• Title/Summary/Keyword: 트레드밀 보행

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Effect of Body Weight Support Treadmill Training on Gait and Standing Balance in Patients With Hemiplegia (체중지지 트레드밀훈련이 편마비 환자의 보행과 서기균형에 미치는 영향)

  • Kim, Myoung-Jin;Lee, Jeong-Ho
    • Physical Therapy Korea
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    • v.10 no.1
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    • pp.29-35
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    • 2003
  • Body weight support treadmill training is a new and promising therapy in gait rehabilitation of patients with hemiplegia. The purpose of this study was to identify the effects of body weight support treadmill training on gait and standing balance in patients with hemiplegia. Eighteen patients with hemiplegia participated in the study. A 10 m-timed walk test, measurements of step length and standing balance score were administered. Intervention consisted of body weight support treadmill training five times a week for 2 weeks. The data were analyzed by paired t-test. Body weight support treadmill training scoring of standing balance, step length and 10 m-timed walk test showed a definite improvement. Body weight support treadmill training offers the advantages of task-oriented training with numerous repetitions of a supervised gait pattern. The outcomes suggest that patients with hemiplegia can improve their gait ability and standing balance through body weight support treadmill training.

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A non-merging data analysis method to localize brain source for gait-related EEG (보행 관련 뇌파의 신호원 추정을 위한 비통합 데이터 분석 방법)

  • Song, Minsu;Jung, Jiuk;Jee, In-Hyeog;Chu, Jun-Uk
    • Journal of IKEEE
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    • v.25 no.4
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    • pp.679-688
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    • 2021
  • Gait is an evaluation index used in various clinical area including brain nervous system diseases. Signal source localizing and time-frequency analysis are mainly used after extracting independent components for Electroencephalogram data as a method of measuring and analyzing brain activation related to gait. Existing treadmill-based walking EEG analysis performs signal preprocessing, independent component analysis(ICA), and source localizing by merging data after the multiple EEG measurements, and extracts representative component clusters through inter-subject clustering. In this study we propose an analysis method, without merging to single dataset, that performs signal preprocessing, ICA, and source localization on each measurements, and inter-subject clustering is conducted for ICs extracted from all subjects. The effect of data merging on the IC clustering and time-frequency analysis was investigated for the proposed method and two conventional methods. As a result, it was confirmed that a more subdivided gait-related brain signal component was derived from the proposed "non-merging" method (4 clusters) despite the small number of subjects, than conventional method (2 clusters).

The Effect of Treadmill and Body Weight Support Treadmill Training on Balance and Gait Ability in Hemiplegia Patients (편마비 환자의 트레드밀과 체중지지의 트레드밀 훈련이 균형능력 및 보행능력에 미치는 영향)

  • Kim, Sung-Chul;Hur, Young-Goo
    • Journal of Korean Physical Therapy Science
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    • v.25 no.1
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    • pp.31-43
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    • 2018
  • Purpose: The purpose of this study is to investigate and to verification of changes that the effect of treadmill and body weight support treadmill training on balance and gait ability for sub-acute stroke patients during 4 week. Method: 16 subjects who was diagnosed stroke were divided into 2 groups(8-treadmill training group, 8-body weight support treadmill group) by randomized control trial. Both training programs were consisted with 40 minuted, 5 times a week for 4 weeks and after training programs. Analysis: We analysed effects and changes on balance and gait ability. Analyses were performed using PASW ver. 18.0 and results were reported as mean ${\pm}$ standard deviation (S.D.). To investigate within group comparisons and to verification on effects of exercise, we did paired t test and repeated measured ANOVA test. Significance was set at p<.05. Result: Both training programs showed positive changes in Limit of Stability but significant results which is area of hemiside, area of intact side, area of posterior, total area were reported in body weight support treadmill training group. Changes of Berg Balance Scale was significantly increase and it had significant correlation between groups. Changes of 6 Minutes Walking Test was significant increase in both groups but there was no significant changes on Foot print and Romberg test. Conclusion: After considering all factors, both training programs showed effect on improvement of balance and gait ability in sub-acute stroke patients, but body weight support treadmill training group had better improvement in dynamic balance than treadmill training group. For the increase of balance and gait ability in sub-acute stroke patients, we need to continues study on difference of treadmill and body weight support treadmill and then we will give stroke patients a better satisfaction if we develop and provide a rehabilitation program for improvement of balance and gait ability.

The Effects of Speed Variations in Treadmill Training on Thickness of Lower Extremity Muscles (속도가 다른 트레드밀 훈련이 다리 근두께에 미치는 영향)

  • Park, Chi-Bok
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.17 no.12
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    • pp.363-370
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    • 2016
  • The purpose of this study was to determine the effects of speed variations in treadmill training on the thickness of lower extremity muscles. A total of 36 university students were divided into three groups: MVTG (n=12), HVTG (n=12), and ATG (n=12). Subjects in MVTG underwent treadmill training with their own average speed; those in HVTG underwent treadmill training with 130% speed of their own average speed; and those in ATG underwent treadmill training with alteration of speed, between 100% and 130% of their own average speed. Treadmill training was performed for 60 minutes a day, three times per week, for a total of 6 weeks. Ultrasonography was used to compare the muscle thickness between rectus femoris, vastus lateralis, gastrocnemius, and tibialis anterior. The result was as follows: The rectus femoris, vastus lateralis, and gastrocnemius were significantly increased after the training period, and they also were statistically significant in interaction. Moreover, tibialis anterior was also significantly increased. Therefore, compared to the average-speed treadmill training, speed variations had a greater effect on thickening the lower extremity muscles. In the near future, we will conduct a study applying the findings from this study in a rehabilitation program for patients with gait disturbance due to nervous or musculoskeletal system disease.

The Effects of Task Oriented Circuit Training on the Function of Lower Extremity and Quality of Life in Hemiplegic Patients (순환식 과제 지향 훈련이 편마비 환자의 하지 기능과 삶의 질에 미치는 영향)

  • Cha, Hyun-Gyu;Oh, Duck-Won;Ji, Sang-Goo
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.1
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    • pp.299-305
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    • 2014
  • The purpose of this study was to determine the effect of a task-related circuit training in improving the function of lower extremity and quality of life in patient with hemiplegia. A total 25 paients with hemiplegia selected, the volunteers were randomly divided into a task-related circuit training group of 13 people and a treadmill training group of 12 people. The two groups received treadmill training for 30 minutes a day, 5 days a week for 8 weeks. The experimental group was additionally received the task related circuit training for 30 minutes. The assessment comprised of testing the patient's strength, walking, balance ability(strength of knee, balance ability, 10m walking test) and making use of the stroke impact scale. Post treatment, compared to the treadmill training group, task-related circuit training group showed significantly increased strength of knee extensor, flexor and balance ability, stoke impact scale(p<.05). The findings of this study suggest that a task-related circuit training can improve function of lower extremity and quality of life in patient of hemiplegia. Further studies with a greater sample size and a various intervention are needed to generalize the findings of the present study.

Effect of Treadmill Gradient Training on Lower Limb Muscle Activity in Chronic Stroke Patient (만성 뇌졸중 환자의 하지 근육의 활성도에 트레드밀 경사도 훈련이 미치는 영향)

  • Kim, Shin-Gyun
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.13 no.1
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    • pp.220-226
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    • 2012
  • The purpose of this study was to identify the effect of treadmill gradient training on lower limb muscle activity in chronic stroke patients. The subject were 32 stroke patients.. Subjects were randomly divided into three group which were control group($0^{\circ}$treadmill training(n=10)) and experimental group($5^{\circ}$treadmill training (n=10) and $10^{\circ}$treadmill training(n=12)). Three groups received treadmill gradient training for 30 minutes while 3 times per week for 6 weeks in addition to conventional physical therapy. Muscle strength was measured by EMG on rectus femoris, biceps femoris, tibialis anterior and gastrocnenius for muscle activities. In comparison of activity of rectus femoris and gastrocnemius between pre and post value, the activity of rectus femoris was significant in the experimental and control group(p<.05) and the activity of biceps femoris was significant in the $5^{\circ}$treadmill gait training group and $10^{\circ}$treadmill gait training group(p<.05). The activity of tibialis anterior was significant in the $5^{\circ}$treadmill gait training group and $10^{\circ}$treadmill gait training group(p<.05). In comparison of the difference of activity of rectus femoris among 3 groups, there was a significant difference between the $5^{\circ}$treadmill gait training group and control group(p<.05). and difference of activity of tibialis anterior was significant difference between the $10^{\circ}$treadmill gait training group and control group(p<.05). These findings suggest that $5^{\circ}$treadmill gait training group and $10^{\circ}$treadmill gait training group can be used to improve lower limb muscle activity in chronic stroke patient. In conclusion, these treadmill gradient training helped improving function of gait ability in chronic stroke patient.

Effect on Respiratory Function of the General Adult by Gait Training Based on the Way in a Speed Pattern (속도 방식에 따른 보행훈련이 일반 성인의 호흡기능에 미치는 영향)

  • Jeong, Hyung-Yoon;Cho, Woon-Soo;Choi, Ah-young;Kim, Yong-Seong
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.10
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    • pp.515-522
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    • 2018
  • The purpose of this study was to determine the effect of gait training based on the way in a speed pattern on the respiratory function of general adults. A total of 37 people were divided into three groups to conduct fast, standard, and interval gait training. For gait training, a treadmill was used. Three groups were trained for 60 minutes, three times per week, for a period of 6 weeks. Inspiration pressure, maximum inspiration volume, and the size of diaphragm movement were measured. Repeated Measures ANOVA was used to compare times, groups, and interactions. For inspiratory pressure, maximum inspiration volume, and size changes in diaphragm movement, there were significant differences depending on the time and interaction between times and groups. For size changes in diaphragm's movement, there was a significant difference between interval gait training group and standard gait training group. Therefore, interval gait training had effects on size changes in diaphragm movement.

The Development and Verification of Balance Insole for Improving the Muscle Imbalance of Left and Right Leg Using based Sound Feedback (청각 피드백이 적용된 좌우 불균형 개선을 위한 밸런스 인솔 개발 및 검증)

  • Kang, Seung-Rok;Yoon, Young-Hwan;Yu, Chang-Ho;Nah, Jae-Wook;Hong, Chul-Un;Kwon, Tae-Kyu
    • Journal of rehabilitation welfare engineering & assistive technology
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    • v.11 no.2
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    • pp.115-124
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    • 2017
  • This study was to develop the balance insole system for detecting and improving the muscle imbalance of left and right side in lower limbs. We were to verify the validation of balance insole system by analyzing the strategy of muscular activities and foot pressure according to sound feedback. We developed the balance insole based FSR sensor modules for estimating the muscle imbalance using detecting foot pressure. The insole system was FPCB have 8-spot FSR sensor with sensitivity range of 64-level. The participants were twenty peoples who have muscle strength differences in left and right legs over 20%. We measured the muscular activity and foot pressure of left and right side of lower limbs in various gait environment for verifying the improvement effect of muscle imbalance according to sound feedback. They performed gait in slope at 0, 5, 10, 15% and velocity at 3, 4, 5km/h. The result showed that the level of muscle imbalance reduced within 30% for sound feedback of balance insole system contrast to high level of muscle imbalance at 169.9~246.8% during normal gait for increasing slope and velocity. This study found the validation of balance insole system with sound feedback stimulus. Also, we thought that it is necessary to research on the sensitivity of foot area, detection of muscle imbalance and processing algorithm of correction threshold spot.

Voluntary Motor Control Change after Gait Training in Patients with Spinal Cord Injury (척수신경손상 환자의 보행훈련 전.후의 능동적 근육제어의 변화)

  • 임현균;이동철;이영신;셔우드아더
    • Journal of Biomedical Engineering Research
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    • v.24 no.2
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    • pp.133-140
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    • 2003
  • In this study, muscle activity was measured using surface EMG (sEMG) during a voluntary maneuver (ankle dorsiflexion) in the supine position was compared pre and post gait training. Nine patients with incomplete spinal cord injury participated in a supported treadmill ambulation training (STAT), twenty minutes a day, five days a week for three months. Two tests, a gait speed test and a voluntary maneuver test, were made the same day, or at least the same week, pre and post gait training. Ten healthy subjects' data recorded using the same voluntary maneuvers were used for the reference. sEMG measured from ten lower limb muscles was used to observe the two features of amplitude and motor control distribution pattern, named response vector. The result showed that the average gait speed of patients increased significantly (p〈0.1) from 0.47$\pm$0.35 m/s to 0.68$\pm$0.52 m/s. In sEMG analysis, six out of nine patients showed a tendency to increase the right tibialis anterior activity during right ankle dorsiflexion from 109.7$\pm$148.5 $mutextrm{V}$ to 145.9$\pm$180.7 $mutextrm{V}$ but it was not significant (p〈0.055). In addition, only two patients showed increase of correlation coefficient and total muscle activity in the left fide during left dorsiflexion. Patients' muscle activity changes after gait training varied individually and generally depended on their muscle control abilities of the pre-STAT status. Response vector being introduced for quantitative analysis showed good Possibility to anticipate. evaluate, and/or guide patients with SCI, before and after gait training.

Effect of Correction to Muscle Imbalance in Lower Limbs according to Reduction of Weight Bearing Methods of Four Point of Horizontal Shaft (횡축 4정점 체중부하 감소기법 이용한 하지 근력불균형 개선에 미치는 효과)

  • Kang, S.R.;Kim, U.R.;Jeong, H.C.;Kwon, T.K.
    • Journal of rehabilitation welfare engineering & assistive technology
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    • v.7 no.2
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    • pp.101-107
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    • 2013
  • In this paper, we were to investigate effect of correction to muscle imbalance in lower limbs according to reduction of weight bearing methods of four point of horizontal shaft using two-belt treadmill. Participants were divided to two group according to each ten peoples who have difference of muscle function in left and right legs over 20%. Experiment progressed forty minutes a day three days a week, total four weeks and we estimated the maximal peak torque and average power for testing joint torque in hip, knee and ankle. The results showed that the correction effect of muscle imbalance to the maximal muscle strength was the most effective in hip joint. Also in knee joint, correction effect of muscular reaction was the most effective too. We thought that reduction of weight bearing methods could be positive effect to correct muscle imbalance in lower limbs.

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