• 제목/요약/키워드: Three-dimensional Motion Analysis

검색결과 541건 처리시간 0.028초

유도 공중회전낙법의 COG변인 분석 (A COG Variable Analysis of Air-rolling-breakfall in Judo)

  • 김의환;정재욱;김성섭
    • 한국운동역학회지
    • /
    • 제15권3호
    • /
    • pp.117-132
    • /
    • 2005
  • It was to study a following research of "A Kinematic Analysis of Air-rolling-breakfall in Judo". The purpose of this study was to analyze the Center of Gravity(COG) variables when performing Air-rolling-breakfall motion, while passing forward over(PFO) to the vertical-hurdles(2m height, take off board 1m height) in judo. Subjects were four males of Y. University squad, who were trainees of the demonstration exhibition team, representatives of national level judoists and were filmed by four 5-VHS 16mm video cameras(60field/sec.) through the three dimensional film analysis methods.COG variable were anterior-posterior directional COG and linear velocity of COG, vertical directional COG and linear velocity of COG. The data collections of this study were digitized by KWON3D program computed The data were standardized using cubic spline interpolation based by calculating the mean values and the standard deviation calculated for each variables. When performing the Air-rolling-breakfall, from the data analysis and discussions, the conclusions were as follows : 1. Anterior-posterior directional COG(APD-COG) when performing Air-rolling-breakfall motion, while PFO over to the vertical-hurdles(2m height) in judo. The range of APD-COG by forward was $0.31{\sim}0.41m$ in take-off position(event 1), $1.20{\sim}1.33m$ in the air-top position(event 2), $2.12{\sim}2.30m$ in the touch-down position(event 3), gradually and $2.14{\sim}2.32m$ in safety breakfall position(event 4), respectively. 2 The linear velocity of APD-COG was $1.03{\sim}2.14m/sec$. in take-off position(event 1), $1.97{\sim}2.22m/sec$. gradually in the air-top position(event 2), $1.05{\sim}1.32m/sec$. in the touch-down position (event 3), gradual decrease and $0.91{\sim}1.23m/sec$. in the safety breakfall position(event 4), respectively. 3. The vertical directional COG(VD-COG) when performing Air-rolling-breakfall motion, while PFO to the vertical-hurdles(2m height) in judo. The range of VD-COG toward upward from mat was $1.35{\sim}1.46m$ in take-off position(event 1), the highest $2.07{\sim}2.23m$ in the air-top position(event 2), and after rapid decrease $0.3{\sim}0.58m$ in the touch-down position(event 3), gradual decrease $0.22{\sim}0.50m$ in safety breakfall position(event 4), respectively. 4. The linear velocity of VlJ.COG was $1.60{\sim}1.87m/sec$. in take-off position(event 1), $0.03{\sim}0.08m/sec$. gradually in the air-top position(event 2), $-4.37{\sim}\;-4.76m/sec$. gradual decrease in the touch-down position(event 3), gradual decrease and -4.40${\sim}\;-4.77m/sec$. in safety breakfall position(event 4), respectively. When performing Air-rolling-breakfall showed parabolic movement from take-off position to air-top position, and after showed vertical fall movement from air-top position to safety breakfall. In conclusion, Ukemi(breakfall) is safety fall method Therefore, actions need for performing safety fall movement, that decrease and minimize shock and impact during Air-rolling-breakfall from take-off board action to air-top position must be maximize of angular momentum, and after must be minimize in touch-down position and safety breakfall position.

평행봉 Belle 기술동작의 운동학적 분석 (A Kinematical Analysis of Belle Motion on Parallel Bars)

  • 공태웅
    • 한국운동역학회지
    • /
    • 제15권4호
    • /
    • pp.43-53
    • /
    • 2005
  • This study is to define how the difference of athletic change influence on the last regrasp after somersault in Belle movement of parallel bars. For his study, the following conclusion was produced by analysis of athletic change by means of three dimensional visual image in three athlete of nation. 1. As the picture of S1, there are total used time(2.01 sec), S3(2.17 sec) and S2(2.19 sec). In case of a short needed time, it is difficult for them to perform the remaining movement of the vertical elevating flight easily and comfortably, it is judged as performing the small movement with restrict swing. 2 In the change of body center sped by each event, it is calculated as $-89.1^{\circ}$ the narrowest in S1, $-81.96^{\circ}$ the widest and then $86.34^{\circ}$ in S3. In E3 event, average compound speed is 4.07m/s, S2 showed the fastest speed of 4.14m/s whereas S1 the narrowest angle of 3.95m/s. 3. A shoulder joint and coxa are the period of mention in E3. In E4 which was pointed out the longest vertical distance, S2 that is indicated the highest vertical height as the period of detach in parallel bars. showed -3.91m. This is regarded as a preparatory movement for dynamic performance after using effectively elastic movement of shoulder joint and coxa while easily going up with turning back movement. In the 5th phrase, long airborne time and vertical change position is showed as the start while regrasping securely air flight movement from high position. 4. In E5, a long flight time and a long vertical displacement were shown as the regrasp after somersault efficiently in high position with stability from the point of the highest peak of the center of the body. Especially, S2 is marked as a little bit long position, while S1 is reversely indicated as performing somersault and unstable motion in a low position. 5. In E3, at the point of the largest extension of the shoulder joint and hip joint the shoulder joint is largely marked in $182^{\circ}$ and the hip point $182^{\circ}$ in S2. The shoulder joint is marked at the smallest angle in $177^{\circ}$ and the hip point $176^{\circ}$ in S1. And S1 is being judged by its performance of the less self - confident motion with lessening a breath of swing. S2 makes the most use of flexion and extension of the shoulder joint and the hip joint effectively. It was performed greatly with swinging and dropping the rotary movement and the rotary inertia naturally. 6. In E6, as the point of regrasp of the upper arm in parallel bars it is recognized by the that of components of vertical and horizontal velocity stably. During this study, the insufficient thing and the study on the parallel bars at a real game later are more activated than now. If it is really used as the basic materials by means of Belle Picked Study of Super E level after Bell movement, you may perceive the technique movement previously and perform without difficulty. Especially, such technique as crucifix is quite advantageous for oriental people thanks to small body shape condition. In conclusion we will nicely prepare for our suitable environment to gradually lessen trials and errors by analyzing and studying kinematically this movement.

관성센서 기반 보행 분석 시스템 구현 (Implementation of Gait Analysis System Based on Inertial Sensors)

  • 조재성;강신일;이기혁;장성호;김인영;이종실
    • 재활복지공학회논문지
    • /
    • 제9권2호
    • /
    • pp.137-144
    • /
    • 2015
  • 본 논문은 하지의 움직임을 측정하고 분석할 수 있는 관성센서 기반 보행분석 시스템에 관한 것이다. 본 시스템 구현을 위해 자이로스코프, 가속도계 및 지자계 신호를 이용한 자세 방위 측정장치 모듈을 일체형으로 개발하였으며, 다수의 모듈을 환자의 분절에 부착하여 공간상에서 각 분절의 방위각을 제공할 수 있도록 하였다. 또한 재활과 관련된 많은 응용에 있어 중요한 생체역학 측정값인 신체 분절간의 관절각을 추출하는 알고리즘을 제안하였다. 개발한 자세 방위 측정장치 모듈의 성능을 평가하기 위하여 3차원 공간상의 변위 및 방위를 밀리미터 해상도로 제공할 수 있는 Vicon을 참조 측정 시스템으로 이용하였으며, yaw와 pitch에서 1.08, 1.72도의 평균 제곱근 오차를 얻을 수 있었다. 보행 분석 시스템의 성능 검증을 위하여 7개의 AHRS 모듈을 하지에 부착하고 고관절, 무릎, 발목에 대한 관절각을 계산하여, Vicon과의 비교 실험을 수행하였다. 실험 결과 본 연구에서 개발한 시스템은 뇌졸중 후 회복단계 동안 사지 및 보행 동작을 실시간으로 분석, 제공함으로서 재활의 효과, 난이도 조절 및 피드백 요소를 제공할 수 있을 것으로 판단된다.

  • PDF

태권도 자유 품새에 적용하기 위한 540° 뒤후려차기의 성공요인 분석 (Successful Factor Analysis of 540° Dwihuryeochagi to Apply Free Style Poomsae of Taekwondo)

  • 류시현;류지선;박상균;윤석훈
    • 한국운동역학회지
    • /
    • 제23권4호
    • /
    • pp.285-294
    • /
    • 2013
  • The purpose of this study was to provide fundamental information for success factors of techniques through kinematic analysis including coordination of lower extremities and landing stability according to the success and failure of $540^{\circ}$ Dwihuryeochagi in Taekwondo. Twenty Taekwondo athletes: ten success group (S, age: $22.3{\pm}1.8$ yrs, height: $172.1{\pm}5.4$ cm, body mass: $64.4{\pm}4.2$ kg) and ten failure group (F, age: $22.3{\pm}1.8$ yrs, height: $172.1{\pm}5.4$ cm, body mass: $64.4{\pm}4.2$ kg) participated in this study. Three-dimensional motion analysis using a system of 3 video cameras with a sampling of 60 fields/s was performed during the competition of $540^{\circ}$ Dwihuryeochagi. Motions were divided into five events: pivot foot landing (E1), pivot foot toe off (E2), COM max height (E3), kick impact (E4) and landing (E5). At E1, the stride width was greater for S than for F (p<.05) while the time was greater for S than for F during P4 (p<.05). At E4, knee angle was greater for S than for F (p<.05). At E5, hip angle was greater for S than for F (p<.05) while kick distance was greater for S than for F (p<.05). Furthermore, at P3, the time would be related to kicking velocity (p<.05), while at P4, the time, range of hip angle and knee angle would be related to kick distance (p<.05). At P1, COM horizontal velocity would be related to COM vertical velocity of P1 and P2 (p<.05). Based on the findings, success factors of $540^{\circ}\acute{y}$ Dwihuryeochagi were COM horizontal velocity of P1, COM vertical velocity of P2, the time, kick distance, velocity, angle of lower extremities and coordination of P3-P4.

골유착 고정성 보철물 하에서 하중조건에 따른 삼차원 유한요소법적 분석 (THE THREE DIMENSIONAL FINITE ELEMENT ANALYSIS OF THE BONE ANCHORED FIXED PROSTHESIS ACCORDING TO THE LOAD CONDITION)

  • 양순익;정재헌
    • 대한치과보철학회지
    • /
    • 제33권4호
    • /
    • pp.780-806
    • /
    • 1995
  • The purpose of this study was to describe the application of 3D finite element analysis to determine resultant stresses on the bone anchored fixed prosthesis, implants and supporting bone of the mandible according to fixture numbers and load conditions. 4 or 6 fixtures and the bone anchored fixed prosthesis were placed in 3D finite element mandibular arch model which represents an actual mandibular skull. A $45^{\circ}$ diagonal load of 10㎏ was labiolingually applied in the center of the prosthesis(P1). A $45^{\circ}$ diagonal load of 20㎏ was buccolingually applied at the location of the 10mm or 20mm cantilever posterior to the most distal implant(P2 or P3). The vertical distribution loads were applied to the superior surfaces of both the right and the left 20mm cantilevers(P4). In order that the boundary conditions of the structure were located to the mandibular ramus and angle, the distal bone plane was to totally fixed to prevent rigid body motion of the entire model. 3D finite element analysis was perfomed for stress distribution and deflection on implants and supporting bone using commercial software(ABAQUS program. for Sun-SPARC Workstation. The results were as follows : 1. In all conditions of load, the hightest tensile stresses were observed at the metal lates of prostheses. 2. The higher tensile stresses were observed at the diagonal loads rather than the vertical loads 3. 6-implants cases were more stable than 4-implants cases for decreasing bending and torque under diagonal load on the anterior of prosthesis. 4. From a biomechanical perspective, high stress developed at the metal plate of cantilever-to-the most distal implant junctions as a consequence of loads applied to the cantilever extension. 5. Under diagonal load on cantilever extension, the 6-implants cases had a tendency to reduce displacement and to increase the reaction force of supporting point due to increasing the bendign stiffness of the prosthesis than 4-implants cases. 6. Under diagonal load on cantilever extension, the case of 10mm long cantilever was more stable than that of 20mm long cnatilever in respect of stress distribution and displacement. 7. When the ends of 10mm or 20mm long cantilever were loaded, the higher tensile stress was observed at the second most distal implant rather than the first most distal implant. 8. The 6-implants cases were more favorable about prevention of screw loosening under repeated loadings because 6-implants cases had smaller deformation and 4-implants cases had larger deformation.

  • PDF

유체-구조물 상호작용을 고려한 댐 구조체와 수압철관의 내진성능평가 (Seismic Performance Evaluation of Dam Structures and Penstock Considering Fluid-Structure Interaction)

  • 허소현;남광식;정영석;권민호
    • 토지주택연구
    • /
    • 제13권1호
    • /
    • pp.141-150
    • /
    • 2022
  • 국내 대규모 지진 이후 구조물의 내진에 대한 연구 필요성이 커짐에 따라 행정안전부에서는 기존의 내진설계기준 공통적용사항을 개정하여 국가내진성능 목표치를 상향하였으며 새로 개정된 내진설계기준의 성능목표치에 대한 연구가 필요하게 되었다. 이에 본 논문에서는 실제 노후화된 Test-Bed의 댐 제체와 내부에 매립되어 있는 수압철관과 유체를 여러 변수를 도입하여 3차원 유한요소법으로 모델링 하였으며 수압철관 내부 유체의 동수압으로 인한 거동을 분석하고 개정된 현행 내진설계 기준법에 부합하는 지진파에 대한 댐 제체와 수압철관의 안전성을 확인하였다. 3차원 유한요소해석결과 수압철관의 수충격에 의한 응력변화가 매우 작았으며 이를 통해 지진상황에서 수충격 보다 동수압의 영향이 더 큰 것을 확인할 수 있었다. 동수압이 SPH 형태인 경우 지진동으로 인한 유체의 거동과 응력 발생 위치를 유효하게 나타낼 수 있으며 취약부 분석에 더욱 용이할 것으로 분석되었다. 부식을 고려한 해석결과 수압철관이 제체의 매립되어 있기 때문에 응력 분산의 정도가 작아져 강재 항복응력의 1% 이하로 매우 작은 응력결과를 보였다. 또한 콘크리트 댐 제체의 상류 유입부의 미소 인장균열 발생 가능성이 있으나 수압철관의 응력증가에 큰 영향을 끼치지 않는 것으로 나타났으며 개정된 유효지반가속도의 지진상황에서 안전한 것으로 판단된다.

도수 촉진과 막대를 이용한 몸통의 전방 굴곡 운동에 따른 요추와 고관절 굴곡 각도의 변화 (Change of Lumbar Spine and Hip Joint Flexion Angles During Forward Bending of the Trunk Using Manual Facilitation and a Stick)

  • 정성대;박규남;홍지아;조민수;손동휘;신헌석
    • 한국전문물리치료학회지
    • /
    • 제18권1호
    • /
    • pp.57-63
    • /
    • 2011
  • The purpose of this study was to identify the effects of manual facilitation and a stick on lumbar and hip joint flexion angles in subject with lumbar flexion syndrome during forward bending from a sitting position. Fifteen subjects with lumbar flexion syndrome were recruited for this study. As a pretest, all subjects performed three repetitions of bending the trunk forward until the tips of their fingers touched the target bar. After this pretest, the subjects practiced the forward bending of the trunk 10 times, using either manual facilitation or a stick. Then, as a posttest, all subjects repeated the pretest procedure. The flexion angles of lumbar spine and hip joint during forward bending in a sitting position were measured using a three-dimensional motion analysis system. A paired t-test was used to determine the statistical differences between pre-test and post-test flexion angles and pre- and post-test flexion angle differences between forward bending with manual facilitation and forward bending with a stick. The level of statistical significance was set at p=.05. The results of the study showed that the angle of the lumbar flexion decreased significantly and the bilateral hip flexion angle increased significantly when performing forward bending with stick and manual facilitation. Furthermore, the angle of lumbar flexion decreased significantly and the angle of bilateral hip flexion increased significantly in forward bending with a stick compared to forward bending with manual facilitation. The findings of this study indicate that both forward bending with manual facilitation and sticks could be used to prevent excessive lumbar flexion and increase hip flexion, and that forward bending with a stick is more effective than forward bending with manual facilitation for inducing lumbar spine and hip joint angle changes.

Response evaluation and vibration control of a transmission tower-line system in mountain areas subjected to cable rupture

  • Chen, Bo;Wu, Jingbo;Ouyang, Yiqin;Yang, Deng
    • Structural Monitoring and Maintenance
    • /
    • 제5권1호
    • /
    • pp.151-171
    • /
    • 2018
  • Transmission tower-line systems are commonly slender and generally possess a small stiffness and low structural damping. They are prone to impulsive excitations induced by cable rupture and may experience strong vibration. Excessive deformation and vibration of a transmission tower-line system subjected to cable rupture may induce a local destruction and even failure event. A little work has yet been carried out to evaluate the performance of transmission tower-line systems in mountain areas subjected to cable rupture. In addition, the control for cable rupture induced vibration of a transmission tower-line system has not been systematically conducted. In this regard, the dynamic response analysis of a transmission tower-line system in mountain areas subjected to cable rupture is conducted. Furthermore, the feasibility of using viscous fluid dampers to suppress the cable rupture-induced vibration is also investigated. The three dimensional (3D) finite element (FE) model of a transmission tower-line system is first established and the mathematical model of a mountain is developed to describe the equivalent scale and configuration of a mountain. The model of a tower-line-mountain system is developed by taking a real transmission tower-line system constructed in China as an example. The mechanical model for the dynamic interaction between the ground and transmission lines is proposed and the mechanical model of a viscous fluid damper is also presented. The equations of motion of the transmission tower-line system subjected to cable rupture without/with viscous fluid dampers are established. The field measurement is carried out to verify the analytical FE model and determine the damping ratios of the example transmission tower-line system. The dynamic analysis of the tower-line system is carried out to investigate structural performance under cable rupture and the validity of the proposed control approach based on viscous fluid dampers is examined. The made observations demonstrate that cable rupture may induce strong structural vibration and the implementation of viscous fluid dampers with optimal parameters can effectively suppress structural responses.

정.역구동 페달링에 따른 자전거 등판 시의 근전도 분석 (Electromyographic Analysis of a Uphill Propulsion of a Bicycle by Forward.Backward Pedaling)

  • 신응수;김현중
    • 한국운동역학회지
    • /
    • 제18권4호
    • /
    • pp.171-177
    • /
    • 2008
  • 본 논문에서는 자전거의 언덕 등판 시 페달릴 방향이 근육의 활성도에 미치는 영향을 분석하였다. 이를 위하여 정역구동이 가능한 특수유성기어와 언덕 경사각에 따른 마찰력을 후륜에 인가할 수 있는 자기제동장치가 장착된 자전거로 실험 장치를 구성하고 3차원 동작분석과 근전도 분석을 수행하였다. 근활성도는 장단지근, 대퇴사두근, 전경골근, 비장근에 대해서 측정하였으며 언덕 경사는 $0^{\circ}$에서 $6^{\circ}$까지 변화시켰다. 근전도 신호는 우선 평균제곱법을 적용하여 25 ms마다 평균값을 구하고 50개의 연속된 주기에 대한 ensemble 곡선을 구하여 분석하였다. 그 결과로부터 페달링 방향의 변화는 자전거 주행 속도 및 인체하지 근육의 활성도에 큰 영향을 미치는 것을 확인하였다. 구체적으로는 크랭크 각도에 따른 근활성도의 패턴 및 최대값의 분포에 있어 정방향 구동과 역방향 구동은 큰 차이를 보이는데 근활성도의 최대값은 정구동으로 페달링할 때가 역 구동으로 페달링할 때보다 큰 반면 근활성도의 평균값은 장단지근과 대퇴사두근에서는 정구등 페달링이 더 높게 나타나고 전경골근과 비장근에서는 역구동 페달링이 더 높게 나타나며 주행 등판각이 증가하면 페달링 방향이 바뀜에 따른 근활성도 최대값의 차이는 더욱 커진다.

아킬레스 건염 환자의 보행 시 고관절, 슬관절 및 족관절 모멘트의 변화에 대한 연구 (A Study on the Change of Gait Temporal Parameter and Ankle Joint Moment in Patients with Achilles Tendinitis)

  • 유재호;이규창;이동엽
    • 한국산학기술학회논문지
    • /
    • 제12권12호
    • /
    • pp.5766-5772
    • /
    • 2011
  • 본 연구는 아킬레스 건염 환자들과 정상인들을 대상으로 보행 선형지표와 고관절, 슬관절, 그리고 족관절의 모멘트 변화를 조사하여 아킬레스 건염에 의한 보행의 역학적 변화를 구명하고 아킬레스 건염을 예방하기 위한 예측인자들을 찾고자 실시되었다. 연구의 대상자는 아킬레스 건염 환자 20명과 비슷한 신체조건을 가진 건강한 정상인 20명이며, 대상자가 맨발 상태에서 힘판의 중앙 부분을 밟고 지나가도록 13 m의 거리를 편안한 속도로 5회 왕복하도록 하였다. 또한 대상자가 보행하는 동안 3차원 동작분석 장비를 이용하여 고관절, 슬관절, 그리고 족관절 모멘트를 산출하였다. 수집된 자료들을 SPSS 12.0 소프트웨어를 사용하여 분석하였다. 연구의 결과 아킬레스 건염 환자들의 고관절은 입각기 초기에 신전 모멘트가 감소하였고, 중후반에는 굴곡 모멘트가 감소하였다. 또한 슬관절에서는 입각기 초기부터 지속적인 굴곡 모멘트의 감소가 나타났으며 후기에는 신전 모멘트의 감소를 보였다. 그리고 족관절은 입각기 중반에 저측굴곡 모멘트가 감소하였으며 말기에는 배측 굴곡 모멘트가 감소하였다. 정상인과 비교해 아킬레스 건염 환자들에게서 보행의 역학적인 변화가 두드러지게 나타났으며, 임상에서는 아킬레스 건염 환자의 보행에 대한 변화를 세밀하게 파악하여 치료적 접근을 시도해야 할 것으로 보인다. 그리고 앞으로의 연구에서는 아킬레스 건염 환자에게서 나타나는 역학적인 변화에 대한 조사가 더 이루어져야 할 것이다.