies and composed of trunk muscle strengthening and selective and coordinated movement. The subjects performed exercise program five times a week, forty minute a day, four weeks. Pre base line(A) was only collected participant information without intervention in 5 times. Trunk training exercise(B) was carried out 10 times and 5 times to base lime(A) after intervention. The dynamic balance of was evaluated by Timed Up and Go Test(TUG), the energy consumption was measured by the oxygen cost as the oxygen consumption per unit distance, energy expenditure index(EEI) as the difference of heart rate, in a session. Results The results of the evaluation in each subject were indicated that the dynamic balance test was improved, both oxygen cost and energy expenditure index were decreased during the intervention period. These effects were maintained even during the regression baseline period. Conclusion These results showed that trunk training exercise was effective in the improvement of dynamic balance and decrease energy consumption. This study suggests that trunk training exercise is effective in the improvement of energy efficiency during walk in chronic stroke patients.

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      참고문헌 (Reference)

      1 송주민, "체간 안정화 운동이 뇌졸중 환자의 균형과 보행에 미치는 영향" 대한물리의학회 5 (5): 413-420, 2010

      2 김은자, "뇌졸중 환자의 체간하부 안정성 강화운동이 균형과 보행에 미치는 영향" 대한물리치료학회 21 (21): 17-22, 2009

      3 이동엽, "가상현실을 이용한 재활운동이 뇌졸중 환자의 보행시 에너지 소모에 미치는 효과" 한국산학기술학회 11 (11): 3826-3832, 2010

      4 Tessem S, "Weight distribution in standing and sitting positions, and weight transfer during reaching tasks, in seated stroke subjects and healthy subjects" 12 (12): 82-94, 2007

      5 Verheyden G, "Trunk performance after stroke and the relationship with balance, gait and functional ability" 20 (20): 451-458, 2006

      6 Hsieh CL, "Trunk control as an early predictor of comprehensive activities of daily living function in stroke patients" 33 (33): 2626-2630, 2002

      7 Snaphaan L, "Time course and risk factors of post-stroke fatigue: a prospective cohort study" 18 (18): 611-617, 2011

      8 Verheyden G, "The trunk impairment scale: a new tool to measure motor impairment of the trunk after stroke" 18 (18): 326-334, 2004

      9 Podsiadlo D, "The timed "Up & Go": a test of basic functional mobility for frail elderly persons" 39 (39): 142-148, 1991

      10 Stoguart G, "The reasons why stroke patients expend so much energy to walk slowly" 36 (36): 409-413, 2012

      1 송주민, "체간 안정화 운동이 뇌졸중 환자의 균형과 보행에 미치는 영향" 대한물리의학회 5 (5): 413-420, 2010

      2 김은자, "뇌졸중 환자의 체간하부 안정성 강화운동이 균형과 보행에 미치는 영향" 대한물리치료학회 21 (21): 17-22, 2009

      3 이동엽, "가상현실을 이용한 재활운동이 뇌졸중 환자의 보행시 에너지 소모에 미치는 효과" 한국산학기술학회 11 (11): 3826-3832, 2010

      4 Tessem S, "Weight distribution in standing and sitting positions, and weight transfer during reaching tasks, in seated stroke subjects and healthy subjects" 12 (12): 82-94, 2007

      5 Verheyden G, "Trunk performance after stroke and the relationship with balance, gait and functional ability" 20 (20): 451-458, 2006

      6 Hsieh CL, "Trunk control as an early predictor of comprehensive activities of daily living function in stroke patients" 33 (33): 2626-2630, 2002

      7 Snaphaan L, "Time course and risk factors of post-stroke fatigue: a prospective cohort study" 18 (18): 611-617, 2011

      8 Verheyden G, "The trunk impairment scale: a new tool to measure motor impairment of the trunk after stroke" 18 (18): 326-334, 2004

      9 Podsiadlo D, "The timed "Up & Go": a test of basic functional mobility for frail elderly persons" 39 (39): 142-148, 1991

      10 Stoguart G, "The reasons why stroke patients expend so much energy to walk slowly" 36 (36): 409-413, 2012

      11 Saibene F., "The mechanisms for minimizing energy expenditure in human locomotion" 44 : 65-71, 1990

      12 Waters RL, "The energy expenditure of normal and pathologic gait" 9 (9): 207-231, 1999

      13 Waters RL, "The energy expenditure of normal and pathologic gait" 9 (9): 207-231, 1999

      14 Zamparo P, "The energy cost of level walking in patients with hemiplegia" 5 (5): 348-352, 1995

      15 Houdijk H, "The energy cost for balance control during upright standing" 30 (30): 150-154, 2009

      16 Chung EJ, "The effects of core stabilization exercise on dynamic balance and gait function in stroke patients" 25 (25): 803-806, 2013

      17 Aluko A, "The effect of core stability exercises on variations in acceleration of trunk movement, pain, and disability during an episode of acute nonspecific low back pain: a pilot clinical trial" 36 (36): 497-504, 2013

      18 Kim BH, "The effect of a task oriented training on trunk control ability, balance and gait of stroke patients" 24 (24): 519-522, 2012

      19 Yoo JS, "The Effect of trunk stabilization exercise using an unstable surface on the abdominal muscle structure and balance of stroke patients" 26 (26): 857-859, 2014

      20 Karthikbabu S, "Role of trunk rehabilitation on trunk control, balance and gait in patients with chronic stroke: a pre-post design" 2 (2): 61-67, 2011

      21 Saeys W, "Randomized controlled trial of truncal exercises early after stroke to improve balance and mobility" 26 (26): 231-238, 2011

      22 Schepers VP, "Poststroke fatigue: course and its relation to personal and stroke-related factors" 87 (87): 184-188, 2006

      23 Reisman DS, "Influence of speed on walking economy poststroke" 23 (23): 529-534, 2009

      24 Goljar N, "Improving balance in subacute stroke patients: a randomized controlled study" 33 (33): 205-210, 2010

      25 da Cunha IT Jr, "Gait outcomes after acute stroke rehabilitation with supported treadmill ambulation training: a randomized controlled pilot study" 83 (83): 1258-1265, 2002

      26 de Groot MH, "Fatigue associated with stroke and other neurologic conditions: implications for stroke rehabilitation" 84 (84): 1714-1720, 2003

      27 van der Werf SP, "Experience of severe fatigue long after stroke and its relation to depressive symptoms and disease characteristics" 45 (45): 28-33, 2001

      28 Houdijk H, "Energy expenditure of stroke patients during postural control tasks" 32 (32): 321-326, 2010

      29 Detrembleur C, "Energy cost, mechanical work, and efficiency of hemiparetic walking" 18 (18): 47-55, 2003

      30 Ijmker T, "Energy cost of balance control during walking decreases with external stabilizer stiffness independent of walking speed" 46 (46): 2109-2114, 2013

      31 Koyama K, "Effects of unstable shoes on energy cost during treadmill walking at various speeds" 11 (11): 632-637, 2012

      32 Corcoran PJ, "Effects of plastic and metal leg braces on speed and energy cost of hemiparetic ambulation" 51 (51): 69-77, 1970

      33 Chen IC, "Effects of balance training on hemiplegic stroke patients" 25 (25): 583-590, 2002

      34 Franceschini M, "Effects of an ankle foot orthosis on spatiotemporal parameters and energy cost of hemiparetic gait" 17 (17): 368-372, 2003

      35 Goldie PA, "Deficit and change in gait velocity during rehabilitation after stroke" 77 (77): 1074-1082, 1996

      36 Bayouk JF, "Balance training following stroke: effects of task oriented exercises with and without altered sensory input" 29 (29): 51-59, 2006

      37 Tyson SF, "Balance disability after stroke" 86 (86): 30-38, 2006

      38 Girolami GL, "Anticipatory postural adjustments in children with hemiplegia and diplegia" 21 (21): 988-997, 2011

      39 Dickstein R, "Anticipatory postural adjustment in selected trunk muscles in post stroke hemiparetic patients" 85 (85): 261-267, 2004

      40 Verheyden G, "Additional exercises improve trunk performance after stroke: A pilot randomized controlled trial" 23 (23): 281-286, 2009

      41 Dickstein R, "Activation of selected trunk muscles during symmetric functional activities in poststroke hemiparetic and hemiplegic patients" 66 (66): 218-221, 1999

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.06 0.06 0.05
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.09 0 0.293 0.04
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