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      • KCI등재

        BALLET BARRE 동작시 하지근전도 파형에 관한 연구

        홍명엽,박태열 韓國舞踊敎育學會 2000 韓國舞踊敎育學會誌 Vol.11 No.2

        In Thib study, studied on Barre exorcise, which was used for developing the primary active muscles. For this study, observed 6 muscles (Vastus Medialis. Gluteus Maximum, Rectus Femoris, Gastrocenemins, Vastus lateralis, Biceps Femoris) far doing the 4 basic motions. The results are as follow. 1.At the Battement - Tendu motion, Front, Side and Back muscled were rosed and the primary active muscle was Gastrocnemins. Ath the muscle, which used as an axle, it baa Rictus Femoris at the Front and Baek. and it wag Gastrocenemins at the Side. There were differences between the Front and Side muscles in using as primary active muscle. There were no differences between them using as an axle. 2.At the Battemenu - Tendu jet□(degage) motion, the primary active muscles were Gastrocnemins when used Fnnt, Side and Back muscled and it was Vastus Lateralis when used Rmnt muscle as an axle. There were differences at the used Front and Side and Were no differences at the Back. when that are used as primary active muscles. There were differences at the Back, which used as an axle, and there were no differences at the used Hront and Side. 3.At the Rond de Jembe a teiTe Motion, the primaiy active muscles were Gastrocnemins when they used Hmnt and Back muscles and it was Rectus Femoris when they used as an axle. There were no differences between them. 4.At the Frapp□s Motion, the primary active muscles were Gastrocnemeins when they used Hmnt, Side and Back, and it wart Rictus Femoris when they used as an axle. There were differences between the used Front and the axle's Back. But there were no differences at the used Side and Back and axle's Front and Side. Finally, Gastrocenemins, Re77us Femoris and Biceps Femoris are used frequently in Ballet. Therefore, these muscle's training will be to develop the lower limb's muscles and to prevent the bodily harm of the dancers.

      • 태권도선수의 호흡순환능력에 관한 연구

        박철호,김영준,김우규,박태열,홍명엽 東亞大學校附設스포츠科學硏究所 1999 스포츠科學硏究論文集 Vol.17 No.-

        The purpose of this study was to evaluate the anaerobic thresold and EPOC(Excess post-exercise Oxygen Consumption) in treadmill exercise of taekwondo players(n=7),and group of controls college students(n=7). The started treadmill exercise with speed of 120m/min and within treadmill 5% slope. Especially the treadmill speed was increased with 20m/min per two minutes and subjects were finally led to exhaustion. The results obtained from this test were as follows: 1. The VO₂max( /min), VO₂ max(kg) showed significantly higher differences taekwondo group than control group in maximum exercise. 2. The ventilation volume showed significant difference taekwondo group than control group in maximum exercise. 3. The anaerobic threshold showed significant difference taekwondo group than control group in maximum exercise. 4. The EPOC showed significant difference taekwondo group than control group in maximum exercise.

      • KCI등재

        근전도에 의한 발레 기본동작이 하지근에 미치는 영향

        홍명엽(Hong Myung-Yeub) 한국체육과학회 2000 한국체육과학회지 Vol.9 No.2

        In This study, studied on Barre exercise, which was used for developing the primary active muscles. For this study, observed 6 muscles (Vastus Medialis. Gluteus Maximus, Rectus Femoris, Gastrocenemins, Vastus Lateralis, Biceps Femoris) for doing the 4 basic motions. The results are as follow. 1. At the Plie motion, the used primary active muscle was Gluteus. At the muscle, which used as an axle, it was Vastus Medialis. There were no differences between them. 2. At the Rond de jembe an L'ain motion, the primary active muscle was the used Gastrocenemins and it was Rectus Femoris when they used as an axle. There were no differences. 3. At the Developpes motion. it was the Gastrocenemins when they used Front, Side and Back and it was Vastus Lateralis when the Front was used as an axle and it was Rectus Femoris when the Side and Back were used as the axle. There were a little differences at the used Front and the axle's Back. 4. At the Grand-Battement motion, the primary active muscle was Gastrocenemins when they used the Front, Side and Back of the used muscles and it was Gastrocenemins when the Front was used as an axle and it was Rectus Femoris when the Side and Back were used as the axle. There were a little differences at the used muscle's Front and Side. and the axle's Side and Back. There were no differences at the used muscle's Back and Front. Finally, Gastrocenemins, Rectus Femoris and Biceps Femoris are used frequently in Ballet. Therefore, these muscle's training will be to develop the lower limb's muscles and to prevent the bodily harm of the dancers.

      • KCI우수등재

        특수체육 : 댄스스포츠 운동이 정신분열증 환자의 체력에 미치는 영향

        홍명엽(HongMyeng-Yeb),어경철(EhKyung-Chel),장성동(ChangSeung-Dong),최진관(ChoiJin-Gwan),김주혁(KimJu-Hyeok),이윤관(LeeYun-Gwan),김영준(KimYoung-Jun) 한국체육학회 2003 한국체육학회지 Vol.42 No.2

        The purpose of to study is to analyze the change of body composition physical fitness, and pulmonary function after practicing dance sports of 60 minutes a day in 2 times a week during 12 weeks based on schizophrenia patients (male:5, female:6) who are in 30-60 aged hospitalized in the lunatic hospital. The results of the above study are as follows; % Fat is found to have a significant decrease in the male and female groups after dance sports exercise, Back strength and whole body reaction time are found to have a significant increase in the male group, and then trunk flexion and whole body reaction time are also found to have a significant increase in the female group. Forced vital capacity(FVC) is found to have a significant increase in the female group, and then the rate d forced vital capacity(%FVC) is found to have a significant increase(p<.05) in the male and female groups. But forced expiratory volume of per one second(FEV<sub>1</sub> ) is found to have a significant change in the male and female groups. Therefore, the results of physical test after practicing dance sports show a significant increase, and then dance sports are found to increase and keep the physical fitness, and then some when dance sports are practiced to mental patients who have been hospitalized in the lunatic hospital for a long time, it is recognized that physical fitness gives a significant increase to the above patients.

      • KCI등재
      • KCI등재
      • 노인여성의 유산소성 리듬운동이 신체구성 및 건강관련 체력에 미치는 영향

        김주홍,이은희,홍명엽,안민호,김영준 한국스포츠리서치 2004 한국 스포츠 리서치 Vol.15 No.2

        This study attempts to investigate whether 11 weeks' rhythmic exercise-three times a week, intensity at 50~70%HRmax-affects body composition, health-related fitness, and respiratory function in the elderly women. As for body composition, in excess body fat group/over 30% body fat), weight and %body fat were reduced, but, there was no significant difference, Under body fat group/under 30%body fat) showed a tendency to reduce in weight and %body fat significantly. As for health-related fitness, excess body fat group/over 30% body fat) showed a increase in the muscular strength of the lower limbs, but there were no significant differences in the muscular strength of the upper limbs. flexibility, quickness, balance, and endurance. However, the muscular strength of the lower(upper) limbs, quickness, and balance were significantly reduced in under body fat group. As for pulmonary ventilation in under body fat group, FVC and %FVC increased but there was no significant difference. In contrast, Fev1 was significantly increased. In conclusion, regularly rhythmic exercise may improve body composition and health-related fitness. Moreover, it could be one of the best ways for the elder to live actively.

      • 장기간의 장거리 달리기가 골대사 마커에 미치는 영향

        장성동,이은희,홍명엽,문성진,김주혁,이윤관,김영준 한국스포츠리서치 2004 한국 스포츠 리서치 Vol.15 No.1

        This study is purposed to analyse the effects of long-term & one-time 10km running exercise from bone metabolic marker change on bone metabolism. 7 male members(18.6±1.08) from a marathon club were subjected to the study. They were allowed to do long-term 10 km running training once a week for 6 months. And bone metabolism mark was determined according to the respective times : before/after 6 months training, before/after 10 km race, one day after the race, 3 days after the race. The examination items of bone metabolism mark were serum calcium, phosphorus, paratyroid hormone, osteocalcin, calcitonin, alkaline phosphatase in blood and calcium, phosphorus, deoxypyridinolin in urine. The results of study were as follows; 1) There was no change in deoxypyridinolin and alkaline phosphatase but there was significant change in calcitonin, paratyroid hormone and osteocalcin(p<.01). 2) There was no change of Calcium in serum and urine but there was significant change of phosphorus in blood(p<.01). To make a conclusion, it is determined that long-term 10 km running at low intensity and low frequency tends to restrict bone metabolism circulation, but exercise at a little high level activates bone metabolism into building up bones and absorbing bones and finally shows up high bone metabolism circulation, which is inferred to have an effective influence on bone health. It is considered there is a possibility that different exercise intensity, even same kind of exercise, influences on bone metabolism sdifferently.

      • KCI우수등재

        운동생리학 : 장기간의 10㎞ 달리기가 골대사 변화에 미치는 영향

        장성동(JangSeongDong),홍명엽(HongMyeongYeob),문성진(MunSeongJin),김주혁(KimJuHyeog),김영준(KimYeongJun) 한국체육학회 2004 한국체육학회지 Vol.43 No.1

        The subjects are 7 male high school students and university students in K area who want to take participate in the training program that aims at running the whole race in 10km marathon. The subjects understand purpose of this study according to the relation between a long distance race and bone metabolism and healthy people with no experience of marathon, we got conclusion as follows:1. In the matter of the physical feature, there is significant difference (p<.01) in weight, the rate of body fat, the amount of body fat, the rate of abdomen fat, and the amount of muscle of before/after training.2. In the matter of change of mark of bone metabolism, there is a little change after training in calcitonine, paratyroid hormone and alkaline phosphatase, but there is no significant difference while he significant difference is shown in the osteocalcin and deoxypyridinoline.3. The decreasing Ca and P after marathon training for 6months is adaptive phase for marathon, there is not shown significant difference by excess exhaustion of physical force and/or hard exercise which are caused Ca and P by using energy source but this is considered as decreasing a little.

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