• 제목/요약/키워드: VERTICAL GROUND REACTION FORCE

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8주간의 맵시 운동 프로그램이 중년여성들의 보행 동작 시 지면반력 요인들에 미치는 영향 (Effect of a Maepsi Exercise Program on the Ground Reaction Force Variables of middle-aged women during Gait)

  • 박희준;권문석
    • 한국응용과학기술학회지
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    • 제38권3호
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    • pp.762-770
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    • 2021
  • 본 연구의 목적은 신체 전신 운동인 맵시 운동 프로그램을 중년여성들에게 8주간 적용하여 보행 시 수직 지면반력 크기, 발생시간, 압력 중심 요인들에 미치는 영향을 분석하는데 있었다. 본 연구의 피험자로 운동군 13명(연령, 41±4.4 세; 신장, 162.5±5.8 cm; 체중, 57.8±6.7 kg; 신체질량지수, 21.9±2.4 kg/m2), 대조군 12명(연령, 41.1±5.6 세; 신장, 160.9±5.5 cm; 체중, 576.2±8.1 kg; 신체질량 지수, 21.7±2.9 kg/m2) 총 25명이 참여하였다. 운동군은 7영역 23종 77동작의 맵시운동 프로그램을 8주간 주 3회 실시하였다. 보행 시 지면반력 요인들의 검증을 위하여 Two-way repeated measures ANOVA를 실시하였으며, 사후검증은 bonferroni adjustment로 분석하였다(a=.05). 맵시 운동 프로그램의 운동군은 보행 시 FMWA와 FPO 시점까지의 소요 시간, FMWA와 FPO에서 발생한 수직 지면반발력 그리고 AP 방향 COP의 RMS 요인들에서 대조군에 비해 상대적으로 큰 수치를 나타내었다. 그러므로 8주간의 맵시운동 프로그램은 보행을 수행하는 중년여성들의 가속과 감속 운동 기능을 향상시킨 것으로 나타났다.

뇌졸중으로 인한 편마비환자의 보행분석 I. 시간-거리변수, 골반경사각 및 지면반발력 -수직력 중심 (The Gait Analysis of Hemiplegic Patients After Stroke I. Spatio-Temporal Parameters, Pelvic Anterior Tilting and Ground Reaction-Vertical Force)

  • 권영실;김진상
    • The Journal of Korean Physical Therapy
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    • 제10권1호
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    • pp.127-138
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    • 1998
  • This study was carried out tn invstigate and compare biomechanical characteristics during free speed gait in hemiplegic patients after stroke who took therapeutic exercise by analyzing kinematic and kinetic data in the sagital plane and electromyographic data. Six patients($41\~69$ years old) and age-matched six volunteers in good health(51-61 years old) wire studied. The patients were sorted into two groups, depending on their self-speed of walking : fast speed group(3 patients) and slow speed group(3 patients). The results were as fellows. : 1. In spatio-temparal parameters, affected and unaffected side of fast group showed symetry but blew group showed asymetry of single limb support, opposite foot contact and stance phase (p<0.05). Compared with normal group, patient group showed slower velocity, shoter stride length and longer double limb support (p<0.05). 2. In the pelvic anterior tilt, patient group showed lower valued than normal group. It. In the ground reaction force-vertical force, fast group showed similar double peak gragh compared with normal group, butvslow group showed lower values without double peak (p<0.05).

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Immediate Effects of Low-Dye Taping on the Ankle Motion and Ground Reaction Forces in the Pronated Rear-Foot During Gait

  • Kim, Sung-shin;Chung, Jae-yeop
    • 한국전문물리치료학회지
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    • 제23권1호
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    • pp.72-79
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    • 2016
  • Background: Increased foot pronation causes biomedchanical changes at the lower limbs, which may result in musculoskeletal injuries at the proximal joints. Pronation rear-foot leads to plantar fasciitis, Achilles tendonitis, and posterior tibial tendonitis pathologically. According to the recent meta-analysis, They showed that therapeutic adhesive taping is more effective than foot orthoses and motion control footwear, low-Dye (LD) taping has become the most popular method used by physiotherapists. Objects: The purpose of this study was to determine the immediate effects of LD taping results in different ankle motion and ground reaction force (GRF) as before and after applied LD taping on pronated rear-foot during gait. Methods: Twenty-four participants were recruited for this study. The gait data were recorded using an 8-camera motion capture system and two force platforms. At first, the experiments were carried out that participants walked barefoot without LD taping. And then they walked both feet was applied LD taping. Results: The ankle inversion minimum was significantly greater after LD taping than before LD taping (p=.04); however, in the GRF, there were no significant differences in the inversion maximum or total motion of the stance phase (p=.33, p=.07), or in the vertical (p=.33), posterior (p=.22), and lateral (p=.14) peak forces. Conclusion: The application of taping to pronation rear-foot assists in increased ankle inversion.

Relationship between Hallux Valgus Severity and 3D Ground Reaction Force in Individuals with Hallux Valgus Deformity during Gait

  • Kim, Yong-Wook
    • 대한물리의학회지
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    • 제16권3호
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    • pp.21-27
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    • 2021
  • PURPOSE: This study examined the relationship between the severity of a hallux valgus (HV) deformity and the kinetic three-dimensional ground reaction force (GRF) through a motion analysis system with force platforms in individuals with a HV deformity during normal speed walking. METHODS: The participants were 36 adults with a HV deformity. The participants were asked to walk on a 6 m walkway with 40 infrared reflective markers attached to their pelvic and lower extremities. A camera capture system and two force platforms were used to collect kinetic data during gait. A Vicon Nexus and Visual3D motion analysis software were used to calculate the kinetic GRF data. RESULTS: This research showed that the anterior maximal force that occurred in the terminal stance phase during gait had a negative correlation with the HV angle (r = -.762, p < .01). In addition, the HV angle showed a low negative correlation with the second vertical maximal force (r = .346, p < .05) and a moderate positive correlation with the late medial maximal force (r = .641, p < .01). CONCLUSION: A more severe HV deformity results in greater abnormal translation of the plantar pressure and a significantly reduced pressure force under the first metatarsophalangeal joint.

Vertical Ground Reaction Force Asymmetry in Prolonged Running

  • Ryu, Ji-Seon
    • 한국운동역학회지
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    • 제28권1호
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    • pp.29-35
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    • 2018
  • Objective: The purpose of this study was to determine the asymmetry of vertical ground reaction force (GRF) components between dominant and non-dominant legs in rested and fatigued states in prolonged running. Method: Twenty healthy men, heel strikers, were included (age: $24.00{\pm}5.0years$; height: $176.1{\pm}6.0cm$; body mass: $69.0{\pm}6.0kg$) in this study. Subjects ran on an instrumented treadmill for 130 minutes. During treadmill running, GRF data (1,000 Hz) were collected for 20 strides at five minutes (rested) and 125 minutes (fatigued) running while they were unaware of collecting data. Asymmetry indexes (ASI) were calculated to quantify the asymmetry magnitude in rested and fatigued states. Paired t-test was used to verify the differences between dominant and non-dominant legs in rested and fatigued states. In addition, one-way repeated measure analysis of variance was applied for comparison of ASI of both states. The level of significance was set at p < .05. Results: Passive force peak magnitude, loading rate, and impulse affecting the development of running injury were found significantly greater in dominant leg than in non-dominant leg at rested state (p < .05). However, passive force peak time and active force peak magnitude were found significantly different between legs in fatigued state (p < .05). To determine changes in percentage of asymmetry between legs in both states, ASI was used. ASI for all variables increased in fatigued state; however, no significant differences were found between both states. Conclusion: This study found that fatigue did not affect differences in vertical GRF between dominant and non-dominant legs and asymmetry changes.

Countermovement Jump Strategy Changes with Arm Swing to Modulate Vertical Force Advantage

  • Kim, Seyoung
    • 한국운동역학회지
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    • 제27권2호
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    • pp.141-147
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    • 2017
  • Objective: We obtained force-displacement curves for countermovement jumps of multiple heights and examined the effect of an arm swing on changes in vertical jumping strategy. Countermovement jumps with hands on hips (Condition 1) and with an arm swing (Condition 2) were evaluated to investigate the mechanical effect of the arm movement on standing vertical jumps. We hypothesized that the ground reaction force (GRF) and/or center of mass (CoM) motion resulting from the countermovement action would significantly change depending on the use of an arm swing. Method: Eight healthy young subjects jumped straight up to five different levels ranging from approximately 10% (~25 cm) to 35% (~55 cm) of their body heights. Each subject performed five sets of jumps to five randomly ordered vertical elevations in each condition. For comparison of the two jumping strategies, the characteristics of the boundary point on the force-displacement curve, corresponding to the vertical GRF and the CoM displacement at the end of the countermovement action, were investigated to understand the role of arm movement. Results: Based on the comparison between the two conditions (with and without an arm swing), the subjects were grouped into type A and type B depending on the change observed in the boundary point across the five different jump heights. For both types (type A and type B) of vertical jumps, the initial vertical force at the start of push-off significantly changed when the subjects employed arm movement. Conclusion: The findings may imply that the jumping strategy does change with the inclusion of an arm swing, predominantly to modulate the vertical force advantage (i.e., the difference between the vertical force at the start of push-off and the body weight).

남자 스포츠 에어로빅스 선수의 Depth Jump시 하지관절에 대한 운동역학적 분석-사례 연구 (The kinematic and kinetic analysis of lower extremities for male sports aerobic athletes during depth jumps - a case study)

  • 김윤지
    • 한국운동역학회지
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    • 제15권1호
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    • pp.259-274
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    • 2005
  • The purpose of this study was to compare the kinematic and kinetic parameters of lower extremity joints between novice and experienced sports aerobic dancers during two heights of depth jumps. Four male dancers were participated in this study and they performed 40cm and 60cm height depth jump three times, respectively. Four ProReflex MCU cameras (100frame/sec) and a Kistler force plate (1000Hz) were used for data collection. The results indicated that the duration of contact phase of experienced group was shorter than that of novice group regardless of jump height. For minimum angle of hip, knee, and ankle joints, the novice group had tendency to decrease the angle but the experienced group had increased the joint angle with jump height. There was no difference of total ground reaction force between the groups but the reaction force had tendency to increase with jump height. Thus, this study implied that repetition of jump and landing may induce joint related injury and further study such as. EMG analysis of lower extremity can be needed to verify the relationship between injury and ground reaction force.

기능적 발목 불안정성을 가진 선수에게 발목 테이핑이 점프 후 착지 시 발목 각속도, 지면반력과 자세 안정성에 미치는 영향 (The Effects of Ankle Taping on Ankle Angular Velocity, Ground Reaction Force and Postural Stability during Jump Landing on Athlete with Functional Ankle Instability)

  • 김경훈;조준행
    • 한국운동역학회지
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    • 제19권3호
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    • pp.519-528
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    • 2009
  • 상해 예방을 위해 이용하는 테이핑의 효과는 이미 선행연구들에서 이해할만하게 이야기 되어져 왔지만, 기능적 발목 불안정성을 가진 대상자에게 동적 임무를 가지고 지면반력과 안정성을 분석한 연구는 거의 없다. 본 연구는 발목 불안정성을 가진 선수들을 대상으로 점프 후 착지 시 지면반력 변인과 안정성에 미치는 영향을 알아보는데 있다. 이 실험을 위하여 기능적 발목 불안정성을 가진 14명의 선수가 참가하였고 동작분석과 지면반력 값을 산출하기 위해 적외선 카메라 8대(Vicon MX-F20, Oxford Metric Ltd, Oxford, UK)로 구성된 동작분석시스템(Vicon Motion Systems)과 지면반력기를 사용하였다. 본 연구 결과 발목 불안정성이 있는 선수에게 테이핑의 적용은 착지 시 배측굴곡 각속도, 내번 각속도, 최대 수직지면반력을 감소시켰으며, 안정성과 관련된 변인인 A-P cop, M-L cop에서 안정성을 향상시켰다. 임상에서 발목 불안정성이 있는 선수들에게 상해 예방을 위한 하나의 방법으로 테이핑의 사용을 권장해도 될 것으로 사료된다.

An Analysis of X-Factor, Triple X-Factor, and the Center of Pressure (COP) according to the Feel of the Golf Driver Swing

  • Kim, Yong-Seok;So, Jae-Moo
    • 한국운동역학회지
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    • 제26권3호
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    • pp.265-272
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    • 2016
  • Objective: The aim of this study was to analyze X-factor, triple X-factor, and the center of pressure (COP) according to the feel of golf driver swing. Method: For this research, 9 golfers from the Korea Professional Golfers' Association (age: $30.11{\pm}2.98yrs$, height: $178.00{\pm}8.42cm$, weight: $76.22{\pm}8.42kg$, experience: $10.06{\pm}3.11yrs$) were recruited to participate in the experiment. Twelve Motion Analysis Eagle-4 cameras were installed and an image analysis was conducted by using the NLT (non-linear transformation) method, and 2 units of Kistler type 5233A dynamometer were used to measure ground reaction force. The sampling ratio was set at 1000 Hz. The golfers each took 10 swings by using their own driver, and chose the best and worse feel from among 10 shots. A paired-sample t-test was used to analyze the results. Results: In regard to feel, no change in head speed, X-factor, and the triple X-factor's X-factor stretch, hip rise, and head swivel, was observed (p>.05). Regarding ground reaction force, a difference was observed between the top of the backswing (p<.05) and impact (p<.05) in the vertical force of the left foot. For COP, a difference was also observed between the mid backswing (p<.001), late backswing (p<.001), and top of the backswing (p<.05) for the right foot X-axis and Y-axis mid follow through (p<.01). Conclusion: It can be reasoned that, irrespective of feel, the head speed, X-factor and triple X-factor's X-factor stretch, hip rise and head swivel did not have an effect on drive distance for domestic golfers, and the vertical reaction force of the left foot and left-right movement span's pressure dispersal of the right foot had an increasing effect on drive distance.

Analysis of the Plantar Pressure on the Flat and Slope Walking by Insole Type

  • Kim, Bu Gan;Lee, Joong Sook;Yang, Jeong Ok;Lee, Bom Jin
    • 한국운동역학회지
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    • 제28권3호
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    • pp.165-173
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    • 2018
  • Objective: The purpose of this study is to provide biomechanical basis data for the analysis of the maximum vertical ground reaction force, the maximum plantar pressure, the average plantar pressure, and the contact area according to the type of the insole through the insole insertion type foot pressure gauge. Method: In the treadmill, the slope was set at 10%, the first type A was worn at a walking speed of 3.5 km / h, and then walking was carried out using B, C, and D types. Data from 20 boots with consistent walking were extracted and plantar pressure data were collected and analyzed. Results: Functional insole was more effective than conventional insole for maximum vertical ground reaction force, maximum plantar pressure, average plantar pressure, and contact area at 10% of treadmill ramps. Conclusion: In this study, D-type insole supports the cushion in the middle part and supports the heel cup with hardness in the hind part, so that it is the most effective insole by lowering the plantar pressure and dispersing it more widely.