• Title/Summary/Keyword: lower limb muscle

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Comparison of Trunk and Lower Limb Muscle Activities on Kicking Motion in Elite and Non-elite Taekwondo Athletes (태권도 발차기 동작 시 숙련도에 따른 체간과 하지근육의 근 활성도 비교)

  • Hwang, Si Yeong;Shin, Yun A;Lee, Joon Hee
    • 한국체육학회지인문사회과학편
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    • v.54 no.1
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    • pp.515-525
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    • 2015
  • The purpose of this study was to compare muscular activities according to the mastery of Taekwondo kicking motions with the subjects of 8 demonstration team members and 8 undergraduates in Taekwondo major at University. The muscles mainly used for Taekwondo's front kick, tornado kick, or turning hook kick are total 8 trunk muscles and 8 lower limb muscles of the kicking foot as well as the supporting foot. Analyzing the muscular activities of those areas comparatively, the study has reached the following results. At the front kick, non-experts showed higher lower abdominal muscle, biceps thigh muscle activity of the kicking foot and lateral gastrocnemius muscle activity of the supporting foot but lower 2 spinals muscular activity than experts. At the tornado kick (or turning kick), in the turning motion, experts indicated higher activity in biceps muscle of thigh and spinalis than non-experts whereas in the kicking motion, they didn't show the difference between groups except biceps thigh muscle activity. At the turning hook kick, non-experts indicated higher lateral gastrocnemius muscle activity of the kicking foot and quadricpes femoris muscle activity of supporting foot muscular activity than experts. In summary, experts tend to use their trunk in the turning motion for rapid turning and show rather low muscular activity of their kicking foot. However, non-experts indicate high muscular activity in their kicking foot and supporting foot, which means to maintain balance in the kicking motion, they tend to make use of their lower limb more than trunk muscle, and it leads to an inefficient motion.

Changes in Lower Limb Muscle Activity during Lunge according to the Different Angle of Ankle Joint

  • Ryu, Heun-Jae;Kim, Youn-Tae;Park, Hee-Joon;Kwon, Jung-Won
    • The Journal of Korean Physical Therapy
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    • v.33 no.1
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    • pp.40-46
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    • 2021
  • Purpose: This study compared the muscle activity of the lower limb according to the three types of fixed angles of the ankle joint during a lunge exercise. Methods: Twenty healthy subjects performed the lunge motion in a trial including the three types of fixed angle. The lunge motion with a neutral, 20° dorsiflexion, and 20° plantarflexion of the ankle joint were randomized and measured repeatedly. The muscle activity of the rectus femoris (RF), vastus medialis (VM), vastus lateralis (VL), biceps femoris (BF), and semitendinosus (ST) was measured by surface electromyography. Results: In the change in ankle joint angle, the RF, VL, BF, and ST muscle activity showed significant differences (p<0.05). In the 20° dorsiflexion position, the muscle activity of VL, BF, and ST showed a significant decrease compared to that in the neutral position (p<0.017). The muscle activity of RF and VL in the neutral position was greater than that in the 20° plantarflexion position (p<0.017). Only the muscle activity of the BF in the 20° plantarflexion position was significantly greater than the 20° dorsiflexion position (p<0.017). Conclusion: These results revealed a difference in the muscle activity of lower extremities in the proximal region according to the angle of the ankle joint during the lunge.

Design of a Novel Gait Rehabilitation Robot with Upper and Lower Limbs Connections (상하지 연동된 새로운 보행재활 로봇의 설계)

  • Yoon, Jung-Won;Novandy, Bondhan;Christi, Christi
    • Journal of Institute of Control, Robotics and Systems
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    • v.14 no.7
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    • pp.672-678
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    • 2008
  • This paper proposes a new rehabilitation robot with upper and lower limb connections for gait training. As humans change a walking speed, their nervous systems adapt muscle activation patterns to modify arm swing for the appropriate frequency. By analyzing this property, we can find a relation between arm swinging and lower limb motions. Thus, the lower limb motion can be controlled by the arm swing for walking speed adaptation according to a patent's intension. This paper deals with the design aspects of the suggested gait rehabilitation robot, including a trajectory planning and a control strategy. The suggested robot is mainly composed of upper limb and lower limb devices, a body support system. The lower limb device consists of a slider device and two 2-dof footpads to allow walking training at uneven and various terrains. The upper limb device consists of an arm swing handle and switches to use as a user input device for walking. The body support system will partially support a patient's weight to allow the upper limb motions. Finally, we showed simulation results for the designed trajectory and controller using a dynamic simulation tool.

Cross-education Effects of Muscle Strength and Balance on Unilateral Isokinetic Exercise in Ankle

  • Son, Sung Min;Kang, Kyung Woo
    • The Journal of Korean Physical Therapy
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    • v.32 no.3
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    • pp.163-167
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    • 2020
  • Purpose: Unilateral strength training effects on contralateral sides have been demonstrated in previous studies for lower extremity exercise, upper extremity exercise, and unilateral surface electrical stimulation. This study was performed to investigate the effects of unilateral ankle training on muscle strength and the balance of contralateral lower extremity in healthy adults. Methods: Thirty healthy subjects were randomized equally to a training or a control group. Those in the training group received unilateral ankle isokinetic strengthening training of the dominant leg (right side) for 4 weeks. Contralateral single-limb balance, including Anterio-Posterior Stability Index (APSI), Medio-Lateral Stability Index (MLSI) and Overall Stability Index (OSI), was assessed before and after intervention. Results: Comparison of pre- and post-test data revealed significant improvements in ipsi- and contralateral ankle strengths, and significant improvement in contralateral single limb balance. Conclusion: These results have practical implications because they demonstrate that unilateral ankle isokinetic exercise improves ankle muscle strength and balance ability of contralateral lower extremity.

Effects of Muscle Strengthening Exercises Using a Thera Band on Lower Limb Function of Hemiplegic Stroke Patients (세라밴드를 이용한 근육강화운동이 뇌졸중 환자의 하지기능에 미치는 효과)

  • Han, Sang-Sook;Her, Jeong-Ja;Kim, Youn-Jung
    • Journal of Korean Academy of Nursing
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    • v.37 no.6
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    • pp.844-854
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    • 2007
  • Purpose: This study was to verify the effect of muscle strengthening exercises using a Thera-Band on the lower limbs. Methods: The design utilized for this study was a nonequivalent control group pretest-posttest design. A control group (16) and experimental group (16) were selected from stroke patients of K Oriental Medicine Hospital who were hospitalized for 5 months from December 2005 through April 2006. While only acupuncture therapy and physical therapy were used on the control group, acupuncture, physical therapy and additional muscle strengthening exercises using a red thera band were used on the experimental group. Muscle strengthening was performed 20 minutes per session, more than one session a day for 4 weeks. Hypotheses for this study were verified using Two-way repeated ANOVA and ANCOVA using a pre test score as a covariate. Results: The experimental group with thera band muscle strengthening exercises showed a decrease in asymmetry weight loading percentage(F=14.704, P= .010), range of knee (Z=-3.15, P= .001) & deep tendon reflex score(Z=-2.52, P= .012) and moving performance(F=12.328, P= .001)compared to the control group. Conclusion: It is confirmed that muscle strengthening exercises using a Thera-Band can be used as an effective nursing intervention to improve the function of the lower limb of hemiplegic stroke patients.

Development of advanced walking assist system employing stiffness sensor

  • Kim, Seok-Hwan;Shunji, Moromugi;Ishimatsu, Takakazu
    • 제어로봇시스템학회:학술대회논문집
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    • 2004.08a
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    • pp.1638-1641
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    • 2004
  • Many walking stands, and assisting tools have been developed for the people with low-limb disability to prevent diseases from bedridden state and to help them walk again. But many of those equipments require user to have some physical strength or balancing ability. In our last research, we developed walking assist system for the people with lower-limb disability. With the system, user can be assisted by actuators, and do not have to worry about falling down. The system adapted the unique closed links structure with four servomotors, three PICs as controller, and four limit switches as HMI (human man interface). We confirmed the adaptability of the system by the experiment. In this research, Muscle Stiffness Sensor was tested as the advanced HMI for walking assist system, and confirmed the adaptability by the experiment. As Muscle Stiffness Sensor can attain the muscle activity, user can interface with any device he want to control. Experimental result with Muscle Stiffness sonsor showed that user could easily control the walking assist system as his will, just by changing his muscle strength.

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Effects of Elastic Band Exercise Combined with Swiss Ball Exercise on Lower Extremity Muscle Strength, Balance, and Pain in Middle-Aged Women with Osteoarthritis

  • Yohan Yoo;Jongeun Yim
    • Physical Therapy Rehabilitation Science
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    • v.12 no.3
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    • pp.355-364
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    • 2023
  • Objective: The aim of this study is to test the effects of elastic band exercise accompanied by Swiss ball exercise on lower limb muscle strength, balance and pain in middle-aged women with osteoarthritis. Design: A randomized controlled trial. Methods: Thirty-five participants were randomly assigned to the experimental group (n=18), which performed elastic band exercise combined with Swiss ball exercise, and the control group (n=17), which performed elastic band exercise only. Both groups did a 30-minute session of exercise three times a week for eight weeks and were assessed for lower extremity muscle strength, static and dynamic balance, and pain levels before the first therapy session. All participating patients underwent outcome assessment after eight weeks of therapy without any additional treatment. Results: The experimental group made a significant increase in muscle strength of the lower extremities, static and dynamic balance ability, and pain level (p<0.05). The control group made a significant improvement in lower limb muscle strength, dynamic balance ability and pain level (p<0.05) with no such improvement in static balance ability. The exercise group made a significant increase in static and dynamic balance ability and pain level compared to the control group (p<0.05). Conclusions: These results demonstrated that both Swiss ball exercise and elastic band exercise were effective for middle-aged women with osteoarthritis and found that elastic band exercise combined with Swiss ball exercise produced more significant effects on their balance and pain.

Diagnostic significance of body component analysis test for low back pain (요각통(腰脚痛)에 대(對)한 체성분(體成分) 분석검사(分析檢査)의 진단적(診斷的) 의의(意義))

  • Roh, Jeong-Du;Yook, Tae-han
    • Journal of Acupuncture Research
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    • v.19 no.2
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    • pp.128-136
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    • 2002
  • Objective : The purpose of this study was to evaluate water distribution differences of the right and left low limb in patients who had low back pain with sciatica or not. Methods : Water distribution differences of the right and left low limb by body composition(INBODY 2.0, Biospace, seoul, korea) were analysed in the views of groups(low back pain with and without sciatica) and duration of disease. Results : 1. In the case of low back pain patient, there was no significance in variance of water distribution of the right and left lower limbs regardless of suffering period, but significance difference in patients that have suffered low back pain with one side sciatica showed according to suffering period. 2. Within 2 weeks, there was no significant deflection between low back pain with and without sciatica in water distribution of the right and left lower limbs, More than 2 weeks significant deflection showed. Conclusion : Loss of lower limb's muscle that ensue in contracting a disease period was observed in Low Back Pain with Sciatica. The continuos studies about pathological change of lower limb in low back pain have to be perfomed.

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The Effect of Application of Aquatic Exercise Program for Hemiplegia on Physical Function and Length of Lower Limb (편마비환자의 수중운동프로그램적용이 체력 및 하지길이에 미치는 영향)

  • Park, Sung-Jin
    • The Journal of Korean Academy of Orthopedic Manual Physical Therapy
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    • v.18 no.2
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    • pp.77-85
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    • 2012
  • Background: This study has conducted an experiment on 14 disabled hemiplegia (female) introduced from D rehabilitation welfare center, sorted out subjects who will enthusiastically and sincerely follow the experiment for 8 weeks (before-after), and grouped them into control group (7 people), and aquatic exercise program group (7 people). After researching the effect of application of exercise program to hemiplegia on physical function and length of lower limb, we have come to the following conclusion. In case of hemiplegia, we have concluded that aquatic exercise program can aid muscle strengthening and lower limb since aquatic exercise program activates physical function and deep muscle, showing a positive influence on muscular strength and flexibility, and a significant influence on balance of lower limb. This result is considered to make people recognize the importance of rehabilitation exercise when making a program for daily life activity, injury prevention, and treatment for hemiplegia, and we believe that such reference will be proposed as a theoretical basis for application of aquatic exercise program to hemiplegia, and further be a great aid to similar studies.

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Development of surface electrode type electrical stimulator or supporting walk function in foot drop patients (족하수 환자에서의 보행기능 보조를 위한 표피 자극형 전기자극기 개발)

  • Lim, S.K.;Jeong, H.C.;Kim, K.G.;Jin, D.B.;Park, B.R.
    • Proceedings of the KOSOMBE Conference
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    • v.1997 no.11
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    • pp.9-13
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    • 1997
  • The present study was designed to develop the functional electrical stimulation system in order to restore motor function of paralytic patients. We attempt to establish adequate stimulus parameters for the recovery of work unction in lower limb paralysis patients and to develop the electrical stimulation system, which is effective to protect foot drop in these patients. In our animal and human experiment, adequate stimulus condition for surface electrode on the lower limb were 0.2-0.3ms at the duration and 50 Hz, which contain 600Hz train pulse. This parameter has efficiently prevented the foot drop from lower limb paralysis, decreased muscle fatigue and induced powerful contraction of lower limb muscle.

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