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      The Effect of Intensive Mobility Training on the Gait Performance of Patients with Parkinson’s Disease

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      https://www.riss.kr/link?id=A104766850

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      다국어 초록 (Multilingual Abstract)

      Purpose: The novelty of intensive mobility training (IMT) is its intensive nature. The purpose of this study was to examine theeffect of IMT in patients with Parkinson’s disease.
      Methods: Subjects participated in 3 hours/day for ten days (30 hours). Gait parameters of interest were the timed up-and-gotest, 10-m walk test, and step length and width. Measures were made at baseline before commencement of training (pre-training)and at the end of the two-week training period (post-training).
      Results: Seven patients with Parkinson’s disease enrolled in the study. On average, participants are able to tolerate 141 minutesof activity during a 180-minute session. Results showed that, after 10 consecutive days training, subjects significantly improved forall parameters; the timed up-and-go test, 10-m walk test, and stride length and step width.
      Conclusion: This study’ s findings show that gait properties in patients with Parkinson’s disease can be improved with IMT.
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      Purpose: The novelty of intensive mobility training (IMT) is its intensive nature. The purpose of this study was to examine theeffect of IMT in patients with Parkinson’s disease. Methods: Subjects participated in 3 hours/day for ten days (30 hours)...

      Purpose: The novelty of intensive mobility training (IMT) is its intensive nature. The purpose of this study was to examine theeffect of IMT in patients with Parkinson’s disease.
      Methods: Subjects participated in 3 hours/day for ten days (30 hours). Gait parameters of interest were the timed up-and-gotest, 10-m walk test, and step length and width. Measures were made at baseline before commencement of training (pre-training)and at the end of the two-week training period (post-training).
      Results: Seven patients with Parkinson’s disease enrolled in the study. On average, participants are able to tolerate 141 minutesof activity during a 180-minute session. Results showed that, after 10 consecutive days training, subjects significantly improved forall parameters; the timed up-and-go test, 10-m walk test, and stride length and step width.
      Conclusion: This study’ s findings show that gait properties in patients with Parkinson’s disease can be improved with IMT.

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      참고문헌 (Reference)

      1 박상영, "탄력밴드 저항운동이 당뇨 노인의 신체 기능과 당화혈색 소에 미치는 영향" 대한물리치료학회 24 (24): 362-369, 2012

      2 이한숙, "중기 노인 여성의 점진성 저항운동이 악력과 균형에 미치는 영향" 대한물리치료학회 25 (25): 110-116, 2013

      3 남석현, "뇌졸중 환자의 트레드밀 훈련 시 손잡이 유무 및 위치가 보행 및 균형에 미치는 영향" 대한물리치료학회 25 (25): 25-28, 2013

      4 이동규, "가상현실 운동프로그램이 파킨슨병 환자의 균형 및 하지 근력에 미치는 효과" 대한물리치료학회 25 (25): 96-102, 2013

      5 Halliday SE, "The initiation of gait in young, elderly, and parkinson's disease subjects" 8 (8): 8-14, 1998

      6 de Goede CJ, "The effects of physical therapy in parkinson's disease : A research synthesis" 82 (82): 509-515, 2001

      7 Goodwin VA, "The effectiveness of exercise interventions for people with parkinson's disease : A systematic review and meta-analysis" 23 (23): 631-640, 2008

      8 김기원, "The Effects of Circuit Weight Training Programs including Aquatic Exercises on the Body Composition and Serum Lipid Components of Women with Obesity" 대한물리치료학회 23 (23): 61-69, 2011

      9 최현진, "The Effect of Weight-support Treadmill Training on the Balance and Activity of Daily Living of Children with Spastic Diplegia" 대한물리치료학회 24 (24): 398-404, 2012

      10 Burleigh‐Jacobs A, "Step initiation in parkinson's disease : Influence of levodopa and external sensory triggers" 12 (12): 206-215, 1997

      1 박상영, "탄력밴드 저항운동이 당뇨 노인의 신체 기능과 당화혈색 소에 미치는 영향" 대한물리치료학회 24 (24): 362-369, 2012

      2 이한숙, "중기 노인 여성의 점진성 저항운동이 악력과 균형에 미치는 영향" 대한물리치료학회 25 (25): 110-116, 2013

      3 남석현, "뇌졸중 환자의 트레드밀 훈련 시 손잡이 유무 및 위치가 보행 및 균형에 미치는 영향" 대한물리치료학회 25 (25): 25-28, 2013

      4 이동규, "가상현실 운동프로그램이 파킨슨병 환자의 균형 및 하지 근력에 미치는 효과" 대한물리치료학회 25 (25): 96-102, 2013

      5 Halliday SE, "The initiation of gait in young, elderly, and parkinson's disease subjects" 8 (8): 8-14, 1998

      6 de Goede CJ, "The effects of physical therapy in parkinson's disease : A research synthesis" 82 (82): 509-515, 2001

      7 Goodwin VA, "The effectiveness of exercise interventions for people with parkinson's disease : A systematic review and meta-analysis" 23 (23): 631-640, 2008

      8 김기원, "The Effects of Circuit Weight Training Programs including Aquatic Exercises on the Body Composition and Serum Lipid Components of Women with Obesity" 대한물리치료학회 23 (23): 61-69, 2011

      9 최현진, "The Effect of Weight-support Treadmill Training on the Balance and Activity of Daily Living of Children with Spastic Diplegia" 대한물리치료학회 24 (24): 398-404, 2012

      10 Burleigh‐Jacobs A, "Step initiation in parkinson's disease : Influence of levodopa and external sensory triggers" 12 (12): 206-215, 1997

      11 Herman T, "Six weeks of intensive treadmill training improves gait and quality of life in patients with parkinson’s disease : A pilot study" 88 (88): 1154-1158, 2007

      12 Hass CJ, "Resistance training with creatine monohydrate improves upper-body strength in patients with parkinson disease : A randomized trial" 21 (21): 107-115, 2007

      13 Scandalis TA, "Resistance training and gait function in patients with parkinson's disease" 80 (80): 38-43, 2001

      14 Bloem BR, "Prospective assessment of falls in parkinson's disease" 248 (248): 950-958, 2001

      15 Brunt D, "Principles underlying the organization of movement initiation from quiet stance" 10 (10): 121-128, 1999

      16 Falvo MJ, "Parkinson's disease and resistive exercise : Rationale, review, and recommendations" 23 (23): 1-11, 2008

      17 Kakinuma S, "Muscle weakness in parkinson's disease : Isokinetic study of the lower limbs" 39 (39): 218-222, 1998

      18 Schmidt RA, "Motor control and learning, 5e" Human kinetics 285-322, 1988

      19 Perera S, "Meaningful change and responsiveness in common physical performance measures in older adults" 54 (54): 743-749, 2006

      20 de Bode S, "Locomotor training remodels fmri sensorimotor cortical activations in children after cerebral hemispherectomy" 21 (21): 497-508, 2007

      21 Dietz V, "Locomotor activity in spinal cord-injured persons" 96 (96): 1954-1960, 2004

      22 Nocera JR, "Knee extensor strength, dynamic stability, and functional ambulation: Are they related in parkinson's disease?" 91 (91): 589-595, 2010

      23 Crenna P, "Impact of subthalamic nucleus stimulation on the initiation of gait in parkinson’s disease" 172 (172): 519-532, 2006

      24 Kwakkel G, "Impact of intensity of practice after stroke: Issues for consideration" 28 (28): 823-830, 2006

      25 Rodrigues de Paula F, "Impact of an exercise program on physical, emotional, and social aspects of quality of life of individuals with parkinson's disease" 21 (21): 1073-1077, 2006

      26 Dibble LE, "High intensity eccentric resistance training decreases bradykinesia and improves quality of life in persons with parkinson's disease : A preliminary study" 15 (15): 752-757, 2009

      27 Hackney ME, "Health-related quality of life and alternative forms of exercise in parkinson disease" 15 (15): 644-648, 2009

      28 Mount J, "Group balance skills class for people with chronic stroke : A case series" 29 (29): 24-33, 2005

      29 Martin M, "Gait initiation in community-dwelling adults w ith parkinson d isease : Comparison with older and younger adults without the disease" 82 (82): 566-577, 2002

      30 Hass CJ, "Gait initiation and dynamic balance control in parkinson's disease" 86 (86): 2172-2176, 2005

      31 Fritz S, "Feasibility of intensive mobility training to improve gait, balance, and mobility in persons with chronic neurological conditions : A case series" 35 (35): 141-147, 2011

      32 Plummer P, "Effects of stroke severity and training duration on locomotor recovery after stroke : A pilot study" 21 (21): 137-151, 2007

      33 Goldstein LB, "Effect of constraint-induced movement therapy on upper extremity function 3 to 9 months after stroke : The excite trial" 9 (9): 259-260, 2007

      34 배윤희, "Effect of Motor Control Training with Strengthening Exercises on Pain and Muscle Strength of Patients with Shoulder Impingement Syndrome" 대한물리치료학회 23 (23): 1-7, 2011

      35 Lang CE, "Counting repetitions : An observational study of outpatient therapy for people with hemiparesis post-stroke" 31 (31): 3-10, 2007

      36 Mark VW, "Constraint-induced movement therapy for chronic stroke hemiparesis and other disabilities" 22 (22): 317-336, 2004

      37 Liu W, "Bilateral subthalamic stimulation improves gait initiation in patients with parkinson's disease" 23 (23): 492-498, 2006

      38 Lam T, "A systematic review of the efficacy of gait rehabilitation strategies for spinal cord injury" 13 (13): 32-57, 2007

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2028 평가예정 재인증평가 신청대상 (재인증)
      2022-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2019-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2016-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2015-03-31 학회명변경 영문명 : The Korean Society of Physical Therapy -> The Journal of Korean Physical Therapy KCI등재
      2012-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2011-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2010-01-01 평가 등재후보학술지 유지 (등재후보1차) KCI등재후보
      2008-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
      2007-07-06 학회명변경 영문명 : The Korean Society Of Physical Therapy -> The Korean Society of Physical Therapy
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.89 0.89 0.78
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.72 0.67 0.431 0.22
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