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      인체 척추움직임의 정량적 관측을 위한 운동학적 해석연구 = Analysis of spine motion fo r quantitative interpretation in SCS (spine coordinate system)

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      https://www.riss.kr/link?id=A99691893

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      다국어 초록 (Multilingual Abstract)

      The purpose of this study was to compare and investigate the three spine models of three-dimensional kinematic spine motion during trunk movements in free normal gait by developing the spine coordinate system. A retro-reflective motion analysis system was used to measure spine motions, using three kinematic trunk models(Model I : one rigid, spine, Model II: lumbar-thoracic spine, and ModelⅢ: multi-segmental spine). Fifteen middle and high school students(age: 16.6+1.51 yrs, heights: 157±5.96 cm, weights: 45.5±4.88 kg) who have the idiopathic scoliosis were recruited as the subjects.
      Significant differences were noted m the total trunk motion measured between the three models. First, there was significant difference of the side-bending(p<.05) in sagittal plane during Post-hoc analysis of the ANOVA results for the three spine models. Second, the spinal column level of trunk motions revealed an differences of angular displacement during ROM(rang of motion) in frontal plane, sagittal plane and transverse plane of the multi-segmental model. These findings suggest that use of multi-segmental model provides the most interpretable findings, that is the combined movements and the couple movements allowing for differentiation of translation and rotation of x, y, 2 of three dimension in individual motion patterns.
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      The purpose of this study was to compare and investigate the three spine models of three-dimensional kinematic spine motion during trunk movements in free normal gait by developing the spine coordinate system. A retro-reflective motion analysis system...

      The purpose of this study was to compare and investigate the three spine models of three-dimensional kinematic spine motion during trunk movements in free normal gait by developing the spine coordinate system. A retro-reflective motion analysis system was used to measure spine motions, using three kinematic trunk models(Model I : one rigid, spine, Model II: lumbar-thoracic spine, and ModelⅢ: multi-segmental spine). Fifteen middle and high school students(age: 16.6+1.51 yrs, heights: 157±5.96 cm, weights: 45.5±4.88 kg) who have the idiopathic scoliosis were recruited as the subjects.
      Significant differences were noted m the total trunk motion measured between the three models. First, there was significant difference of the side-bending(p<.05) in sagittal plane during Post-hoc analysis of the ANOVA results for the three spine models. Second, the spinal column level of trunk motions revealed an differences of angular displacement during ROM(rang of motion) in frontal plane, sagittal plane and transverse plane of the multi-segmental model. These findings suggest that use of multi-segmental model provides the most interpretable findings, that is the combined movements and the couple movements allowing for differentiation of translation and rotation of x, y, 2 of three dimension in individual motion patterns.

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      목차 (Table of Contents)

      • Abstract
      • I. 서론
      • II. 연구방법
      • III. 결과
      • IV. 논의
      • Abstract
      • I. 서론
      • II. 연구방법
      • III. 결과
      • IV. 논의
      • V. 결론
      • 참고문헌
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      참고문헌 (Reference)

      1 Pruss, R. A., "Three-dimensional spine kinematics during multidirectional, target-directed trunk movement in sitting" 20 : 823-832, 2010

      2 Yeadon, M. R., "The simulation of aerial movement-II. A mathematical inertia model of the human body" 23 : 67-74, 1990

      3 Newcomer, K., "The effects of a lumbar support on repositioning error in subjects with low back pain" 82 : 906-910, 2001

      4 Swinkels, A., "Regional assessment of joint position sense in the spine" 23 : 590-597, 1998

      5 Arjmand, N., "Predictive equations to estimate spinal loads in symmetric Lifting tasks" 44 : 84-91, 2011

      6 Beaulieu, M., "Postural control in non-treated scoliotic subjects" 21 (21): 83-, 2005

      7 Lafond, D., "Postural control during prolonged standing in persons with chronic low back pain" 29 (29): 421-427, 2009

      8 Crosbie, J., "Patterns of spinal motion during walking" 5 : 6-12, 1997

      9 Preuss, R., "Musculature and biomechanics of the trunk in the maintenance of upright posture" 18 : 815-828, 2008

      10 Russell, P., "Measurement of the range and coupled movements observed in the lumbar spine" 32 : 490-497, 1993

      1 Pruss, R. A., "Three-dimensional spine kinematics during multidirectional, target-directed trunk movement in sitting" 20 : 823-832, 2010

      2 Yeadon, M. R., "The simulation of aerial movement-II. A mathematical inertia model of the human body" 23 : 67-74, 1990

      3 Newcomer, K., "The effects of a lumbar support on repositioning error in subjects with low back pain" 82 : 906-910, 2001

      4 Swinkels, A., "Regional assessment of joint position sense in the spine" 23 : 590-597, 1998

      5 Arjmand, N., "Predictive equations to estimate spinal loads in symmetric Lifting tasks" 44 : 84-91, 2011

      6 Beaulieu, M., "Postural control in non-treated scoliotic subjects" 21 (21): 83-, 2005

      7 Lafond, D., "Postural control during prolonged standing in persons with chronic low back pain" 29 (29): 421-427, 2009

      8 Crosbie, J., "Patterns of spinal motion during walking" 5 : 6-12, 1997

      9 Preuss, R., "Musculature and biomechanics of the trunk in the maintenance of upright posture" 18 : 815-828, 2008

      10 Russell, P., "Measurement of the range and coupled movements observed in the lumbar spine" 32 : 490-497, 1993

      11 Hsu, C., "Measurement of spinal range of motion in healthy individuals using an electromagnetic tracking device" 8 : 135-142, 2008

      12 White, M. W., "Measurement of lumbar lordosis as a component of clinical gait analysis" 5 : 101-107, 1997

      13 Carlson, H., "Lumbar back muscle activity during locomotion : Effects of voluntary odifications of normal trunk movements" 133 : 343-353, 1988

      14 Allison, G., "Estimating three-dimensional spinal repositioning error: the impact of range, posture, and number of trials" 28 : 2510-2516, 2003

      15 Goodvin, C., "Development of a real-time three-dimensional spine motion measurement system for clinical parctice" 44 : 1061-1075, 2006

      16 Faber, M. J., "Determination of 3D spinal kinematics without defining a local vertebral coordinate system" 32 : 355-1358, 1996

      17 Mackinnon, C. D., "Control of whole body balance in the frontal plane during human walking" 26 (26): 633-644, 1993

      18 White, A. A., "Clinical Biomechanics of the Spine" J.B. Lippincott, the SRS Terminology Committee 1999

      19 Willems, J., "An in vivo study of the primary and coupled rotations of the thoracic spine" 11 : 311-316, 1996

      20 Gracovetsky, S., "An hypothesis for the pole of the spine in human locomotion: a challenge to current thinking" 7 : 205-216, 1985

      21 Ginsberg, J. H., "Advanced engineering dynamics" Press 1998

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
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      학술지 인용정보

      학술지 인용정보
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      2016 0.66 0.66 0.67
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.66 0.66 0.593 0.18
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