• 제목/요약/키워드: Heel Angle

검색결과 144건 처리시간 0.024초

수중걷기운동이 여성노인의 보행 및 평형능력에 미치는 영향 (Effect of Aquatic Walking Exercise on Gait and Balance Parameters of Elderly Women)

  • Kang, Ki-Joo;Lee, Joong-Sook;Yang, Jeong-Ok;Park, Joon-Sung;Han, Ki-Hoon
    • 한국운동역학회지
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    • 제30권1호
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    • pp.73-81
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    • 2020
  • Objective: The purpose of this study is to analyze the effects of aquatic walking exercise on gait and balance parameters of elderly women. Method: 15 elderly people were recruited for this study (age: 73.20±5.19 yrs, height: 153.87±3.36 cm, mass: 60.33±5.73 kg). All variables were measured using Gaitview AFA-50. The variables were the heel contact time ratio, gait angle, and M/P change ratio for gait patterns and ENV, REC, RMS, Total Length, TLC, Sway velocity, and Length/ENV for balance abilities. A paired t-test and the Wilcoxon signed-rank test were carried out to verify the differences in the test scores after participating in the water walking program. The significance level for all statistical analyses was set to α=.05. Results: As for the changes in their walking function after the exercise, heel contact time ratio (p<.01) showed a statistical significance, while gait angle and M/P change ratio did not reveal statistically significant differences. In the test of balance ability on both feet and with eyes opened, statistical significance was found in ENV, REC, RMS, TLC (p<.01), and sway velocity (p<.05), while the test with eyes closed showed statistical significance in length/ENV as well as ENV, REC, RMS, sway velocity (p<.01) TLC, and total length (p<.05). As for the single-leg stance balance ability, ENV and REC revealed statistically significant differences. Conclusion: These results show that water walking is effective for improving the function of the ankle flexor muscles, providing stability to the ankle joint during walking and helping efficient walk. In addition, it is also expected to help prevent falls due to loss of balance by improving the stability of lower extremity muscles and trunk.

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.

무릎외반의 균형 검사 및 보행 중에 근활성도와 발바닥압의 평가 (Evaluation of Muscle Activity and Foot Pressure during Gait, and Balance Test in Patients with Genu Valgum)

  • 윤정욱;유경태;이호성
    • 대한물리의학회지
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    • 제17권1호
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    • pp.127-137
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    • 2022
  • PURPOSE: This study sought to evaluate muscle activity and foot pressure during gait, and balance in female college students with genu valgum. METHOD: Participants were assigned based on their Q-angle to genu valgum group greater than 20° (GVG, n = 12), unilateral genu valgum group greater than 20° (UVG, n = 11), and control group (CON, n = 13). All subjects were evaluated for balance (Trace length, C90 area, C90 angle, and the Romberg test), muscle activity (gluteus medius; GM, tensor fasciae latae; TFL, vastus medialis; VM, vastus lateralis; VL, biceps femoris; BF, gastrocnemius; GCM and tibialis anterior; TA) and foot pressure (F/F ratio, R/F ratio, Hallux, 2~5 toe, 1st MT, 2~4 MT, 5th MT, Midfoot, M/heel, and L/heel) during gait. RESULTS: Romberg test showed significantly increased loss of balance in the UVG group compared with the CON. In the forward position, the imbalance was significantly increased in the UVG and GVG groups compared to the CON. Muscle activity of VL, GCM, and TA significantly increased in the GVG group compared with the CON. Static foot pressure, 1st MT significantly increased in the GVG compared to the CON group. The 5th MT significantly decreased in the CON compared with the GVG group. The R/F ratio significantly decreased in the GVG compared to the CON group. In dynamic foot pressure, the 2~5 toe significantly increased in the GVG compared with the UVG group. The left 5th MT significantly decreased in the UVG compared with the CON and GVG groups. CONCLUSION: These results indicate that genu valgum has a negative effect on balance, muscle activity, and foot pressure during gait in female college students.

Numerical study on aerodynamics of banked wing in ground effect

  • Jia, Qing;Yang, Wei;Yang, Zhigang
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제8권2호
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    • pp.209-217
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    • 2016
  • Unlike conventional airplane, a WIG craft experiences righting moment and adverse yaw moment in banked turning in ground effect. Numerical simulations are carried out to study the aerodynamics of banked wing in ground effect. Configurations of rectangular wing and delta wing are considered, and performance of endplates and ailerons during banking are also studied. The study shows that righting moment increase nonlinearly with heeling angle, and endplates enhance the righting. The asymmetric aerodynamic distribution along span of wing with heeling angle introduces adverse yaw moment. Heeling in ground effect with small ground clearance increases the vertical aerodynamic force and makes WIG craft climb. Deflections of ailerons introduce lift decrease and a light pitching motion. Delta wing shows advantage in banked turning for smaller righting moment and adverse yaw moment during banking.

달리기 시 인솔의 굽힘 강성 증가에 따른 발목과 중족골 관절의 운동학적 변인 및 관절 협응에 미치는 영향 (The Effects on Kinematics and Joint Coordination of Ankle and MTP Joint as Bending Stiffness Increase of Shoes during Running)

  • Kim, Sungmin;Moon, Jeheon
    • 한국운동역학회지
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    • 제31권3호
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    • pp.205-213
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    • 2021
  • Objective: The aim of this study was to analyze body stability Joint coordination pattern though as bending stiffness of shoes during stance phase of running. Method: 47 male subjects (Age: 26.33 ± 2.11 years, Height: 177.32 ± 4.31 cm, Weight: 65.8 ± 3.87 kg) participated in this study. All subjects tested wearing the same type of running shoes by classifying bending stiffness (A shoes: 3.2~4.1 N, B shoes: 9.25~10.53 N, C shoes: 20.22~21.59 N). They ran 10 m at 3.3 m/s (SD ±3%) speed, and the speed was monitored by installing a speedometer at 3 m intervals between force plate, and the measured data were analyzed five times. During running, ankle joint, MTP joint, coupling angle, inclination angle (anterior-posterior, medial-lateral) was collected and analyzed. Vector coding methods were used to calculate vector angle of 2 joint couples during running: MTP-Ankle joint frontal plane. All analyses were performed with SPSS 21.0 and for repeated measured ANOVA and Post-hoc was Bonferroni. Results: Results indicated that there was an interaction between three shoes and phases for MTP (Metatarsalphalangeal) joint angle (p = .045), the phases in the three shoes showed difference with heel strike~impact peak (p1) (p = .000), impact peak~active peak (p2) (p = .002), from active peak to half the distance to take-off until take-off (p4) (p = .032) except for active peak~from active peak to half the distance to take-off (p3) (p = .155). ML IA (medial-lateral inclination angle) for C shoes was increased than other shoes. The coupling angle of ankle angle and MTP joint showed that there was significantly difference of p2 (p = .005), p4 (p = .045), and the characteristics of C shoes were that single-joint pattern (ankle-phase, MTP-phase) was shown in each phase. Conclusion: In conclusion, by wearing high bending stiffness shoes, their body instability was increased during running.

양극의 경사각 효과에 따른 조사야 X-선 강도 분포 (Distribution of X-ray Strength in Exposure Field Caused by Heel Effect)

  • 장근조;김남훈;이준행;이상복
    • 한국방사선학회논문지
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    • 제5권5호
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    • pp.223-229
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    • 2011
  • X선은 X선관 내 음극측 전자(electron)를 빠른 속도로 가속시킨 다음 진행하는 전자의 흐름을 저지극(target)에서 차단시킬 때 에너지의 변환을 일으켜 발생한다. 가속된 고속의 전자가 저지면에 충돌하는 실제면적을 실초점(actual focal spot)이라 하고, 실초점의 크기를 X선이 나오는 방향인 중심선(central ray)측에서 관측할 경우 축소되어 작게 보이는데 이때의 초점을 실효초점(effective focal spot)이라고 한다. X선관 방사각에 따라 음극 측의 강도가 양극 측 보다 높게 나타나 X선 강도가 균등하지 않다. 이러한 효과를 경사각 효과(heel effect)라고 하며, 경사각 효과로 인하여 환자가 받는 피폭의 정도는 양극의 각도, 즉 실효초점의 크기에 따라 달라지게 된다. 본 논문에서는 실효초점의 크기와 그에 따른 환자 피폭선량의 상관관계를 알아보고 실효초점의 크기에 따른 균질선량 분포를 위한 효과적인 조사야를 제시하고자 한다. 결론적으로 초점크기에 따라서 평균적으로 -8cm ~ 0cm 범위에서 효과적인 조사야 범위를 찾을 수 있었고, 평균 선량률은 0.019 R/min이 나왔다. 이 범위를 이용하면 환자에게는 적은 피폭선량으로 균등한 흑화도 및 해상력을 가진 영상을 얻을 수 있을 것이다.

The Effect of Insole Height on Lumbosacral Angle and Body Function in Male University Students

  • Lee, Young Sin;Yu, Seong Hun;Kim, Seong Su
    • 대한인간공학회지
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    • 제34권4호
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    • pp.303-312
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    • 2015
  • Objective: The aim of this study is to investigate the effect of insole height change in the lumbosacral angle and physical functions in healthy males. Background: In order to release male's dissatisfaction with his height and to increase satisfaction with his body, using insole is generalized. There have been researches on female's body change in accordance with function of insole and heel height, whereas there are few researches on males. Method: Participants were divided into three groups. A control group had 10 participants who wore 0cm insole. Experimental group I had 10 participants who wore 2cm insole. Experimental group II had 10 participants who wore 4cm insole. All participants wore insoles during their daily lives for a trial period of 8 weeks. The results were evaluated before and after comparison, and we measured lumbosacral angle, balance (dynamic balance, agility, quickness) and lumbar pain (LBP). Results: This study showed that insole height affected lumbosacral angle and dynamic balance and pain. In particular, there were significant differences in the 4cm group among the three groups (p<.05). The 2cm group did show a significant difference in lumbosacral angle and pain (p<.05). Furthermore, no significant difference was observed within the control group. Conclusion: The 4cm insole height suggests that the increase of lumbosacral angle contributes to some changes in LBP, balance, pain and physical functions, probably leading to negative effects on variety of activities of daily life. Application: The results of wearing insoles with proper height will help to prevent musculoskeletal disorders.

음의 복원력에 의한 횡경사 실험 연구 (An Experimental Study on Loll)

  • 유수연;박청룡;정대득
    • 해양환경안전학회지
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    • 제22권6호
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    • pp.654-659
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    • 2016
  • 정기적으로 운행하던 여객선 세월호가 소각도 변침 중에 급격히 횡경사되면서 전복하는 사고가 최근 발생하였다. 선박의 횡경사가 발생 원인에 따라 Heel, List, Loll로 구분되어 그 원인에 따라 적절히 대응해야 함에도 불구하고 음의 복원력에 의한 횡경사(Loll)에 대한 항해사들의 인식이 매우 부족하다. 이에 본 연구에서는 음의 복원력에 의한 횡경사에 대한 개념, 발생과정 및 횡경사각 산정법을 고찰하고, 박스형 모형선을 이용한 수조 실험을 통해 실제 횡경사각의 발생과 음의 복원력 정도에 따른 횡경사각의 크기를 이론식과 비교 검증하였다. 그 결과, 실험값은 이론식에 의한 횡경사각 계산값과 잘 일치하였으며, 음의 복원력에 의한 횡경사의 특성으로서 좌현과 우현에서 동일한 각도의 횡경사가 발생하였다. 본 연구를 통하여 음의 복원력을 가진 선박의 거동에 관한 인식이 확대되고 과거 원인이 불명확한 전복사고의 원인분석에 참조되길 기대한다. 향후 음의 복원력에 의한 횡경사에서의 부적절한 대응으로 전개될 수 있는 선박의 거동에 관한 실험연구 및 사례연구가 필요하다고 사료된다.

음의 복원성과 선박의 횡경사 (Negative GM and Ship's Transverse Stability)

  • 유수연;양형선;정대득
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2016년도 춘계학술대회
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    • pp.108-109
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    • 2016
  • 선박이 횡경사 되었을 때, 그 발생 원인을 파악하고 적절히 대응하는 것은 매우 중요하다. 특히 최근 발생한 대형 해난사고 중 일부는 항행중 복원력 감소에 의한 횡경사와 관련된 것으로 추정된다. 본 연구에서는 음의 복원력(-GM)에 의한 선박의 횡경사를 실험하고, 그 값을 동일 조건에서의 계산값과 비교하였다. 또한 Loll과 List를 구별하는 것과 Loll 발생 시 대응방안에 대해서 기술하고자 한다.

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보행 시작과 멈추는 거리가 보행 변인에 미치는 영향 (The Effects of Start and Finish Distance on the Gait Variables during Walking)

  • 임비오;안승현;이상우;도인영
    • 한국운동역학회지
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    • 제17권1호
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    • pp.17-27
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    • 2007
  • It is essential for gait analysis to know the distance information. The purpose of this study was to investigate the effects of start and finish distance on the gait variable during walking. Six adolescent participated in this study. Start condition was given by six conditions.: walking forward from (1) one step, (2) three steps, (3) five steps, (4) ten steps, (5) one step after standing walk, and (6) three steps after standing walk, before contacting the force plate. Stop condition was given by four conditions. : stop after (1) one step, (2) two steps, (3) three steps, and (4) ten steps, passing force plate. Repeated measured one-way ANOVA was utilized for data analysis, and the significant level was set at .05. The largest change from the difference of gait velocity exists between the variables of ground reaction force. There were no significant differences in spatio-temporal and posture(angle) variables, as well as ground reaction force variables with walking over the three steps. There were significant differences in gait velocity, knee angle at heel contact, vertical impulse and ankle angle at toe off in short distance.