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      • KCI등재

        승무의 이원성(二元性)에 관한 철학적 고찰

        최혜경 ( Choi Heakyung ),박미영 ( Park Miyoung ) 한국무용연구학회 2022 한국무용연구 Vol.40 No.1

        이 연구는 승무의 역사적 배경이 되는 기원설을 바탕으로 승무에 내재된 미적 특징인 이원성을 철학적으로 고찰한 논문이다. 따라서 다음과 같은 결론을 도출하였다. 첫째, 승무는 감정을 억제하고 절제하며 한을 은근과 끈기의 유연함으로 승화시키는 어둠과 빛, 고통과 죽음의 흥과 생명으로 전환되는 환희와 희망의 반복적 순환에 있다. 둘째, 춤사위의 상반된 구조적 특징은 맺고 풀고 채워지면 비우고 비워지면 채워지는 상체와 하체에서 각각 나타나는데, 상체는 고요하면서 장엄하고 숭고하며 하체는 섬세하고 온화하며 역동적이다. 셋째, 승무는 음양의 조화를 강조하는 정중동(靜中動)에서 요염한 자태를 품어내는 정(靜)의 요소와 동(動)의 요소가 맞물려서 나타난다. 즉 태극의 원리, 음양의 조화, 호흡에 의한 단전, 정중동(靜中動) 동중정(動中靜) 등이 융화되어 있으며 대삼 소삼, 남과 여, 음(陰)과 양(陽)의 이원적 사상이 종합과 초월의 세계로 구성된다. 넷째, 승무의 대삼소삼(大衫小衫)과 양우선(兩雨繕)은 동과 정이 반복되는 순환 구조이며, 음양소장(陰陽消長)이 끝없이 반복되는 태극(太極)의 선상(線上)에서 움직임이 극에 달하면 점차 고요해지고 고요함이 극에 달하면 다시금 역동적인 움직임이 생겨나는 태극의 이원적 원리를 따른 것이다. This research thesis probes the historical background of the “Seungmu” based on its theory of origin and inherent aesthetic qualities of dualism. First, the “Seungmu” controls and suppresses the emotion and sublimates all dark grudges into tenacity and persistence. It also depicts a repetitive cycle on the dualities of death and pain being transformed into joy and hope. Second, the contrasting structural characteristics of the dance moves appear in the upper and lower body through a series of unique movements, respectively. The upper body movement portrays a sense of silence and solemnity. Meanwhile, the lower body movement is very dynamic yet delicate and mild. Third, Seungmu is a dual aesthetic characteristic of “jeongjungdong” that emphasizes the harmony of yin and yang. The principles of Taegeuk, harmony of yin and yang, “danjeon” by breathing, “jeongjungdong”, and “dongjungjeong” are harmonized. “Dong” and “jeong” are dualistic ideas and symbolize the world of synthesis and transcendence. Fourth, the "three large and three small rhythms" and “yangwoosun” of Seungmu are cyclical structures in which the movements are repeated. It follows the dual principle of Taegeuk, in which the movement reaches its climax and gradually becomes quiet. When the stillness reaches its climax, a dynamic movement occurs again.

      • KCI등재

        외부 환경 변화에 의한 비 접촉 체온계의 오차 범위 측정

        김정은 ( Kim Jeongeun ),박상웅 ( Park Sangwoong ),최혜경 ( Choi Heakyung ) 대한통합의학회 2020 대한통합의학회지 Vol.8 No.4

        Purpose : A person infected by SARS-CoV2 may present various symptoms such as fever, pain in lower respiratory tract, and pneumonia. Measuring body temperature is a simple method to screen patients. However, changes in the surrounding environment may cause errors in infrared measurement. Hence, a non-contact thermometer controls this error by setting a correction value, but it is difficult to correct it for all environments. Therefore, we investigate device error values according to changes in the surrounding environment (temperature and humidity) and propose guidelines for reliable patient detection. Methods : For this study, the temperature was measured using three types of non-contact thermometers. For accurate temperature measurement, we used a water bath kept at a constant temperature. During temperature measurement, we ensured that the temperature and humidity were maintained using a thermo-hygrometer. The conditions of the surrounding environment were changed by an air conditioner, humidifier, warmer, and dehumidifier. Results : The temperature of the water bath was measured using a non-contact thermometer kept at various distances ranging from 3~10 ㎝. The value measured by the non-contact thermometer was then verified using a mercury thermometer, and the difference between the measured temperatures was compared. It was observed that at normal surrounding temperature (24 ℃), there was no difference between the values when the non-contact thermometer was kept at 3 ㎝. However, as the distance of the non-contact thermometer was increased from the water bath, the recorded temperature was significantly different compared with that of mercury thermometer. Moreover, temperature measurements were conducted at different surrounding temperatures and the results obtained significantly varied from when the thermometer was kept at 3 ㎝. Additionally, it was observed that the effect on temperature decreases with an increase in humidity Conclusion : In conclusion, non-contact thermometers are lower in lower temperature and dry weather in winter.

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