• 제목/요약/키워드: Lower limb kinematics

검색결과 41건 처리시간 0.013초

The Influence of Unstable Shoes on Kinematics and Kinetics of the Lower limb Joints during Sit-to-stand task

  • Kim, Yun-Jin;Park, Ji-Won
    • The Journal of Korean Physical Therapy
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    • 제28권1호
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    • pp.14-21
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    • 2016
  • Purpose: The purpose of this study was to investigate examine how the kinematics and kinetics of lower limb joints were changed depending on the unstable shoes (US) during sit-to-stand task (SitTS). Methods: Nineteen healthy females were participated in this study. The subjects performed sit-to-stand task with US and barefoot. The experiment was repeated three times for each tasks with conditions. The kinematics and kinetics of lower limb joint were measured and analyzed using a 3-D motion analysis system. A paired t-test was utilised performed for to identificationy of changes in mean of angle, force, and moment between both the two conditions. Results: The results of this study showed kinematic differences in lower limb joints during SitTS based on the US. The hip, knee, and ankle angle showed statistically significant differences during SitTS. At the initial of SitTS, Tthe force and moment of the hip flexor, hip extensor, knee flexor, knee extensor, ankle flexor, and ankle extensor showed statistically significant differences. At the terminal of SitTS, Tthe force and moment of the hip flexor, hip extensor, knee flexor, knee extensor, ankle flexor, and ankle extensor showed statistically significant differences. At the maximum of SitTS, Tthe moment of the hip extensor showed statistically significant differences. The force and moment of the ankle flexor, extensor moment showed statistically significant differences. Conclusion: Therefore, Wwearing US is considered to influence on the lower limb joints kinematics and kinetics during SitTS movements, and thus suggests the possibility that of reducing the risks of pain, and osteoarthritis caused by changes in the loading of lower limb joints.

Analysis of Lower-Limb Motion during Walking on Various Types of Terrain in Daily Life

  • Kim, Myeongkyu;Lee, Donghun
    • 대한인간공학회지
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    • 제35권5호
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    • pp.319-341
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    • 2016
  • Objective:This research analyzed the lower-limb motion in kinetic and kinematic way while walking on various terrains to develop Foot-Ground Contact Detection (FGCD) algorithm using the Inertial Measurement Unit (IMU). Background: To estimate the location of human in GPS-denied environments, it is well known that the lower-limb kinematics based on IMU sensors, and pressure insoles are very useful. IMU is mainly used to solve the lower-limb kinematics, and pressure insole are mainly used to detect the foot-ground contacts in stance phase. However, the use of multiple sensors are not desirable in most cases. Therefore, only IMU based FGCD can be an efficient method. Method: Orientation and acceleration of lower-limb of 10 participants were measured using IMU while walking on flat ground, ascending and descending slope and stairs. And the inertial information showing significant changes at the Heel strike (HS), Full contact (FC), Heel off (HO) and Toe off (TO) was analyzed. Results: The results confirm that pitch angle, rate of pitch angle of foot and shank, and acceleration in x, z directions of the foot are useful in detecting the four different contacts in five different walking terrain. Conclusion: IMU based FGCD Algorithm considering all walking terrain possible in daily life was successfully developed based on all IMU output signals showing significant changes at the four steps of stance phase. Application: The information of the contact between foot and ground can be used for solving lower-limb kinematics to estimating an individual's location and walking speed.

A Study on Changes in Lower Limb Joint Angles during Stair Walking with High Heel

  • Park, Ji-Won;Kim, Yun-Jin
    • The Journal of Korean Physical Therapy
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    • 제25권6호
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    • pp.379-385
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    • 2013
  • Purpose: The purpose of this study is to compare kinematics on lower limbs between stair walking with high heel and barefoot in healthy adult women. Methods: 18 healthy adult women were recruited in this study. The subjects performed stair ascent and descent with high heels and barefoot. The experiment was conducted in random order and repeated three times for each stair walking with high heels and barefoot. The movements of lower limb joints were measured and analyzed using a three-dimensional analysis system. Results: The ankle, knee, and hip flexion angles on the sagittal plane exhibited statistically significant differences between stair ascent and descent with high heels and barefoot. The pelvic forward tilt angles showed statistically significant differences only during stair ascent. The ankle inversion, hip abduction and pelvic lateral tilt angles on the frontal plane showed statistically significant differences between stair walking with high heels and barefoot. On the transverse plane, the hip rotation angles showed statistically significant differences between the high-heeled and barefoot gait during stair ascent and descent. However, the pelvic rotation angles showed no statistically significant differences. Conclusion: Therefore, wearing high-heeled shoes during stair walking in daily life is considered to influence lower limb kinematics due to the high heel, and thus poses the risks of pain, and low stability and joint damage caused by changes in the movement of lower limb joints.

착용형 관성센서 및 인체 하지부 기구학 기반의 보행자 속도추정에 관한 연구 (Pedestrian Walking Velocity Estimation based on Wearable Inertial Sensors and Lower-limb Kinematics)

  • 김명규;김종경;이동훈
    • 대한기계학회논문집A
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    • 제41권9호
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    • pp.799-807
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    • 2017
  • 본 논문은 하지부의 각 분절에 부착된 착용형 관성센서의 자세 및 각속도 정보와 하지부 기구학을 기반으로 착용자의 보행속도를 추정하는 방법에 관한 연구를 다룬다. 보행 주기 중 발바닥과 지면이 완전히 접촉되지 않는 구간에서는 골반부에 장착된 관성센서의 가속도 출력을 적분하여 보행속도를 추정할 수 있다. 이 때, 보행 시 골반부의 기울어짐으로 인하여 발생되는 가속도의 측정오차의 누적 영향을 최소화하기 위하여, 하지부 기구학을 기반으로 추정된 보행속도를 매 보행 주기마다 골반 관성센서의 가속도 출력신호 적분 초기값으로 갱신한다. 그 결과 6분 가량의 야외 보행 실험을 수행한 결과, 오차 누적에 의한 영향은 관찰되지 않았으며, 보행속도 추정 오차의 RMS는 0.08m/s 이하인 것으로 확인되었다.

Effect of Step Height and Visual Feedback on the Lower Limb Kinematics Before and After Landing

  • Jangwhon Yoon
    • 한국전문물리치료학회지
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    • 제31권1호
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    • pp.29-39
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    • 2024
  • Background: Landing from a step or stairs is a basic motor skill but high incidence of lateral ankle sprain has been reported during landing with inverted foot. Objects: This study aimed to investigate the effect of landing height and visual feedback on the kinematics of landing and supporting lower limbs before and after the touch down and the ground reaction force(GRF)s. Methods: Eighteen healthy females were voluntarily participated in landing from the lower (20 cm) and the higher (40 cm) steps with and without visual feedback. To minimize the time to plan the movement, the landing side was randomly announced as a starting signal. Effects of the step height, the visual feedback, or the interaction on the landing duration, the kinematic variables and the GRFs at each landing event point were analyzed. Results: With eyes blindfolded, the knee flexion and ankle dorsiflexion on landing side significantly decreased before and after the touch down. However, there was no significant effect of landing height on the anticipatory kinematics on the landing side. After the touch down, the landings from the higher step increased the knee flexion and ankle dorsiflexion on both landing and supporting sides. From the higher steps, the vertical GRF, anterior GRF, and lateral GRF increased. No interaction between step height and visual feedback was significant. Conclusion: Step height and visual feedback affected the landing limb kinematics independently. Visual feedback affected on the landing side while step height altered the supporting side prior to the touch down. After the touch down, the step height had greater influence on the lower limb kinematics and the GRFs than the visual feedback. Findings of this study can contribute to understanding of the injury mechanisms and preventing the lateral ankle sprain.

정기구학 및 역기구학을이용한하지 교정절골술 계획 생성 (Surgical Planning in Deformity Correction Osteotomies using Forward Kinematics and Inverse Kinematics)

  • 정지원;이승열;윤기범;박문석;이제희
    • 한국컴퓨터그래픽스학회논문지
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    • 제20권1호
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    • pp.1-11
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    • 2014
  • 뇌성마비에서 나타나는 하지 변형은 정상 보행 및 자세 유지에 어려움을 준다. 이를 교정하기 위해 임상의는 변형 정도를 측정하여 교정 절골술 계획을 수립하고 계획된 정도만큼 절골술을 시행한다. 그러나 절골술 시행 후 원래 계획보다 더 적거나 더 많이 교정되는 상황이나 의도치 않았던 변형이 발견되는 상황이 종종 발생한다. 이러한 문제 상황들이 발생하는 이유는 절골술 계획수립 시, 기존의 방법이 하지골의 정확한 형태학적 정보를 반영하기 어렵고 하지골을 절골하여 회전 시키는 정도에 따라 최종 결과가 어떻게 나오는지 사전에 예측하는 것이 쉽지 않으며 효과적인 교정 결과를 얻을 수 있는 절골술 방법, 회전각도 등 다양한 입력 조건의 최적 조합을 찾기가 어렵기 때문이다. 본 논문은 이를 해결하기 위해 컴퓨터 그래픽스 분야의 정기구학, 역기구학 및 최적화 기법을 하지 교정 절골술에 적용하여 임상의가 최적의 절골술 계획을 수립할 수 있도록 하는 방법을 제안한다. 하지 골의 3차원 메쉬 모델을 입력으로 받아 이를 분석하여 하지 특징점을 추출하고 임상지표를 자동으로 계산하여 변형 정도를 파악하는 방법, 하지 골을 대상으로 하는 5가지 교정 절골술의 시뮬레이션을 통해 그 결과를 사전에 예측할 수 있는 방법 그리고 비선형 최적화 문제로 변환하여 최적 교정 절골술 계획을 자동으로 수립하는 방법을 제안한다. 이를 통해 하지 골 교정 절골술과 관련된 거의 모든 경우의 수를 사전에 확인해 볼 수 있어서 종래의 방법보다 훨씬 쉽고 효율적으로 절골술을 계획하고 실행할 수 있을 것이다.

Pelvic, Hip, and Knee Kinematics of Stair Climbing in People with Genu Varum

  • Chae, Yun Won;Park, Seol;Park, Ji Won
    • The Journal of Korean Physical Therapy
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    • 제30권1호
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    • pp.14-22
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    • 2018
  • Purpose: This study examined the effects of the lower limb alignment on the pelvis, hip, and knee kinematics in people with genu varum during stair walking. Methods: Forty subjects were enrolled in this study. People who had intercondylar distance ${\geq}4cm$ were classified in the genu varum group, and people who had intercondylar distance <4cm and intermalleolar distance <4cm were placed in the control group. 3D motion analysis was used to collect the pelvis, hip, and knee kinematic data while subjects were walking stairs with three steps. Results: During stair ascent, the genu varum group had decreased pelvic lateral tilt and hip adduction at the early stance phase and decreased pelvic lateral tilt at the swing phase compared to the control group. At the same time, they had decreased minimal hip adduction ROM at the early stance and decreased maximum pelvic lateral tilt ROM and minimum hip rotation ROM at the swing phase. During stair descent, the genu varum group had decreased pelvic lateral tilt at the early stance and decreased pelvic lateral tilt and pelvic rotation at the swing phase. In addition, they had decreased pelvic frontal ROM during single limb support and increased knee sagittal ROM during the whole gait cycle. Conclusion: This study suggests that a genu varum deformity could affect the pelvis, hip and knee kinematics. In addition, the biomechanical risk factors that could result in the articular impairments by the excessive loads from lower limb malalignment were identified.

Effects of Flexible and Semirigid Lumbosacral Orthosis on Lower-Limb Joint Angles during Gait in Patients with Chronic Low Back Pain: A Cross-Sectional Study

  • Im, Sang-Cheol;Kim, Kyoung
    • 대한물리의학회지
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    • 제16권4호
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    • pp.1-11
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    • 2021
  • PURPOSE: Lumbosacral orthosis (LSO) is often used to help manage low back pain because it is economical and effective. This study examined the effects of flexible and semirigid LSOs on the lower-limb joint angles in walking in patients with chronic low back pain. METHODS: The effects of the lumbosacral orthosis during gait on the sagittal, frontal, horizontal planes and the change in lower limb angle were examined in fourteen chronic low back pain patients who walked without wearing a LSO, wearing a flexible LSO, and wearing a semirigid LSO in random order for three-dimensional motion analysis. RESULTS: The flexion of the hip and knee joints decreased more significantly during walking with an LSO than without one. The genu valgum angles were reduced in the stance phase more during walking with an LSO than without one. The external rotation of the knee joints in the stance phase increased more during walking with an LSO than without one. CONCLUSION: The angles of the lower-limb joints of patients with chronic low back pain are affected by walking with an LSO, and the effects increased as the LSO stiffened.

슬개대퇴동통증후가 성인 여성의 드롭랜딩 시 하지 주요관절의 운동역학적 변화에 미치는 영향 (Effects of Kinematics and Kinetics of the Lower Extremities Joint during Drop Landing in Adult Women with Patellofemoral Pain Syndrome)

  • Jeon, Kyoungkyu;Yeom, Seunghyeok
    • 한국운동역학회지
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    • 제31권1호
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    • pp.64-71
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    • 2021
  • Objective: This study investigated the different in isokinetic peak strength of the knee joint, and kinetics and kinematics in drop landing pattern of lower limb between the patellofemoral pain syndrome (PFPS) patients and normal. Method: 30 adult females were divided into the PFPS (age: 23.13±2.77 yrs; height: 160.97±3.79 cm, weight: 51.19±4.86 kg) and normal group (age: 22.80±2.54 yrs, height: 164.40±5.77 cm, weight: 56.14±8.16 kg), with 15 subjects in each group. To examine the knee isokinetic peak strength, kinematics and kinetics in peak vertical ground reaction force during drop landing. Results: The knee peak torque (Nm) and relative strength (%) were significantly weaker PFPS group than normal group. In addition, PFPS group had significantly greater hip flexion angle (°) than normal group. Moreover, normal group had significantly greater moment of hip abduction, hip internal rotation, and left ankle eversion than PFPS group, and PFPS group had significantly greater moment of knee internal rotation. Finally, there was significant differences between the groups at anteroposterior center of pressure. Conclusion: The PFPS patients had weakened knee strength, and which can result in an unstable landing pattern and cause of more stress in the knee joints despite to effort of reduce vertical ground reaction force.

Landing with Visual Control Reveals Limb Control for Intrinsic Stability

  • Lee, Aeri;Hyun, Seunghyun;Ryew, Checheong
    • International Journal of Internet, Broadcasting and Communication
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    • 제12권3호
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    • pp.226-232
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    • 2020
  • Repetition of landing with visual control in sports and training is common, yet it remains unknown how landing with visual control affects postural stability and lower limb kinetics. The purpose of this study was to test the hypothesis that landing with visual control will influence on lower limb control for intrinsic dynamic postural stability. Kinematics and kinetics variables were recorded automatically when all participants (n=10, mean age: 22.00±1.63 years, mean heights: 177.27±5.45 cm, mean mass: 73.36±2.80 kg) performed drop landings from 30 cm platform. Visual control showed higher medial-lateral force, peak vertical force, loading rate than visual information condition. This was resulted from more stiff leg and less time to peak vertical force in visual control condition. Leg stiffness may decrease due to increase of perturbation of vertical center of gravity, but landing strategy that decreases impulse force was shifted in visual control condition during drop landing. These mechanism explains why rate of injury increase.