• 제목/요약/키워드: Forehand

검색결과 25건 처리시간 0.017초

테니스 포핸드 스트로크 시 오픈스탠스의 족저압력분포의 변화 (Change of Plantar Pressure Distribution of Open Stance during Forehand Stroke in Tennis)

  • 최지영;김승재;이의린
    • 한국운동역학회지
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    • 제15권1호
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    • pp.143-153
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    • 2005
  • J.Y. CHOI,S. J. KIM, E. L. LEE. Change of plantar pressure Distribution of Open Stance during Forehand Strke in Tennis. Korean Journal of Sport Biomechanics, Vol. 15, No. 1, PP. 143-153, 2005. Recently among several tennis techniques forehand stroke has been greatly changed in the aspect of spin, grip and stance. The most fundamental factor among the three factors is the stance which consists of open, square and close stance and it is very important to know the patterns of plantar pressure distribution for the better understanding of forehand stroke. Therefore, the purpose of this study was to investigate the change of plantar pressure distribution in open stance during forehand stroke in tennis. Three high school tennis players were recruited for the study and required to perform forehand stroke five consecutive trials in the condition of open stance. The forehand strokes were filmed with two digital video cameras and measured with pedar system for plantar pressure. The plantar regions under the foot were divided into 3 regions, which were forefoot, midfoot, and rear foot. In conclusion, The plantar pressure of open stance during forehand stroke was distributed more largely to the right foot. The plantar pressure of open stance during forehand stroke was distributed more weight loads on forefoot of right than heel of right

테니스 포핸드의 스탠스 유형에 따른 족저압력분포의 변화 (Change of Plantar Pressure Distribution according to Stance Patterns during Tennis Forehand)

  • 이태근;김승재;최지영
    • 한국운동역학회지
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    • 제15권2호
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    • pp.185-196
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    • 2005
  • Recently among several tennis techniques forehand stroke has been greatly changed in the aspect of spin, grip and stance. The most fundamental factor among the three factors is the stance which consists of open, square and closed stance and it is very important to know the patterns of plantar pressure distribution for the better understanding of forehand stroke. Therefore, the purpose of this study was to investigate the change of plantar pressure distribution according to close, square and open stance patterns during forehand stroke in tennis. Three high school tennis players were recruited for the study and required to perform forehand stroke five consecutive trials in the condition of open, square and close stance. The forehand strokes were filmed with two digital video cameras and measured with pedar system for plantar pressure. The plantar regions under the foot were divided into 3 regions, which were forefoot, midfoot, and rear foot.. In conclusion, the first hypothesis, "The plantar pressure of close stance during forehand stroke would be distributed more largely to the left foot.", was rejected and the result showed that The plantar pressure of close stance during forehand stroke was distributed transferring from right foot to left foot similar to square stance. The second hypothesis, "The plantar pressure of square stance during forehand stroke would be distributed transferring from right foot to left foot." was accepted. The third hypothesis, "The plantar pressure of open stance during forehand stroke would be distributed more largely to the right foot.", was accepted.

테니스 포핸드 스트로크 동안 스탠스 조건에 따른 3차원 운동학적 분석 (3-D Kinematic Analysis According to Stance Patterns During Forehand Stroke in Tennis)

  • 최지영
    • 한국운동역학회지
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    • 제15권4호
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    • pp.105-115
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    • 2005
  • Recently among several tennis techniques forehand stroke has been greatly changed in the aspect of spin, grip and stance. The most fundamental factor among the three factors is the stance which consists of open, square and closed stance. The purpose of this study was to investigate the relations between the segments of the body, the three dimensional anatomical angle according to open, close, and square stance patterns during forehand stroke in tennis. For the movement analysis three dimensional cinematographical method(APAS) was used and for the calculation of the kinematic variables a self developed program was used with the LabVIEW 6.1 graphical programming(Johnson, 1999) program. By using Eular's equations the three dimensional anatomical Cardan angles of the joint and racket head angle were defined. In conclusion, the first hypothesis, "In three dimensional maximum linear velocity of racket head would be significant difference among the stance patterns during forehand stroke in tennis" was rejected. The second hypothesis, "In three dimensional anatomical angular displacement of trunk would be significant difference among the stance patterns during forehand stroke in tennis" was rejected and the result showed that the internal-external rotation showed most important role among the three dimensional anatomical angular displacement of trunk The third hypothesis, "In three dimensional anatomical angular displacement of upperlimb would be significant difference among the stance patterns during forehand stroke in tennis" was rejected and the result showed that The three dimensional anatomical angular displacement of shoulder joint showed most important role in forehand stroke. Flexion-extension and internal-external rotation the open stance showed the largest angular displacement and is follwed by square stance and closed stance. The fourth hypothesis, "In three dimensional anatomical angular velocity of upperlimb would be significant difference among the stance patterns during forehand stroke in tennis" was rejected and the result showed that X-axis angular velocity and Z-axis angular velocity the square stance showed the largest angular velocity of the trunk and X-axis angular velocity and Y-axis angular velocity the closed stance showed the largest angular velocity of the shoulder joint.

테니스 포핸드 스트로크 동안 오픈스탠스 조건에 따른 3차원 운동학적 분석 (3-D Kinematic Analysis According to Open Stance Patterns During Forehand Stroke in Tennis)

  • 최지영;김로빈
    • 한국운동역학회지
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    • 제15권3호
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    • pp.161-173
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    • 2005
  • Recently among several tennis techniques forehand stroke has been greatly changed in the aspect of spin, grip and stance. The most fundamental factor among the three factors is the stance which consists of open, square and closed stance. The purpose of this study was to investigate the relations between the segments of the body, the three dimensional anatomical angle according to open stance patterns during forehand stroke in tennis. For the movement analysis three dimensional cinematographical method(APAS) was used and for the calculation of the kinematic variables a self developed program was used with the LabVlEW 6.1 graphical programming(Johnson, 1999) program. By using Eular's equations the three dimensional anatomical Cardan angles of the joint and racket head angle were defined 1. In three dimensional maximum linear velocity of racket head the X axis showed $11.41{\pm}5.27m/s$ at impact, not the Y axis(horizontal direction) and the z axis(vertical direction) maximum linear velocity of racket head did not show at impact but after impact this will resulted influence upon hitting ball It could be suggest that Y axis velocity of racket head influence on ball direction and z axis velocity influence on ball spin after impact. the stance distance between right foot and left foot was mean $74.2{\pm}11.2m$. 2. The three dimensional anatomical angular displacement of shoulder joint showed most important role in forehand stroke. and is followed by wrist joints, in addition the movement of elbow joints showed least to the stroke. The three dimensional anatomical angular displacement of racket increased flexion/abduction angle until the impact. after impact, The angular displacement of racket changed motion direction as extension/adduction. 3. The three dimensional anatomical angular displacement of trunk in flexion-extension showed extension all around the forehand stroke. The angular displacement of trunk in adduction-abduction showed abduction at the backswing top and adduction around impact. while there is no significant internal-external rotation 4. The three dimensional anatomical angular displacement of hip joint and knee joint increased extension angle after minimum of knee joint angle in the forehand stroke, The three dimensional anatomical angular displacement of ankle joint showed plantar flexion, internal rotation and eversion in forehand stroke. it could be suggest that the plantar pressure of open stance during forehand stroke would be distributed more largely to the fore foot. and lateral side.

A Comparison of Head-Hand Coordination Patterns during Squash Forehand Strokes in Expert and Less-Skilled Squash Players

  • Roh, Miyoung
    • 한국운동역학회지
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    • 제28권2호
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    • pp.109-117
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    • 2018
  • Objective: To compare head and hand movement patterns during squash forehand motions between experts and less-skilled squash players. Method: Four experts and four less-skilled squash players participated in this study. They performed squash forehand swings and a VICON motion analysis system was used to obtain displacement and velocity data of the head and right hand during the movement. Mann-Whitney U-tests were performed to compare head and hand range of motion and peak velocity, and cross-correlation was performed to analyze the head-hand coordination pattern between groups in three movement directions. Results: In terms of head and hand kinematic data, experts had greater head range of motion during down swings than less-skilled squash players. Experts seemed to reach peak hand velocity at impact by reaching peak head velocity followed by hand peak velocity within a given temporal sequence. In terms of head-hand coordination patterns, both groups revealed high positive correlations in the medial-lateral direction, indicating a dominant allocentric coordination pattern. However, experts had uncoupled coordination patterns in the vertical direction and less-skilled squash players had high positive correlations. These results indicate that the head-hand movement pattern likely an important factor squash forehand movement. Conclusion: Analysis of head and hand movement patterns could be a key variable in squash training to reach expert-level performance.

스쿼시 포핸드 드라이브 동작의 임팩트시 운동학적 주요요인 분석 (An Analysis on Kinematically Contributing Factors at Impact of Forehand Drive Motion in Squash)

  • 이경일;이희경
    • 한국운동역학회지
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    • 제17권1호
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    • pp.29-39
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    • 2007
  • This study were obtained elapsed time phase-by-phases, displacement, user angle, velocity and angular velocity to analyse kinematically contributing factors at impact of forehand drive motion, on targeting three male players. The results of the study were presented as follows; In the forehand drive swing, the elapsed time by phases was a total of .52 seconds: .30 seconds from backswing to impact and .22 seconds from impact to follow-through, Considering the mean change in locations of COM of each(part$\rightarrow$body segment) at impact, racket head, left shoulder, right wrist and left hip, the left-right directions(X-axis) were showm to be each $.61{\pm}.03$, $1.19{\pm}.08$, $.66{\pm}.03$, $.94{\pm}.06$, and $.45{\pm}.03m$. The displacement differences of COM of each body segment were shown to be -.57, -.05, -.33, and .16m. For the vertical direction(Z-axis), the center of mass was lowest at impact and highest at E3. For the displacement of the right wrist on the left hip, the right wrist moved to .82m to the lower direction without change in the locations of the hip from E1 from E2. When the left hip moved .02m from E2 to E3, the right wrist moved .7m in the upper direction. In respect to the velocity of each body segment, the hip and the shoulder joint accelerated and then the wrist followed. Then the right wrists of all the subjects and their racket heads showed maximum speed, and an effective swing was observed. At the angle of each part, the angle of the right wrist was the smallest at the backswing and the largest at the moment of the impact. Then it increased gradually in the follow-through section. In respect of angular velocity for subject A, the hip moved and the largest change occurred. Immediately before the impact, the subject made a swing using his right wrist, his hip, and the shoulder joint, showing the maximum value, which was judged to be effective.

플라잉디스크 포핸드 및 백핸드 던지기 동작의 운동학적 특성 비교 (A comparative analysis of the kinematical characteristics of Forehand & Backhand Flying Disc Throwing)

  • 김미향;박종철;변경석
    • 디지털융복합연구
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    • 제17권12호
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    • pp.555-563
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    • 2019
  • 본 연구는 플라잉디스크의 포핸드와 백핸드 던지기 동작에 대한 정량적 기초자료를 제공하기 위해 수행하였으며 이를 위해 3차원 동작분석 기법을 활용하여 운동학적 변인을 산출하였다. 연구 변인을 종합하여 분석한 결과 플라잉디스크는 멀리 던지는 것뿐만 아니라 정확하게 던지는 것이 중요하므로 P2와 P3에서는 전방으로의 이동을 제어하고 관절의 회전 운동에 집중해야하는 것으로 나타났다. 또한 효율적인 회전 운동을 위해 골반에서 몸통으로 회전력 전이가 중요한 것으로 판단된다. 포핸드는 상지 관절의 움직임을 주로 활용하여 던지기 동작을 수행하는 반면 백핸드 던지기는 비교적 몸통 및 골반의 회전을 주로 활용하여 던지는 것으로 나타났다. 본 연구의 정량적 자료를 바탕으로 플라잉디스크 현장 교육을 위한 기초자료로 활용될 수 있기를 기대한다.

남자 국가대표 정구선수 포핸드 미들 발리 동작의 운동역학적 분석 (Kinetic Analysis of the Movement of Soft Tennis Forehand Middle Volley)

  • 이성희;허정;김헌수
    • 한국운동역학회지
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    • 제19권4호
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    • pp.749-759
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    • 2009
  • 본 연구는 정구 남자 국가대표 전위선수 4명($33.3{\pm}2.16$세)을 대상으로 포핸드 미들발리에 대한 운동학적, 운동역학적 분석을 통하여 기초 자료를 제공하는데 있다. 분석결과, 스윙시간은 1구간이 64.7%로 가장 길게 나타났고, 인체중심의 이동변위는 1구간에서 오른쪽으로 48.1%, 전방으로 54.4%를 차지하였다. 임팩트 시 팔꿈치 관절의 속도와 상완분절의 각속도에서 각각 평균 3.67m/s와 201deg/s로 가장 빠르게 나타났으며, 이는 네트 위에서 임팩트 되도록 하기 위해 팔을 빠르게 신전시켰기 때문이라 사료된다. 이때의 팔꿈치 각도와 볼 속도는 각각 평균 $149^{\circ}$와 18.9m/s이였다. 지면반력에 있어서 왼발과 오른발의 X와 Y방향의 분력에서 통계적으로 유의한 차이가 나타났으며, 이는 왼발이 오른쪽으로 밀 때 오른발은 그 힘에 대칭적으로 비례하여 왼쪽 방향으로 지지대 역할을 한 것으로 사료된다.

배드민턴 포핸드 헤어핀 동작 시 숙련 정도에 따른 손가락 압력 및 운동학적 변인 비교 분석 (A Comparative Analysis of the Finger Pressure and Kinematic Variables in the Forehand Hairpin Net Shot According to Proficiency)

  • 이행섭;채원식;정재후
    • 한국운동역학회지
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    • 제22권4호
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    • pp.387-394
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    • 2012
  • The purpose of this study was to compare and analyze the finger pressure and kinematic variables in the forehand hairpin net shot between skilled elite players and less skilled recreational players. Eight elite players(age: $18.1{\pm}0.8yrs$, height: $176.8{\pm}1.5cm$, weight: $640.9{\pm}48.6N$) with minimum of 6 years of experience and eight recreational players(age: $27.9{\pm}1.6yrs$, height: $177.1{\pm}6.1cm$, weight: $820.5{\pm}62.8N$) with less than one year experience were recruited in this study. For each trial being analyzed, four critical instants were identified from the video recordings: Right heel contact1 (E1), Right toe-off (E2), Right heel contact2 (E3), and Shuttlecock Impact (E4). Each hairpin net shot was broken into consecutive phases: E1~E2 (Right Landing Phase: RLP), E2~E3 (Sliding Step Phase: SSP), and E3~E4 (Impact Phase: IP). Temporal parameters, shuttlecock speed, linear and angular kinematics of body segments, and finger pressures were computed for this study. The results showed that The finger pressure of the ring finger and the middle finger for the skilled group during an impact had significantly greater than those of unskilled group. It is possible that all fingers were not used in the same manner when the racket was gripped in forehand hairpin. The result also suggested that the ring finger and the middle finger pushed the racket from top to bottom while having the mid-phalanx and proximal phalanx of index finger as an axis.

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.