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      척수손상인의 일반적 특성에 따른 체력적 특징과 운동 전략 = Physical Fitness and Exercise Strategy According to General Characteristics of Spinal Cord Injured Person

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      https://www.riss.kr/link?id=A106238796

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      PURPOSE: Spinal cord injuries cause a decrease in overall body function after spinal cord injury. The physical fitness of the spinal cord injured person varies greatly depending on the level of injury, physical activity, and the use of a wheelchair. T...

      PURPOSE: Spinal cord injuries cause a decrease in overall body function after spinal cord injury. The physical fitness of the spinal cord injured person varies greatly depending on the level of injury, physical activity, and the use of a wheelchair. Therefore, exercise prescription programs that take into account the type of disability of the spinal cord injuries will help improve physical fitness. The purpose of this study was to identify the physical characteristics of spinal cord injured people by examining previous studies and to suggest strategies for applying effective exercise programs.
      METHODS: This study was conducted to investigate previous studies and to present the physical characteristics of spinal cord injuries according to spinal cord injury level, physical activity level and wheelchair use, and to determine the appropriate exercise test method and effective exercise prescription strategy.
      RESULTS: This study suggested the exercise test method considering the physical characteristics of the spinal cord injured people and the NMES exercise program for the cardiorespiratory capacity enhancement exercise program and the NMES exercise program for the prevention of the lower extremity muscle activity.
      CONCLUSIONS: The application of a customized exercise prescription program for spinal cord injuries would have a positive effect on the prevention of secondary complications due to spinal cord injury and improvement of the quality of life of people with spinal cord injury. Based on the results of this study, we expect that the scientific exercise prescription program will be applied to people with spinal cord injuries.

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      참고문헌 (Reference)

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      2 이근호, "남자 국가대표 지체장애인 선수의 장애유형별 등척성 상지근력에 관한 연구" 한국체육과학회 21 (21): 1159-1168, 2012

      3 신진희, "규칙적인 유산소 운동이 대사증후군 환자의 건강관련 삶의 질에 미치는 효과" 대한비만학회 17 (17): 182-187, 2008

      4 이근호, "국가대표 척수손상 선수의 손상수준 및 참여운동종목에 따른 심폐능력과 주관절 근력 비교" 한국특수체육학회 24 (24): 1-11, 2016

      5 Centers for Disease Control and Prevention, "What you should know about spinal cord injuries" 7 (7): 74-75, 2001

      6 Knechtle B, "Treadmill exercise testing with increasing inclination as exercise protocol for wheelchair athletes" 39 (39): 633-, 2001

      7 Mitsui T, "Transplantation of neuronal and glial restricted precursors into contused spinal cord improves bladder and motor functions, decreases thermal hypersensitivity and modifies intraspinal circuitry" 25 (25): 9624-9636, 2005

      8 Bayley JC, "The weight-bearing shoulder. The impingement syndrome in paraplegics" 69 (69): 676-678, 1987

      9 Ballinger DA, "The relation of shoulder pain and range-of-motion problems to functional limitations, disability, and perceived health of men with spinal cord injury : a multifaceted longitudinal study" 81 (81): 1575-1581, 2000

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      1 이근호, "척수손상 장애인의 휠체어 이용이 상지 근 기능과 근 단면적에 미치는 영향" 대한스포츠의학회 36 (36): 24-33, 2018

      2 이근호, "남자 국가대표 지체장애인 선수의 장애유형별 등척성 상지근력에 관한 연구" 한국체육과학회 21 (21): 1159-1168, 2012

      3 신진희, "규칙적인 유산소 운동이 대사증후군 환자의 건강관련 삶의 질에 미치는 효과" 대한비만학회 17 (17): 182-187, 2008

      4 이근호, "국가대표 척수손상 선수의 손상수준 및 참여운동종목에 따른 심폐능력과 주관절 근력 비교" 한국특수체육학회 24 (24): 1-11, 2016

      5 Centers for Disease Control and Prevention, "What you should know about spinal cord injuries" 7 (7): 74-75, 2001

      6 Knechtle B, "Treadmill exercise testing with increasing inclination as exercise protocol for wheelchair athletes" 39 (39): 633-, 2001

      7 Mitsui T, "Transplantation of neuronal and glial restricted precursors into contused spinal cord improves bladder and motor functions, decreases thermal hypersensitivity and modifies intraspinal circuitry" 25 (25): 9624-9636, 2005

      8 Bayley JC, "The weight-bearing shoulder. The impingement syndrome in paraplegics" 69 (69): 676-678, 1987

      9 Ballinger DA, "The relation of shoulder pain and range-of-motion problems to functional limitations, disability, and perceived health of men with spinal cord injury : a multifaceted longitudinal study" 81 (81): 1575-1581, 2000

      10 Wilk KE, "The modified sleeper stretch and modified cross-body stretch to increase shoulder internal rotation range of motion in the overhead throwing athlete" 43 (43): 891-894, 2013

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      12 Leicht CA, "The effects of a respiratory warm-up on the physical capacity and ventilatory response in paraplegic individuals" 110 (110): 1291-1298, 2010

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      22 Al-Rahamneh HQ, "Prediction of peak oxygen consumption from the ratings of perceived exertion during a graded exercise test and ramp exercise test in able-bodied participants and paraplegic persons" 92 (92): 277-283, 2011

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      34 Hortobágyi T, "Neural adaptations to electrical stimulation strength training" 111 (111): 2439-2449, 2011

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      36 Umezu Y, "Muscle endurance and power spectrum of the triceps brachii in wheelchair marathon racers with paraplegia" 41 (41): 511-, 2003

      37 Baldi JC, "Muscle atrophy is prevented in patients with acute spinal cord injury using functional electrical stimulation" 36 (36): 463-, 1998

      38 Wilson TM, "Meta-analysis of the age-associated decline in maximal aerobic capacity in men : relation to training status" 278 (278): 829-834, 2000

      39 Monroe MB, "Lower daily energy expenditure as measured by a respiratory chamber in subjects with spinal cord injury compared with control subjects" 68 (68): 1223-1227, 1998

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      41 Wei M, "Low cardiorespiratory fitness and physical inactivity as predictors of mortality in men with type 2 diabetes" 132 (132): 605-611, 2000

      42 Hicks AL, "Longterm exercise training in persons with spinal cord injury : effects on strength, arm ergometry performance and psychological well-being" 41 (41): 34-, 2003

      43 Dallmeijer AJ, "Lipid, lipoprotein, and apolipoprotein profiles in active and sedentary men with tetraplegia" 78 (78): 1173-1176, 1997

      44 Bernard PL, "Isokinetic shoulder rotator muscles in wheelchair athletes" 42 (42): 222-, 2004

      45 Gondin J, "Is high-frequency neuromuscular electrical stimulation a suitable tool for muscle performance improvement in both healthy humans and athletes?" 111 (111): 2473-, 2011

      46 Elder CP, "Intramuscular fat and glucose tolerance after spinal cord injury–a cross-sectional study" 42 (42): 711-, 2004

      47 Kirshblum SC, "International standards for neurological classification of spinal cord injury (revised 2011)" 34 (34): 535-546, 2011

      48 Bernard PL, "Influence of lesion level on the cardioventilatory adaptations in paraplegic wheelchair athletes during muscular exercise" 38 (38): 16-, 2000

      49 Castro MJ, "Influence of complete spinal cord injury on skeletal muscle within 6 mo of injury" 86 (86): 350-358, 1999

      50 Scremin AM, "Increasing muscle mass in spinal cord injured persons with a functional electrical stimulation exercise program" 80 (80): 1531-1536, 1999

      51 Neder JA, "Home based neuromuscular electrical stimulation as a new rehabilitative strategy for severely disabled patients with chronic obstructive pulmonary disease(COPD)" 57 (57): 333-337, 2002

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      53 Duckworth WC, "Glucose intolerance due to insulin resistance in patients with spinal cord injuries" 29 (29): 906-910, 1980

      54 Griffin L, "Functional electrical stimulation cycling improves body composition, metabolic and neural factors in persons with spinal cord injury" 19 (19): 614-622, 2009

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      56 Gibbons RS, "FES-rowing in tetraplegia : a preliminary report" 52 (52): 880-, 2014

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      59 Filipovic A, "Electromyostimulation—a systematic review of the influence of training regimens and stimulation parameters on effectiveness in electromyostimulation training of selected strength parameters" 25 (25): 3218-3238, 2011

      60 Kaplan RE, "Electrical foot stimulation and implications for the prevention of venous thromboembolic disease" 88 (88): 200-204, 2002

      61 Bogie KM, "Effects of regular use of neuromuscular electrical stimulation on tissue health" 40 (40): 469-476, 2003

      62 Rosa DP, "Effects of a stretching protocol for the pectoralis minor on muscle length, function, and scapular kinematics in individuals with and without shoulder pain" 30 (30): 20-29, 2017

      63 Weld KJ, "Differences in bladder compliance with time and associations of bladder management with compliance in spinal cord injured patients" 163 (163): 1228-1233, 2000

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      69 Jacobs PL, "Circuit training provides cardiorespiratory and strength benefits in persons with paraplegia" 33 (33): 711-717, 2001

      70 Mahoney ET, "Changes in skeletal muscle size and glucose tolerance with electrically stimulated resistance training in subjects with chronic spinal cord injury" 86 (86): 1502-1504, 2005

      71 Dallmeijer AJ, "Changes in lipid, lipoprotein and apolipoprotein profiles in persons with spinal cord injuries during the first 2 years post-injury" 37 (37): 96-, 1999

      72 JackSon AS, "Changes in aerobic power of men, ages 25-70 yr" 27 (27): 113-120, 1995

      73 Schmid A, "Catecholamines, heart rate, and oxygen uptake during exercise in persons with spinal cord injury" 85 (85): 635-641, 1998

      74 Steinberg LL, "Catecholamine response to exercise in individuals with different levels of paraplegia" 33 (33): 913-918, 2000

      75 Ryan TE, "Case report : endurance electrical stimulation training improves skeletal muscle oxidative capacity in chronic spinal cord injury" 94 (94): 2559-2561, 2013

      76 Ryan TE, "Case report : endurance electrical stimulation training improves skeletal muscle oxidative capacity in chronic spinal cord injury" 94 (94): 2559-2561, 2013

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      89 Lee MH, "A review of lateral epicondylitis" 11 (11): 108-118, 2005

      90 Johnston TE, "A randomized controlled trial on the effects of cycling with and without electrical stimulation on cardiorespiratory and vascular health in children with spinal cord injury" 90 (90): 1379-1388, 2009

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      연월일 이력구분 이력상세 등재구분
      2026 평가예정 재인증평가 신청대상 (재인증)
      2020-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2017-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2013-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-03-21 학회명변경 한글명 : 한국운동과학회 -> 한국운동생리학회
      영문명 : Korea Exercise Science Academy -> Korean Society of Exercise Physiology
      KCI등재
      2005-03-21 학회명변경 한글명 : 한국운동과학회 -> 한국운동생리학회
      영문명 : Korea Exercise Science Academy -> Korean Society of Exercise Physiology
      KCI등재
      2003-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2002-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2001-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.76 0.76 0.67
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.62 0.71 0.674 0.03
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