• 제목/요약/키워드: Swing Arm

검색결과 87건 처리시간 0.021초

팔걸이 형태에 따른 편마비 환자의 보행 변수 및 비마비측 견갑대의 근활성도 변화 (The Variations in Gait Parameters and the Muscle Activities on the Non-Affected Side of the Shoulder Girdle According to Arm Sling Type in Patients with Hemiplegia)

  • 이옥경;안덕현;유원규;오재섭;윤지연
    • 한국전문물리치료학회지
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    • 제17권3호
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    • pp.77-86
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    • 2010
  • The purpose of this study was to investigate the variations in gait parameters in terms of the type of arm sling used in hemiplegic patients. Ten patients with hemiplegia and ten healthy adults participated in this study and walked at self-selected speeds on a GAITRite-instrumented carpet. The activities of the opposite shoulder girdle muscle including the latissimus dorsi, anterior deltoid, and posterior deltoid were simultaneously recorded using surface EMG during gait. They were randomly assigned a condition: without an arm sling, a single strap arm sling, a Harris hemi arm sling, a Rolyan humeral cuff arm sling, and a Bobath roll arm sling. The following gait variables were analyzed: the temporo-spatial parameters of velocity, step length, stride length, swing phase, stance phase, single support, step time and toe in/toe out. The statistical analysis was one-way ANOVA with repeated measures to compare the variation of each variable. In comparison of parameters in each trial in the hemiplegia group, the non-affected side stride length, single support, and toe in/toe out resulted in statistically significantly changes (p<.05). But without an arm sling group did not show any gait parameter differences with arm slings. This study found that several arm slings varied gait patterns in patients with hemiplegia and in healthy adults. In the EMG analysis, the Rolyan humeral cuff arm sling and the Bobath roll arm sling were higher muscle activity for the latissimus dorsi muscle than did the single strap ann sling. Further study should examine the problems that appeared in patients who worn arm slings by focusing on a larger number of subjects and by studying the variety of responses in more detail using an assessment tool that measures variation.

팔 흔들기 강화운동과 발목 신장운동이 뇌졸중 환자의 균형과 보행속도에 미치는 영향 (The effects of arm swing strength and ankle stretching exercise on gait velocity and balance in stroke patients)

  • 마준석;김현주
    • 한국콘텐츠학회:학술대회논문집
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    • 한국콘텐츠학회 2015년도 춘계 종합학술대회 논문집
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    • pp.299-300
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    • 2015
  • 본 연구에서는 뇌졸중 환자를 대상으로 팔 흔들기 강화운동과 발목 신장운동을 실시한 실험군이 일반적인 물리치료를 실시한 대조군보다 균형과 보행속도가 향상됨을 검증하였으며, 재활치료에 있어서 하나의 중재방법이 될 수 있음을 제안한다.

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테니스 양손 백핸드 스트로크 방법에 따른 어깨와 힙의 회전운동 변화 (Change in Rotational Motion of the Shoulder and Hip According to the Method Used for a 2-Handed Backhand Stroke in Tennis)

  • 강상학
    • 한국운동역학회지
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    • 제21권1호
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    • pp.39-46
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    • 2011
  • The purpose of this study was to examine differences between players who bend the left elbow and those who stretch it during the forward swing from BST to BC in a 2-handed backhand stroke among outstanding high school tennis players, and to assess the detailed 3D rotational kinematic characteristics of the shoulder and the hip. Statistically significant differences were observed between groups in the longitudinal axis rotation angle of the shoulder and the angle between the shoulder and the arm at BST, and in the side to side movement of the shoulder, the up and down movement of the hip, the side tilt angular velocity of the shoulder, the side tilt angular velocity of the hip, and the front tilt angular velocity of the hip at BC. The difference in the longitudinal axis rotation angle of the shoulder between the 2 groups suggests a difference in the flexibility of the joint in the shoulder arm racquet system. The longitudinal axis rotation angular velocity of the shoulder reached its peak at 75 % of the duration of the analyzed segment and then decreased little by little until BC. This time is considered the stage for increasing the angular velocity of the upper arm, the forearm, the hand and then the racquet, which are more distal segments than the shoulder.

골프 클럽에 따른 타격자세의 변화 (Changes of Impact Variables by the Change of Golf Club Length)

  • 성낙준
    • 한국운동역학회지
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    • 제15권4호
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    • pp.181-189
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    • 2005
  • To know the proper impact posture and changes for the various clubs, changes of impact variables according to the change of golf club length was investigated. Swing motions of three male low handicappers including a professional were taken using two high-speed video cameras. Four clubs iron 7, iron 5, iron 3 and driver (wood 1) were selected for this experiment. Three dimensional motion analysis techniques were used to get the kinematical variables. Mathcad and Kwon3D motion analysis program were used to analyze the position, distance and angle data in three dimensions. Major findings of this study were as follows. 1. Lateral position of the head remained more right side of the target up to 3.5cm compared to the setup as the length of the club increased. 2. Left shoulder raised up to 5cm and right shoulder lowered up to 2.5cm compared to setup. The shoulder line opened slightly (maximum 11 degrees) to the target line. 3. Forward lean angle of the trunk decreased up to 4 degrees (more erected) compared to setup. 4. Side lean angle of the trunk increased compared to setup and increased up to 16 degrees as the club length increased. 5. The pelvis moved to the target line direction horizontally and opened up to 31 degrees. Right hip moves laterally to the grip position at the setup. 6. Flexion of the left leg maintained almost constantly but the right leg flexed up to 11 degrees compared to setup. 7. Left arm is straightened but the right arm flexed about 20degrees compared to straight. 8. Center of the shoulders were in front of the knees and toes of the feet. 9. Hands moved to the left (8.7cm), forward (5.7cm) and upward (11.6cm) compared to the setup. This is because of the rotation of pelvis and shoulders. 10. Shaft angle to the ground was smaller than the lie angle of the clubs but it increased close to the lie of the clubs at impact.

평행봉 뒤 휘돌리기 동작의 운동학적 분석 (Kinematic Analysis on Giant Swing Backward to Handstand on Parallel Bars)

  • 안완식
    • 한국운동역학회지
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    • 제14권2호
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    • pp.27-40
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    • 2004
  • The objective of this study is to identify the kinematic variables of giant swing backward to handstand as well as individual variations of each athlete performing this skill, which in turn will provide the basis for developing suitable training methods and for improving athlete's performance in actual games. For this end, 3 male athletes, members of the national team, who are in ${\Box}{\Box}H{\Box}{\Box}$ University, have been randomly chosen and their giant swing backward to handstand performance was recorded using two digital cameras and analyzed in 3 dimensional graphics. This study came to the following conclusion. 1. Proper time allocation for giant swing backward to handstand are: Phase 1 should provide enough time to attain energy for swing track of a grand round movement. The phase 3 is to throw the body up high in the air and stay in the air as long as possible to smoothen up the transition to the next stage and the phase 4 should be kept short with the moment arm coefficient of the body reduced. 2. As for appropriate changes of locations of body center, the phase 1 should be comprised of horizontal, perpendicular, compositional to make up a big rotational radius. Up to the Phase 3 the changes of displacements of vertical locations should be a good scale and athlete's body should go up high quickly to increase the perpendicular climbing power 3. When it comes to the speed changes of body center, the vertical and horizontal speed should be spurred by the reaction of the body in Phase 2 and Phase 3. In the Phase 4, fast vertical speed throws the body center up high to ensure enough time for in-the-air movement. 4. The changes of angles of body center are: in Phase 2, shoulder joint is stretching and coxa should be curved up to utilize the body reaction. In the Phase 4, shoulder joint and coxa should be stretched out to get the body center as high as possible in the air for stable landing. 5. The speeds of changes in joints angles are: in the Phase 2 should have the speed of angles of shoulder joints increase to get the body up in the air as quickly as possible. The Phase 3 should have the speed of angles in shoulder joint slow down, while putting the angles of a knee joint up to speed as quickly as possible to ensure enough time for in-the-air movement.

절단장애 휠체어 탁구 스트로크의 운동학적 분석 (The Kinematics Analysis of Abscission Handicap Wheelchair Table Tennis)

  • 문건필;임정
    • 한국운동역학회지
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    • 제18권3호
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    • pp.51-59
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    • 2008
  • 본 연구는 국가대표 절단장애 휠체어 탁구선수를 대상으로 절단장애 휠체어 탁구의 일반적 스트로크 운동형태를 알아보기 위해 실행되었다. 연구대상은 절단장애 1명을 선발하여 10회에 걸쳐 스트로크 하는 영상을 수집하였다. 그 중 대상자와 코치가 지정하는 3개의 영상을 연구대상으로 정하였다. 스트로크 하는 팔의 팔꿈치의 굴곡신전, 어깨의 굴곡신전, 어깨의 회전, 그리고 허리의 회전을 분석하였다. 포핸드 스트로크는 일반적으로 치는 듯한 동작을 나타낼 것으로 예상했으나 오른팔의 외측회전으로 만들어진 백스윙과 내측회전으로 만들어지는 회전에 의지하여 스트로크하고 있었다. 백핸드 스트로크는 예상대로 기시부인 몸통이 스트로크에 관여하지 않고 말초부인 오른팔이 내측회전 백스윙을 이루고 외측회전으로 임팩트를 이루는 미는 듯한 동작을 나타내고 있었다. 포핸드 스트로크 일반적인 스윙동작을 나타내는 다중분절시스템의 원리에 의해 치는 듯한 동작을 보일 것으로 예상했지만 절단장애인인 대상자는 기시부와 말초부로 이어지는 연결구조가 명확하게 나타나지 않았다. 다만 어깨의 회전폭이 스트로크 성공여부를 결정지었다.

탁구 포핸드 카운터 드라이브 동작의 운동학적 변인 및 지면 반력 분석 (Kinematic and Ground Reaction Force Analyses of the Forehand Counter Drive in Table Tennis)

  • 이용식;이종훈
    • 한국운동역학회지
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    • 제20권2호
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    • pp.155-165
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    • 2010
  • The purpose of this study was to analyze kinematic quantitative factors required of a forehand counter drive in table tennis through 3-D analysis. Four national table tennis players participated in this study. The mean of elapsed time for total drive motion was $1.009{\pm}0.23\;s$. At the phase of impact B1 was the fastest as 0.075 s. This may affect efficiency in the initial velocity and spin of the ball by making a powerful counter drive. The pattern of center of mass showed that it moved back and returned to where it was then moved forward. At the back swing, lower stance made wide base of support and a stronger and safer stance. It may help increasing the ball spin. Angle of the elbow was extended up to $110.75{\pm}1.25^{\circ}$ at the back swing and the angle decreased by $93.75{\pm}3.51^{\circ}$ at impact. Decreased rotation range of swinging arm increased linear velocity of racket-head and impulse on the ball. Eventually it led more spin to the ball and maximized the ball speed. Angle of knee joint decreased from ready position to back swing, then increased from the moment of the impact and decreased at the follow thorough. The velocity of racket-head was the fastest at impact of phase 2. Horizontal velocity was $7796.5{\pm}362\;mm/s$ and vertical velocity was $4589.4{\pm}298.4\;mm/s$ at the moment. It may help increase the speed and spin of the ball in a moment. The means of each ground reaction force result showed maximum at the back swing(E2) except A2. Vertical ground reaction force means suggest that all males and females showed maximum vertical power(E2), The maximum power of means was $499.7{\pm}38.8\;N$ for male players and $519.5{\pm}136.7\;N$ for female players.

IV-TAP : 밸브트레인 통합 해석 프로그램 (IV-TAP : Integrated Valve Train system Analysis Program)

  • 김지영;조명래;신흥주;한동철
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 2000년도 제31회 춘계학술대회
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    • pp.258-262
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    • 2000
  • This paper reports on the development of the analysis program of the valve train system, IV-TAP. It is essential to verify the stability of the design and to improve the performance of the system. In order to do that effi챠ently, it is required that integrated and interactive simulation analysis program. IV-TAP is developed in the base of the object-oriented, capsulation, modulization, OLE(objected linking and embedding) and variational design theory. So it contain the expandability and flexibility of the structure. In additon to that, it is programed to make the convenient user interface by using the visualization programming. It can support the modification of the valve element as well as the development of the valve system in the beginning. It is expected to reduce the money and effort for design the valve train system.

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걸음걸이 인식을 위한 지배 요소 분석 (Analysis on Dominant Factor for Gait Recognition)

  • 박한훈;박종일
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2003년도 신호처리소사이어티 추계학술대회 논문집
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    • pp.321-324
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    • 2003
  • This paper presents a novel system that analyzes and recognizes a gait based on shape context on silhouette images. The main functions of the system consist of three steps: First, the system extracts the silhouette images from galt image sequence by performing a simple pre-processing and acquires the AGM(Averaged Gait Map) by averaging them. Next. it computes the cross-correlation between the AGMs. Finally, it classifies the AGMs based on the cross-correlation using nearest neighborhood classification. The proposed system uses two cues to classify a gait: One corresponds to biometric shape cue such as body height width. and body-part proportions. The other corresponds to gait cue such as stride length and amount of arm swing. Perceptionally, the biometric cues are sailent on the double support (both legs spread and touching the ground) while the gait cues on the midstance. Through a variety of experiments, it is proved that the property of a gait is mainly influenced by gait cues than biometric cues.

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PZT를 이용한 광 정보저장기기용 엑츄에이터의 추적제어 (Track following control of optical pick-up actuator using PZT)

  • 이우철;양현석;박노철;박영필
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2003년도 춘계학술대회 논문집
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    • pp.664-669
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    • 2003
  • This paper proposes a swing-arm type dual-stage actuator, which consists of a PZT actuator for fine motion and a VCM(Voice Coil Motor) for coarse motion, for SFF ODD(Small Form Factor Optical Disk Drive), in order to achieve fast access speed and precise track following control. We focus our attention on the design and control of the PZT actuator, because there have been a lot of previous researches related to the VCM and dual-stage actuators. Due to the dual cantilever structure, the PZT actuator can generate precise translational tracking motion at its tip where optical pickup is attached at, and the effect of hysteric behavior of the PZT element is reduced. The dynamic model of the PZT actuator is derived by using the Hamilton's principle, and verified by comparing with the experimental frequency response. The sliding mode control is designed in order to be robust against modeling uncertainties. Simulations and experimental results confirm the effectiveness of the suggested control scheme.

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