• Title/Summary/Keyword: Lower Ergometer

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Relationship Between Modified Physiological Cost Index for Isokinetic Ergometer Exercise Test and Oxygen Consumption (등속성 에르고미터 운동을 이용한 수정된 생리적 부담 지수와 산소소비량 변화량과의 상관성)

  • Park, Ho-Joon;Cho, Sang-Hyun;Yi, Chung-Hwi;Park, Jung-Mi
    • Physical Therapy Korea
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    • v.7 no.2
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    • pp.20-34
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    • 2000
  • The purpose of this study was to establish modified physiological cost index (PCI) for predicting energy consumption by heart rate (HR) at isokinetic ergometer exercise testing. The subjects were twenty-eight healthy men in their twenties. All of them performed upper and lower extremity isokinetic ergometer exercise tests which had six loads (400, 500, 600, 700, 800, and 900 kg-m/min) and five loads (400, 500, 600, 700, and 800 kg-m/min) respectively. The exercise sessions were finished when HR was in plateau. HR and oxygen consumption were determined during the final minute. Resting heart rate and oxygen consumption were used for calculating heart rate, oxygen consumption changes and modified PCI. Regression analysis established the relationship between each variable to work load, HR and oxygen consumption. The results were as follows: 1) In the lower extremity ergometer exercise test, oxygen consumption increased continuously as work load increased, but in the upper extremity ergometer test, oxygen consumption only increased until work load was 700 kg-m/min. 2) HR increased as work load increased in both exercise tests, but in the upper extremity ergometer test, HR decreased from the 700 kg-m/min. 3) The modified PCI increased as work load mcreased until the 700 kg-m/min point in the lower extremity ergometer test and until the 500 kg-m/min point in the upper extremity ergometer test when it started to decrease in both tests. 4) In the lower extremity ergometer exercise test, regression analysis established the relation as $dVO_2$ = -.0215HR - .2141 where $dVO_2$ is given in l/min and HR in beat/min ($R^2$ = .2677, p = .000). ln the upper extremity ergometer exercise test. regression analysis established the relation as $dVO_2$ = -.0115HR + .2746 ($R^2$ = .1308, p = .000). The results of this study were similar to previous studies but were different under high work load conditions. So modified PCI should be used with only low intensity work load testing. Subjects for upper extremity ergometer exercise testing should complete a prescribed training course prior to testing, and only low intensity work load should be used for safety considerations.

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The Effect of Backward Pedaling Ergometer Training on Ankle ROM, Lower Extremities Strength, Foot Pressure in Hemiplegia (역방향 에르고미터 훈련이 편마비 환자의 족관절 가동범위와 하지 근력 및 족저압에 미치는 영향)

  • Ha, Mi-Seon;Kim, Eun-Jung;Kim, Myeong-Hee;Oh, Tae-Young
    • Journal of the Korean Society of Physical Medicine
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    • v.8 no.3
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    • pp.467-477
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    • 2013
  • PURPOSE: The purpose of this study was to identify the effects of backward pedaling ergometer training on ankle ROM, lower extremities strength, foot pressure in hemiplegia. METHODS: The subjects consisted of control group(n=10) and experimental group(n=10), subjects were trained 5 times a week for 2 weeks each group. Control group were trained forward, experimental group were trained backward pedaling with physical therapy in both groups. Each group measured ankle joint ROM with DUALER IQ and ankle and knee joint flexor and extensor muscle strength by Manual Muscle Test System and foot pressure by Gait view system. RESULTS: The result of this study between pre and post test that experimental group had statistically significantly differences in ankle joint range of motion and lower extremities strength. But foot pressure had not statistically significant differences. There was not significantly difference of variation between groups. CONCLUSION: Therefore these results mean that backward and forward pedaling ergometer training effected an improvement of lower extremities function in hemiplegia.

Comparison of Muscle Activity of Both Lower Extremities When a Lower Extremity Cycle Ergometer is Applied During Initial Rehabilitation After Unilateral Total Knee Arthroplasty (편측 무릎인공관절수술 후 초기 재활과정에서 다리 에르고미터 적용 시 양다리 근활성도 비교)

  • Choi, Eunji;Lee, Sangyeol;Seok, Him;Yoon, Sungyoung;Heo, Jaeseok;Lee, Seunghoon
    • PNF and Movement
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    • v.20 no.2
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    • pp.179-187
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    • 2022
  • Purpose: The purpose of this study was to determine the asymmetrical difference between the use of leg muscles on the surgical and non-surgical sides during initial lower extremity ergometer exercise after unilateral knee arthroplasty. Methods: Twelve elderly patients diagnosed with degenerative arthritis of the knee and who underwent unilateral arthroplasty were included in this study. The leg length of each subject was taken into account when setting the application distance of the lower extremity ergometer. The same pedal resistance, strength, and speed were used for all the subjects. The total angle of use of the ergometer (360°) was analyzed by dividing it into an extension section and a flexion section. Using a surface electromyography system, the activities of the muscles of the surgical and non-surgical sides were converted into maximal voluntary isometric contraction (MVIC) and analyzed using the paired t-test. Results: When the activities of the muscles on the surgical and non-surgical sides were compared, it was found that the rectus femoris and biceps femoris had significant differences in the flexion and extension sections (p < .05), and that the tibialis anterior significantly differed in the flexion section (p < .05). There was no significant difference in the extension section of the tibialis anterior muscle, or in the flexion and extension sections of the gastrocnemius (p >.05). Conclusion: The results of this study confirm that the rectus femoris, tibialis anterior, biceps femoris, and gastrocnemius on the surgical side act in an opposite manner to those on the non-surgical side during pedaling in the same section.

Pedaling Characteristics of Cycle Ergometer Using the MR Rotary Brake (MR 회전형 브레이크를 적용한 자전거 에르고미터의 주행 특성)

  • Yoon, Y.I.;Kwon, T.K.;Kim, D.W.;Kim, J.J.;Kim, N.G.
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.57 no.9
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    • pp.1669-1673
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    • 2008
  • A new cycle ergometer using a Magneto-Rheological (MR) rotary brake system has been developed for rehabilitation of hemiplegia patients to reduce uneven pedaling characteristics. For this purpose, a control method to adjust the resistance of the MR rotary brake in real time based on the magnitude of the muscular force exerted by the subject has been devised so that the mechanical resistance to the pedaling can be minimized when the affected leg was engaged for pedaling. A series of experiments were carried out with and without the engagement of this real-time control mode of MR rotary brake at different pedaling rate to find out the effect of the real-time control mode. The characteristics of the pedaling for these specific conditions were analyzed based on the variations in angular velocities of the pedal unit. The results showed that the variations in the angular velocities were decreased by 42.9% with the control mode. The asymmetry of pedaling between dominant and non-dominant leg was 19.63% in non-control mode and 1.97% in the control mode. The characteristics of electromyography(EMG) in the lower limbs were also measured. The observation showed that Integrated EMG(IEMG) reduced with the control mode. Therefore, the new bicycle system using MR brake with the real time control of mechanical resistance was found to be effective in recovering the normal pedaling pattern by reducing unbalanced pedaling characteristics caused by disparity of muscular strength between affected and unaffected leg.

Compare of Graded Load Exercise on Cardiopulmonary Function and Energy Metabolism of Normal Persons and Stroke Patients (점증 부하 운동 시 정상인과 뇌졸중 환자의 심폐기능 및 에너지 대사 비교)

  • Kim, Ji-Hye;Yeom, Ju-No;Ryu, In-Tae;Lim, Chae-Gil;Hwang, Byong-Yong
    • The Journal of the Korea Contents Association
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    • v.12 no.2
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    • pp.331-338
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    • 2012
  • The purpose of this study is to investigate the cardiopulmonary function and the energy metabolism of stroke patients and normal persons of graded load exercise using lower ergometer. Targeting 11 normal persons(male: 6, female: 5) and 9 stroke patients (male: 4, female: 5), an graded load exercise was performed with the use of lower ergometer by increasing 25 watts every 6 minute and Quark $b_2$ were used for the cardiopulmonary function and the energy metabolism. With respect to normal persons, there were significant increases in the phase of graded load exercise, maximum oxygen uptake time, exercise time with respect to the cardiopulmonary function. In addition, there was a significant correlation between cardiopulmonary function and energy metabolism, but there was no significant difference energy metabolism. As a result, there were no significant differences between stroke patients and normal persons of the cardiopulmonary function and the energy metabolism within 18 minutes, but it had significant differences between maximum oxygen uptake and exercise time. Moreover, it was possible to identify that the cardiopulmonary function and the energy metabolism of stroke patients and normal persons are related with maximum oxygen uptake.

A Human Engineering Study of Clothing in an Environmental Aspect (I) - Based on the Skin Temperature after Physical Exercise of Human Body - (환경요소면으로 본 의복의 인간공학적 연구 (I) - 인체동작후의 피부온 변화를 중심으로 -)

  • 이전숙
    • Journal of the Korean Home Economics Association
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    • v.20 no.2
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    • pp.65-71
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    • 1982
  • Comfort concept of heating and cooling between body and environment is modified by the clothing. So were can say the clothing is one of the environment. To maintain“pleasantness”, clothing must have the elements of comfort and function. This study carried out for the 1st step to describe the relation between clothing and the human body I aspect to the emvironmental elements of temperature and working part of the body. Observations of skin temperature were taken on young adults female subjects in training wear and the skin temperature was measured onto 9 points of the body while taking part in two physical exercise, with Rawing machine and Bicycle ergometer. The results obtained are as follows; 1. The skin temperature after physical exercise is lower than that after repose. 2. After physical exercise of the lower part of the body, the skin temperature is less than that after physical exercise of the upper part of the body. 3. After physical exercise of the upper part of the body, skin temperature of the lower part of the body rises a little, and vice versa.

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