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      고온 환경에서 반복적인 운동부하가 체온, 온 · 냉감지수 및 운동자각도에 미치는 영향 = The Effect of the Repetitive Loaded Exercise in a Hot Environment on body temperature, Thermal sensation and Rating of perceived exertion

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      https://www.riss.kr/link?id=A101864013

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      다국어 초록 (Multilingual Abstract)

      This study was carried out to investigate how the repetitive loaded exercise in a hot environment affects the body temperature, thermal sensation and rating of perceived exertion. As a result, the following conclusions were obtained. Changes in body t...

      This study was carried out to investigate how the repetitive loaded exercise in a hot environment affects the body temperature, thermal sensation and rating of perceived exertion. As a result, the following conclusions were obtained. Changes in body temperature appeared the highest immediately after exercise in both two groups in the mean skin temperature and a significant increase in body temperature was shown in the second exercise compared with the primary exercise(p<.001). Furthermore, it appeared that there is the main effect according to each group and the measuring time(p<.001, p<.05). Temperature of the tympanic membrane showed a significant increase in temperature in both two groups immediately after exercise, and significantly increased in the second exercise compared with the primary exercise(p<.5). In addition, it appeared that there are the main effect and interaction effect between the group and time interval for measurement(p<.001, p<.05). In the changes of thermal sensation and Rating of perceived exertion of the exerciser, thermal sensation significantly increased immediately after the exercise with no difference in both two groups compared with a steady stage, and decreased in the recovery stage again and were restored to normal level(p<.05). Furthermore, appeared that there is only the main effect according to the group(p<.001). The change of Rating of perceived exertion of the exerciser showed a significant increase cumulatively by the measurement time in both two groups(p<.05), and it appeared that there is only the main effect according to the measurement time(p<.001). So, to integrate the result so far, a detailed approach through the application of a variety of thermal environment and exercise methods is to be required for the further study later.

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      목차 (Table of Contents)

      • Abstract
      • Ⅰ. 서론
      • Ⅱ. 연구방법
      • Ⅲ. 결과
      • Ⅳ. 논의
      • Abstract
      • Ⅰ. 서론
      • Ⅱ. 연구방법
      • Ⅲ. 결과
      • Ⅳ. 논의
      • Ⅴ. 결론
      • 참고문헌
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      참고문헌 (Reference)

      1 김태욱, "카페인 섭취가 고온 환경조건의 작업 중에 피부온도의 변화와 혈액농축에 미치는 영향" 한국사회체육학회 (38) : 931-942, 2009

      2 김기진, "고온환경이 비만인의 최대하운동 시와 회복기의 생리적 반응에 미치는 영향" 40 (40): 601-610, 2001

      3 김도윤, "고온환경에서의 최대운동시 운동형태에 따른 피로 비교" 한국운동생리학회 17 (17): 211-222, 2008

      4 방창훈, "고온환경에서 소방방화복 착용시 작업강도가 신체에 미치는 영향" 한국방재학회 13 (13): 197-201, 2013

      5 조영철, "고온 환경에서최대하 운동 시 혈장 LDH, CPK 활성도 및 전해질 농도의 변화" 11 (11): 151-162, 2000

      6 Selye, H., "The general adaptation syndrome and the diseases of adaptation" 946 : 117-230, 1946

      7 ASHRAE, "Standard 55 thermal environmental conditions for human occupancy" ASHRAE Inc 1992

      8 Cabance, M., "Selective brain cooling in humans" 7 : 1143-1147, 1998

      9 Martin, P. G., "Reduced voluntary activation of human skeletal muscle during shortening and lengthening contractions in whoel body hyperthermia" 90 (90): 225-236, 2005

      10 Hargreaves, M., "Physiological limits to exercise performance in the heat" 11 (11): 66-71, 2008

      1 김태욱, "카페인 섭취가 고온 환경조건의 작업 중에 피부온도의 변화와 혈액농축에 미치는 영향" 한국사회체육학회 (38) : 931-942, 2009

      2 김기진, "고온환경이 비만인의 최대하운동 시와 회복기의 생리적 반응에 미치는 영향" 40 (40): 601-610, 2001

      3 김도윤, "고온환경에서의 최대운동시 운동형태에 따른 피로 비교" 한국운동생리학회 17 (17): 211-222, 2008

      4 방창훈, "고온환경에서 소방방화복 착용시 작업강도가 신체에 미치는 영향" 한국방재학회 13 (13): 197-201, 2013

      5 조영철, "고온 환경에서최대하 운동 시 혈장 LDH, CPK 활성도 및 전해질 농도의 변화" 11 (11): 151-162, 2000

      6 Selye, H., "The general adaptation syndrome and the diseases of adaptation" 946 : 117-230, 1946

      7 ASHRAE, "Standard 55 thermal environmental conditions for human occupancy" ASHRAE Inc 1992

      8 Cabance, M., "Selective brain cooling in humans" 7 : 1143-1147, 1998

      9 Martin, P. G., "Reduced voluntary activation of human skeletal muscle during shortening and lengthening contractions in whoel body hyperthermia" 90 (90): 225-236, 2005

      10 Hargreaves, M., "Physiological limits to exercise performance in the heat" 11 (11): 66-71, 2008

      11 Wilmore, J. H., "Physical energy: fuel metabolism" 59 (59): 13-16, 2001

      12 Costill, D. L., "Metabolic responses during distance running" 28 (28): 251-, 1973

      13 Costill, D. L., "Inside running: Basics of sports of physiology" Benchmark Press 1986

      14 Lim, C. L., "Human thermoregulation and measurement of body temperature in exercise and clinical settings" 37 (37): 347-353, 2008

      15 ISO, "Hot Environments-Estimation of the heat stress on working man, based on the WBGT-index"

      16 Webb, P., "Heat regulation during exercise with controled cooling" 62 (62): 193-197, 1991

      17 Sessler, D. I., "Heat loss in humans covered with cotton hospital blankets" 77 (77): 73-77, 1993

      18 Shapiro, Y., "Field and clinical observations of exertional heat stroke patients" 22 (22): 6-14, 1990

      19 Yeo, S., "Exerciseinduced hyperthermia may prevent accurate core temperature measurement by tympanic membrane thermometry" 4 : 143-151, 1996

      20 Dahlhoff, E. P., "Effects of temperature on physiology and reproductive success of a montane leaf beetle : implications for persistence of native populations enduring climate change" 81 (81): 718-732, 2008

      21 Inbar, O., "Comparison of thermoregulatory responses to exercise in dry heat among prepubertal boys, young adults and older males" 89 (89): 691-700, 2004

      22 Haaland, K., "Cerebral, tympanic and colonic thermometry in the piglet" 8 : 125-128, 1996

      23 Anestis, A., "Behavioral, metabolic, and molecular stress responses of marine bivalve Mytilus galloprovincialis during longterm acclimation at increasing ambient temperature" 293 (293): 911-921, 2007

      24 Rhoads, F. A., "Assessment of an aural infrared sensor for body temperature measurement in children" 29 : 112-115, 1990

      25 Ericson, R., "Accuracy of infrared ear thermometry and traditional temperature methods in young children" 23 (23): 181-195, 1994

      26 ACSM, "ACSM's Guidelines for Exercise Testing and Prescription" 2009

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      학술지 이력

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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.66 0.66 0.67
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.66 0.66 0.593 0.18
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