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    복싱선수의 라운드별 심혈관기능 변화에 관한 연구

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    https://www.riss.kr/link?id=T2143090

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    The purpose of this study examined on the change of cardiovascular function at round in boxing athletes. This study employed eighth boxing athletes as experimental subjects were from H university, cardiovascular function(Heart Rate, Blood Pressure) and blood components(Leukocyte, Erythrocytes, Hemoglobin, Hematocrit) responses during the submaximal exercise(level of 85%) with bicycle ergometer and boxing athletic(3rounds/3minutes) for the purpose of observation of blood state.
    The results at this experiment were as follows;
    1. Heart Rate in submaximal exercise significantly(P<.05) increased at after exercise, Boxing athletic significantly(P<.05) increased at after 3round. And recovery time in submaximal exercise significantly(P<.05) decreased at 5minutes and 30minutes after, Boxing athletic significantly(P< .05) decreased at 5minutes and 30minutes after. T-test on the change of Heart rate quantities at time showed significant difference in the after exercise(P< .01>, recovery stages after 5minutes and 10minutes(P<.05).
    2. Systolic Pressure in submaximal exercise significantly(P<.05) increased at after exercise, Boxing athletic significantly increased at after Iround(P<.Ol), 2round 3round(P<.05). And recovery time in submaximal exercise significantly(P< .05) decreased at 5minutes and l0minutes 30minutes after, Boxing athletic significantly(P<.05)decreased at 5minutes and l0minutes 30minutes after. T-test on the change of systolic pressure quantities at time showed significant(P<.05) difference in the after exercise, recovery stages after 5minutes and l0minutes 30minutes.
    Diastolic Pressure in submaximal exercise significantly(P<.05) increased at after exercise, Boxing athletic significantly increased at after 1round 2round(P<.Ol), 3round(P<.05). And recovery time in submaximal exercise significantly(P< .05) decreased at l0minutes and 30minutes after, Boxing athletic significantly(P<.05) decreased at l0minutes and 30minutes after. T-test on the change of diastolicpressure quantities at time showed significant(P<.05) difference in the after exercise, recovery stages after l0minutes and 30 minutes.
    3. Leukocyte in submaximal exercise significantly(P<.0l) increased at after exercise, Boxing athletic significantly increased at after around 3round(P<.0l), 1round(P<.05). And recovery time in submaximal exercise significantly(P< .05) decreased at 5minutes and l0minutes after, Boxing athletic significantly(P<.05) decreased at 5minutes and l0minutes after. T-test on the change of systolic pressure quantities at time showed significant difference in the after exercise(P<.0l), recovery stages after 5minutes and 10minutes(P<.05). Erythrocytes in submaximal exercise significantly (P< .05) increased at after exercise, Boxing athletic significantly increased at after 3round(P<.0l), 1round 3round(P<.05). And recovery time in submaximal exercise significantly(P<.05) decreased at l0minutes and 30minutes after, Boxing athletic significantly(P>.05) decreased without change. T-test on the change of diastolic pressure quantities at time showed significant(P<.0l) difference in the after exercise, recovery stages after 5minutes l0minutes and 30minutes.
    4. Hemoglobin in submaximal exercise significantly(P<.05) increased at after exercise, Boxing athletic significantly(P<.05) increased at after 1round and around 3round. And recovery time in submaximal exercise and boxing athletic significantly (P> .05) decreased without change. T-test on the change of diastolic pressure quantities at time showed significant difference in the after exercise and recovery stages after l0minutes(P<.05), recovery stages after 5minutes and 30minutes(P<.01).
    5. Hematocrit in submaximal exercise significantly(P<.05) increased at after exercise, Boxing athletic significantly increased at after 1round and 2round 3round(P<.05). And recovery time in submaximal exercise significantly(P<.05) decreased at 5minutes and l0minutes after, Boxing athletic significantly decreased at 5minutes and l0minutes after(P<.05), 30minutes(P<.l). T-test on the change of systolic pressure quantities at time showed significant difference in the after exercise and recovery stages 5minutes, l0minutes(P<.05), recovery stages after 30minutes(P<.01).
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    The purpose of this study examined on the change of cardiovascular function at round in boxing athletes. This study employed eighth boxing athletes as experimental subjects were from H university, cardiovascular function(Heart Rate, Blood Pressure) an...

    The purpose of this study examined on the change of cardiovascular function at round in boxing athletes. This study employed eighth boxing athletes as experimental subjects were from H university, cardiovascular function(Heart Rate, Blood Pressure) and blood components(Leukocyte, Erythrocytes, Hemoglobin, Hematocrit) responses during the submaximal exercise(level of 85%) with bicycle ergometer and boxing athletic(3rounds/3minutes) for the purpose of observation of blood state.
    The results at this experiment were as follows;
    1. Heart Rate in submaximal exercise significantly(P<.05) increased at after exercise, Boxing athletic significantly(P<.05) increased at after 3round. And recovery time in submaximal exercise significantly(P<.05) decreased at 5minutes and 30minutes after, Boxing athletic significantly(P< .05) decreased at 5minutes and 30minutes after. T-test on the change of Heart rate quantities at time showed significant difference in the after exercise(P< .01>, recovery stages after 5minutes and 10minutes(P<.05).
    2. Systolic Pressure in submaximal exercise significantly(P<.05) increased at after exercise, Boxing athletic significantly increased at after Iround(P<.Ol), 2round 3round(P<.05). And recovery time in submaximal exercise significantly(P< .05) decreased at 5minutes and l0minutes 30minutes after, Boxing athletic significantly(P<.05)decreased at 5minutes and l0minutes 30minutes after. T-test on the change of systolic pressure quantities at time showed significant(P<.05) difference in the after exercise, recovery stages after 5minutes and l0minutes 30minutes.
    Diastolic Pressure in submaximal exercise significantly(P<.05) increased at after exercise, Boxing athletic significantly increased at after 1round 2round(P<.Ol), 3round(P<.05). And recovery time in submaximal exercise significantly(P< .05) decreased at l0minutes and 30minutes after, Boxing athletic significantly(P<.05) decreased at l0minutes and 30minutes after. T-test on the change of diastolicpressure quantities at time showed significant(P<.05) difference in the after exercise, recovery stages after l0minutes and 30 minutes.
    3. Leukocyte in submaximal exercise significantly(P<.0l) increased at after exercise, Boxing athletic significantly increased at after around 3round(P<.0l), 1round(P<.05). And recovery time in submaximal exercise significantly(P< .05) decreased at 5minutes and l0minutes after, Boxing athletic significantly(P<.05) decreased at 5minutes and l0minutes after. T-test on the change of systolic pressure quantities at time showed significant difference in the after exercise(P<.0l), recovery stages after 5minutes and 10minutes(P<.05). Erythrocytes in submaximal exercise significantly (P< .05) increased at after exercise, Boxing athletic significantly increased at after 3round(P<.0l), 1round 3round(P<.05). And recovery time in submaximal exercise significantly(P<.05) decreased at l0minutes and 30minutes after, Boxing athletic significantly(P>.05) decreased without change. T-test on the change of diastolic pressure quantities at time showed significant(P<.0l) difference in the after exercise, recovery stages after 5minutes l0minutes and 30minutes.
    4. Hemoglobin in submaximal exercise significantly(P<.05) increased at after exercise, Boxing athletic significantly(P<.05) increased at after 1round and around 3round. And recovery time in submaximal exercise and boxing athletic significantly (P> .05) decreased without change. T-test on the change of diastolic pressure quantities at time showed significant difference in the after exercise and recovery stages after l0minutes(P<.05), recovery stages after 5minutes and 30minutes(P<.01).
    5. Hematocrit in submaximal exercise significantly(P<.05) increased at after exercise, Boxing athletic significantly increased at after 1round and 2round 3round(P<.05). And recovery time in submaximal exercise significantly(P<.05) decreased at 5minutes and l0minutes after, Boxing athletic significantly decreased at 5minutes and l0minutes after(P<.05), 30minutes(P<.l). T-test on the change of systolic pressure quantities at time showed significant difference in the after exercise and recovery stages 5minutes, l0minutes(P<.05), recovery stages after 30minutes(P<.01).

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    목차 (Table of Contents)

    • 목차 = ⅰ
    • ABSTRACT = ⅳ
    • Ⅰ. 序論 = 1
    • 1. 연구의 필요성 및 목적 = 1
    • 2. 연구의 제한점 = 5
    • 목차 = ⅰ
    • ABSTRACT = ⅳ
    • Ⅰ. 序論 = 1
    • 1. 연구의 필요성 및 목적 = 1
    • 2. 연구의 제한점 = 5
    • Ⅱ. 연구내용 및 방법 = 6
    • 1. 연구대상 = 6
    • 2. 연구기간 = 6
    • 3. 실험절차 및 방법 = 7
    • 4. 자료처리 = 11
    • Ⅲ. 연구결과 및 논의 = 12
    • 1. 심박수 검사 = 12
    • 2. 혈압 검사 = 14
    • 3. 혈구 검사 = 20
    • 4. 헤모글로빈 검사 = 25
    • 5. 헤마토크리트 검사 = 28
    • 6. 論義 = 30
    • Ⅳ. 결론 = 36
    • 參考文獻 = 39
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