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      코어 안정화를 위한 운동의 효과 비교: 복부 드로우 인 기법, 최대 호기, 케겔 운동 = Which exercise is the most effective to contract the core muscles: abdominal drawing-in maneuver, maximal expiration, or Kegel exercise?

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      https://www.riss.kr/link?id=A101805773

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      다국어 초록 (Multilingual Abstract)

      PURPOSE: There are several methods, such as the abdominal drawing-in maneuver (ADIM), maximal expiration (ME), and Kegel exercise, to strengthen the core muscles. However, to date no study has been conducted to compare the effects of the ADIM, ME, and...

      PURPOSE: There are several methods, such as the abdominal drawing-in maneuver (ADIM), maximal expiration (ME), and Kegel exercise, to strengthen the core muscles. However, to date no study has been conducted to compare the effects of the ADIM, ME, and Kegel exercise on the transverses abdominis (TrA), internal oblique (IO), external oblique (EO), and pelvic floor muscles (PFMs). The purpose of this study was to find out which of the three aforementioned exercises is most effective for contracting the core muscles. METHODS: The thickness of the TrA, IO, EO and PFMs was measured by ultrasonographic imaging during the ADIM, ME and Kegel exercise in 34 healthy participants. RESULTS: There was the significant difference between ADIM and Kegel exercise in the thickness of the TrA (p<0.05). There were the significant differences between ADIM and ME and between ME and Kegel exercise in the thickness of the IO and PFM (p<0.01). There was no significant activation in the thickness of the EO (p>0.05). Measurement reliability was assessed using intraclass correlation coefficients (ICC) and the standard error of measurement (SEM). An ICC value of >0.77 indicated that reliability measurements was good. CONCLUSION: Kegel exercise was the most effective exercise for the TrA and the PFM, and ME was the most effective exercise for the IO muscles.

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      참고문헌 (Reference)

      1 하유, "초음파 영상을 이용한 교각운동 시 복부 드로잉-인 운동이 복부 근육의 두께에 미치는 영향" 대한물리의학회 8 (8): 231-238, 2013

      2 김진희, "영상피드백을 적용한 골반저근 수축이 복부 근 두께에 미치는 영향" 대한물리의학회 7 (7): 533-539, 2012

      3 Whittaker JL, "Ultrasound imaging and muscle function" 41 (41): 572-580, 2011

      4 Richardson C, "Therapeutic exercise for spinal segmental stabilization in low back pain:scientific basis and clinical approach" Churchill Livingstone 1999

      5 Teyhen DS, "The use of ultrasound imaging of the abdominal drawing-in maneuver in subjects with low back pain" 35 (35): 346-355, 2005

      6 Behm DG, "The use of instability to train the core musculature" 35 (35): 91-108, 2010

      7 Arab AM, "The response of the abdominal muscles to pelvic floor muscle contraction in women with and without stress urinary incontinence using ultrasound imaging" 30 (30): 117-120, 2011

      8 Richardson CA, "The relation between the transversus abdominis muscles, sacroiliac joint mechanics, and low back pain" 27 (27): 399-405, 2002

      9 Frawley HC, "Reliability of pelvic floor muscle strength assessment using different test positions and tools" 25 (25): 236-242, 2006

      10 Sapsford R, "Rehabilitation of pelvic floor muscles utilizing trunk stabilization" 9 (9): 3-12, 2004

      1 하유, "초음파 영상을 이용한 교각운동 시 복부 드로잉-인 운동이 복부 근육의 두께에 미치는 영향" 대한물리의학회 8 (8): 231-238, 2013

      2 김진희, "영상피드백을 적용한 골반저근 수축이 복부 근 두께에 미치는 영향" 대한물리의학회 7 (7): 533-539, 2012

      3 Whittaker JL, "Ultrasound imaging and muscle function" 41 (41): 572-580, 2011

      4 Richardson C, "Therapeutic exercise for spinal segmental stabilization in low back pain:scientific basis and clinical approach" Churchill Livingstone 1999

      5 Teyhen DS, "The use of ultrasound imaging of the abdominal drawing-in maneuver in subjects with low back pain" 35 (35): 346-355, 2005

      6 Behm DG, "The use of instability to train the core musculature" 35 (35): 91-108, 2010

      7 Arab AM, "The response of the abdominal muscles to pelvic floor muscle contraction in women with and without stress urinary incontinence using ultrasound imaging" 30 (30): 117-120, 2011

      8 Richardson CA, "The relation between the transversus abdominis muscles, sacroiliac joint mechanics, and low back pain" 27 (27): 399-405, 2002

      9 Frawley HC, "Reliability of pelvic floor muscle strength assessment using different test positions and tools" 25 (25): 236-242, 2006

      10 Sapsford R, "Rehabilitation of pelvic floor muscles utilizing trunk stabilization" 9 (9): 3-12, 2004

      11 Kegel AH, "Progressive resistance exercise in the functional restoration of the perineal muscles" 56 (56): 238-248, 1948

      12 Urquhart DM, "Postural activity of the abdominal muscles varies between regions of these muscles and between body positions" 22 (22): 295-301, 2005

      13 Mannion AF, "Muscle thickness changes during abdominal hollowing : an assessment of between-day measurement error in controls and patients with chronic low back pain" 17 (17): 494-501, 2008

      14 Richardson CA, "Muscle control-pain control. What exercises would you prescribe?" 1 (1): 2-10, 1995

      15 Hodges PW, "Measurement of muscle contraction with ultrasound imaging" 27 (27): 682-692, 2003

      16 Hodges PW, "Is there a role for transversus abdominis in lumbo-pelvic stability?" 4 (4): 74-86, 1999

      17 Critchley D, "Instructing pelvic floor contraction facilitates transversus abdominis thickness increase during low-abdominal hollowing" 7 (7): 65-75, 2002

      18 Portney LG, "Foundations of clinical research:Applications to practice" Prentice Hall Inc. 2009

      19 Hodges PW, "Feedforward contraction of transversus abdominis is not influenced by the direction of arm movement" 114 (114): 362-370, 1997

      20 Crisco JJ, "Euler stability of the human ligamentous lumbar spine. Part II:Experiment" 7 (7): 27-32, 1992

      21 Abe T, "Differential respiratory activity of four abdominal muscles in humans" 80 (80): 1379-1389, 1996

      22 Huxel Bliven KC, "Core stability training for injury prevention" 5 (5): 514-522, 2013

      23 Marshall PW, "Core stability exercises on and off a Swiss ball" 86 (86): 242-249, 2005

      24 Akuthota V, "Core stability exercise principles" 7 (7): 39-44, 2008

      25 Sapsford RR, "Contraction of the pelvic floor muscles during abdominal maneuvers" 82 (82): 1081-1088, 2001

      26 Hodges PW, "Contraction of the abdominal muscles associated with movement of the lower limb" 77 (77): 132-142, 1997

      27 Ishida H, "Comparison of changes in the contraction of the lateral abdominal muscles between the abdominal drawing-in maneuver and breathe held at the maximum expiratory level" 17 (17): 427-431, 2012

      28 Sapsford RR, "Co-activation of the abdominal and pelvic floor muscles during voluntary exercises" 20 (20): 31-42, 2001

      29 Ferreira PH, "Changes in recruitment of the abdominal muscles in people with low back pain : ultrasound measurement of muscle activity" 29 (29): 2560-2566, 2004

      30 Beazell JR, "Changes in lateral abdominal muscle thickness during an abdominal drawing-in maneuver in individuals with and without low back pain" 19 (19): 271-282, 2011

      31 Kennedy B, "An Australian programme for management of back problems" 66 (66): 108-111, 1980

      32 Rankin G, "Abdominal muscle size and symmetry in normal subjects" 34 (34): 320-326, 2006

      33 Urquhart DM, "Abdominal muscle recruitment during a range of voluntary exercises" 10 (10): 144-153, 2005

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      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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      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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