• 제목/요약/키워드: Support leg

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Relationship between Kinesiotaping and compression wear for postural balance in healthy men: a cross-sectional study

  • Choi, Nak-Hoon;Hwang, Sujin
    • Physical Therapy Rehabilitation Science
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    • 제9권4호
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    • pp.275-280
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    • 2020
  • Objective: Compression wear is an external aid which promotes performance and recovery, diminishes muscular microtrauma, reduces muscle fiber recruitment, improves neuromechanics, enhances coordinative activities, and reduces the perceived exertion. The purpose of this study was to investigate the relationship between athletic taping and compression wear on dynamic postural balance in healthy young men. The hypothesis was that the athletic taping and compression wear would affect dynamic postural balance, with athletic taping having a different effect on dynamic postural balance in healthy young adults. Design: Cross-sectional study. Methods: Thirty-seven healthy young men participated in this study. To examine the association between athletic taping and compression wear, 3 clinical measurement tools, including 5 times sit-to-stand (5xSTS), one-leg standing (OLS) test, and Y-balance test (YBT) in 5 different conditions, namely (1) non-supporting, and support with (2) athletic taping, (3) regular compression wear, (4) silicon compression wear, and (5) double-fiber compression wear were used. Results: The distance of the Y-balance test (YBT) on both the dominant and non-dominant sides showed a statistically difference among the 5 supporting conditions (p<0.05). The distance measured via the YBT in the non-support condition was significantly different than that in the other four supporting conditions (p<0.05). However, 5xSTS and OLS were not significantly different in these supporting conditions. Conclusions: The results of this study suggest that athletic taping, silicon compression wear, and double-fiber compression wear were more effective for dynamic balance than non-supporting and regular compression wear.

발레 삐루엣 동작 수행정도에 따른 각도, 중심변인 및 근활동 분석 (Analysis for Angle, Center of Mass and Muscle Activity on Good and Bad Motion of the Pirouette in Ballet)

  • 권안숙
    • 한국운동역학회지
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    • 제21권2호
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    • pp.181-187
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    • 2011
  • The purpose of this study was to identify major factors on pirouette in ballet, and especially angle, Center of Mass(CM) & muscle activity aspects. The data were collected by using Motion Analysis System with 12 cameras to analyze kinematic variables with 120 Hz and Electromyography(EMG; 4,000 Hz) & Force Platform(1,000 Hz) to analyze kinetic variables. The subjects of this study were 8 female ballet dancers. The results as follow. First of all, full extension of knee joint and full plantar flexion of ankle joint appeared at the similar point. Secondly, in the rotational phase, total movement of segments in Good motion is smaller than that of Bad motion(in Good motion, head movement 2.70 cm, right shoulder movement 0.72 cm, left shoulder 4.26 cm, left wrist 17.4 mm smaller than Bad motion). Third, CoP distance of Good motion is 11.76 mm, and CoP distance of Bad motion is 11.76 mm, so Good motion is 5.98 mm smaller). Lastly, Pirouette need more retus femur activity than gastrocnemius activity in extention phase and rotation phase of support leg.

무릎근력 지원용 모듈식 웨어러블 시스템 개발 (Development of a Modular-type Knee-assistive Wearable System)

  • 유승남;한정수;한창수
    • 대한인간공학회지
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    • 제29권3호
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    • pp.357-364
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    • 2010
  • This study proposes a lower-limb exoskeleton system that is controlled by a wearer's muscle activity. This system is designed by following procedure. First, analyze the muscle activation patterns of human leg while walking. Second, select the adequate actuator to support the human walking based on calculation of required force of knee joint for step walking. Third, unit type knee and ankle orthotics are integrated with selected actuator. Finally, using this knee-assistive system (KAS) and developed muscle stiffness sensors (MSS), the muscle activity pattern of the subject is analyzed while he is walking on the stair. This study proposes an operating algorithm of KAS based on command signal of MSS which is generated by motion intent of human. A healthy and normal subject walked while wearing the developed powered-knee exoskeleton on his/her knees, and measured effectively assisted plantar flexor strength of the subject's knees and those neighboring muscles. Finally, capabilities and feasibility of the KAS are evaluated by testing the adapted motor pattern and the EMG signal variance while walking with exoskeleton. These results shows that developed exoskeleton which controlled by muscle activity could help human's walking acceptably.

The Immediate Effects of Neck and Trunk Stabilization Exercises on Balance and Gait in Chronic Stroke Patients

  • Choe, Yu-Won;Kim, Myoung-Kwon
    • 대한물리의학회지
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    • 제15권4호
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    • pp.37-45
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    • 2020
  • PURPOSE: The purpose of this study was to identify the effects of neck stabilization exercise combined with trunk stabilization exercise on balance and gait function in patients with chronic stroke. METHODS: Twenty-two chronic stroke patients were included in this study. The experimental group subjects (n = 11) performed neck stabilization (15 min) and trunk stabilization (15 min) exercises, while the control group subjects (n = 11) performed trunk stabilization exercise only for 30 min. Before and after the intervention, the subjects underwent static balance and gait testing. RESULTS: The 95% confidence ellipse area, center of pressure (COP) path length, and COP average velocity were significantly lower in both groups after the intervention compared to before intervention (p < .05). The average stance force on the affected side increased significantly in both groups after the intervention (p < .05). The changes in the static balance variables were larger in the experimental group than in the control group. The cadence, gait velocity, and single leg support increased significantly in both groups after intervention (p < .05). The changes in the gait variables were larger in the experimental group than in the control group. CONCLUSION: Trunk stabilization is a beneficial intervention, but the combination of neck stabilization with trunk stabilization is a more effective method to increase the gait and static balance in chronic stroke patients.

Carotenoid Pigments from Suspended and Sinking Particulate Matter in Prydz Bay, Antarctica

  • Noh, Il
    • 한국환경과학회지
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    • 제20권11호
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    • pp.1357-1371
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    • 2011
  • Suspended and sinking particles were collected during ODP Leg 119 to the Indian Ocean sector of the Antarctic Ocean. Field work was carried out at four sampling sites in Prydz Bay. Two of these sites were located in the Outer Bay, and two in the Inner Bay. At the four locations, a total of ten deployments of a sediment trap array were made. The concentrations of carotenoids both in suspended and sinking particulate matter in Prydz Bay were analyzed using HPLC. Fucoxanthin was the dominant carotenoid pigments both in suspended and sinking particles. The present study also indicates that 19'-hexanoyoxyfucoxanthin-containing prymesiophytes (Phaeocystis spp.) was abundant in the study area. The flux rates of carotenoids were generally highest at 50 m, and approximately double the flux rates at deeper horizons, however, at Inner Bay sites, the mean flux rates of carotenoids were greatest at 200 m, and 3 times greater than that of 50 m. Such anomalous high fluxes at 200 m imply that grazers were locally abundant between 100 m and 200 m at these sites close to land, and this hypothesis is supported by visual evidence of lots of fecal pellets in the 200 m trap. Integrates standing stocks versus sinking pigments data support that particulate material in Prydz Bay was not recycled rapidly.

정적 균형능력 향상을 위한 하지 의류의 EMS 적용 효과 (EMS Application Effect of Lower Extremities to Improve Static Balance Capability)

  • 황선규;박진희;김주용
    • 패션비즈니스
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    • 제25권4호
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    • pp.151-160
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    • 2021
  • The purpose of this study was to investigate whether there were improvements on balance when both ankle-jointed calf muscles and hip muscles, which affect balance capabilities, were activated through taping techniques and EMS. In this study, the One Leg Standing Test, a static balance test, was conducted by experimenting on a flat floor, foam pad, and a stretching board with a gradient of 20 degrees, respectively, to study static balance capabilities in different situations. Nine healthy men in their 20s were measured five times every five minutes considering muscle fatigue, and the difference between each variable was analyzed through post-test using nonparametric statistical analysis. Our results showed an equal increase in static balance capability was similar when EMS was applied only to calf muscles and only to hip muscles. Notably most improvements were seen when wearing calf supporters and taping technology pants, and applying EMS together. It was also found that the difference between EMS electric stimulation and balance capability was greater when wearing and applying supporters and taping technology pants. Based on the results of the present study, a muscle support band and EMS of taping techniques can improve balance capabilities. These findings are expected to form a basis for solutions Improving the balance capabilities

The Effects of Training with Immersive Virtual Reality Devices on Balance, Walking and Confidence in Chronic Stroke Patients

  • Hyun-min Moon;Ho-dong Gwak;Jang-hoon Shin;Na-eun Byeon;Wan-hee Lee
    • Physical Therapy Rehabilitation Science
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    • 제13권2호
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    • pp.250-260
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    • 2024
  • Objective: This study aimed to explore the effects of balance training using fully immersive VR devices on the balance and walking abilities of stroke patients. Design: Randomized controlled trial Methods: This study involved 54 stroke patients divided into three groups: VRT(VR and traditional physical therapy), VR(VR only), and TPT(traditional physical therapy only). Interventions were administered twice daily for 30 minutes over eight weeks. Outcome measures included the Berg Balance Scale, Timed Up and Go Test, 10-meter walk test, gait analysis, and Activities-specific Balance Confidence Scale. Results: The VRT and VR groups showed significant effects on spatiotemporal variables and confidence compared to the TPT group (p<0.05). Specifically, the VR group demonstrated superior effects in TUG, 10MWT, velocity, stride length, single-leg support, and ABC compared to the other two groups (p<0.05). Conclusions: Fully immersive VR balance training had a positive impact on balance, walking, and confidence in chronic stroke patients. Traditional physical therapy alone showed limited effectiveness, highlighting the potential of VR-based interventions in stroke rehabilitation. These findings underscore the importance of integrating VR technology into clinical practice to enhance outcomes for stroke survivors.

Kinematic Effects of Newly Designed Knee-Ankle-Foot Orthosis With Oil Damper Unit on Gait in People With Hemiparesis

  • Park, Hyung-Ki;Kim, Tack-Hoon;Choi, Houng-Sik;Roh, Jung-Suk;Cynn, Heon-Seock;Kim, Jong-Man
    • 한국전문물리치료학회지
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    • 제20권1호
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    • pp.64-73
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    • 2013
  • The purposes of this study were to develop a new orthosis controlling ankle and knee joint motion during the gait cycle and to identify the effects of the newly designed orthosis on gait kinematics and tempospatial parameters, including coordination of the extremities in stroke patients. Fifteen individuals who had sustained a stroke, onset was 16 months, participated in this study. Before application of the measurement equipment the subjects were accustomed to walking on the ankle-foot orthosis (AFO) or stance control knee with knee flexion assisted-oil damper ankle-foot orthosis (SCKAFO) for 5 minutes. Fifteen patients were investigated for 45 days with a 3-day interval between sessions. Measurements were walking in fifteen stroke with hemiparesis on the 3D motion analysis system. Comparison of AFO and SCKAFO are gait pattern. The difference between the AFO and SCKAFO conditions was significant in the gait velocity, step length of the right affected side, stance time of both legs, step-length asymmetry ratio, single-support-time asymmetry ratio, ${\phi}$-thigh angle and ${\phi}$-shank angle in the mid swing (p<.001). Using a SCKAFO in stroke patients has shown similar to normal walking speeds can be attained for walking efficiency and is therefore desirable. In this study, the support time of the affected leg with the SCKAFO was longer than with the AFO and the asymmetry ratio of single support time decreased by more than with the AFO. This indicates that the SCKAFO was effective for improving gait symmetry, single-support-time symmetry. This may be due to the decrease of gait asymmetry. Thus, the newly designed SCKAFO may be useful for promoting gait performance by improving the coordination of the extremity and decreasing gait asymmetry in chronic stroke patients.

나선형 테이핑 적용이 만성 뇌졸중 환자의 보행능력 개선에 미치는 즉각적인 효과 (The immediate effects of spiral taping on improvement of gait ability in patients with chronic stroke)

  • 김동대;박신준
    • 디지털융복합연구
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    • 제15권4호
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    • pp.529-536
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    • 2017
  • 본 연구의 목적은 마비측 다리에 나선형 방향으로 테이핑을 적용하여 뇌졸중 환자의 보행능력에 미치는 즉각적인 효과를 알아보고자 하였다. 뇌졸중 환자 42명을 각각 실험군(나선형 테이핑군) 21명과 대조군(넙다리네갈래근 테이핑군)21명으로 나누어 테이핑을 부착하였다. 두 집단 모두 10m 보행 검사(10 meter walk test)와 동적 보행 지수(Dynamic Gait Index; DGI), 가속도계(Accelerometer)를 이용한 시 공간적 보행변수 중 보행율(cadence), 속도(speed), 마비측 보행주기(gait cycle duration), 마비측 디딤기(stance phase duration), 마비측 양발 지기기(double support duration)를 측정하였다. 연구 결과 중재 전과 중재 후 두 집단 모두 10m 보행과 DGI 그리고 보행율, 보행속도에서 유의한 증가를 보였고 마비측 디딤기, 마비측 보행주기, 마비측 양발지지기에서 증가 및 감소하였지만 유의한 차이가 없었다. 두 집단간 변화량 차이는 유의한 차이가 없었다. 테이핑을 통한 뇌졸중 환자의 보행능력 변화에서 두 방법 모두 보행능력에 증가함을 알 수 있었다. 하지만 나선형 테이핑은 테이핑 절단 횟수가 적고 비교적 쉽게 적용이 가능하므로 가정에서 적용 시 보다 쉽게 적용할 수 있는 방법일 것이다.

휴머노이드 로봇의 전방향 이족보행 원격제어를 위한 안드로이드 애플리케이션 개발 (Development of Android Application for Wireless Control of Omnidirectional Biped Walking of Humanoid Robot)

  • 박규영;윤재훈;최영림;김종욱
    • 제어로봇시스템학회논문지
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    • 제20권2호
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    • pp.223-231
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    • 2014
  • Humanoid robot is the most suitable robot platform for effective human interaction and various intelligent services. The present work addresses development of real time wireless control application of humanoid robot's forward and backward walks, and turning in walking. For convenience of human users, the application is developed on Android OS (Operating System) working on his or her smartphone. To this end, theoretic background on various-directional biped walking is proposed based on joint trajectories for forward walking, which have been shaped with a global optimization method. In this paper, backward walking is scheduled by interchange of angles and angular velocities and additional change of signs in angular velocities at all the via-points connecting cubic polynomial trajectories. Turning direction in walking is also implemented by activating the transversal hip joint initially located in the support leg in two stages. After validation of the proposed walking schemes with Matlab simulator, a smartphone application for the omnidirectional walking has been developed to control a humanoid robot platform named DARwIn-OP interconnected via Wi-Fi. Experiment result of the present wireless control of a humanoid robot with smartphone is successful, and the application will be released in application market near future.