• 제목/요약/키워드: Respiratory capacity

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만성폐쇄성폐질환 환자에서 Tiotropium 1일 1회, 1회 18㎍ 요법과 Ipratropium 1일 4회, 1회 40㎍ 요법의 치료효과 및 안전성 비교 (A Comparison of Tiotropium 18㎍, Once Daily and Ipratropium 40㎍, 4 Times Daily in a Double-Blind, Double-Dummy, Efficacy and Safety Study in Adults with Chronic Obstructive Pulmonary Disease)

  • 김승준;김명숙;이상학;김영균;문화식;박성학;이상엽;인광호;이창률;김영삼;김형중;안철민;김성규;김경록;차승익;정태훈;김미옥;박성수;최천웅;유지홍;강홍모;고원중;함형석;강은혜;권오정;이양덕;이흥범;이용철;이양근;신원혁;권성연;김우진;이철규;김영환;심영수;한성구;박혜경;김윤성;이민기;박순규;김미혜;리원연;용석중;신계철;최병휘;오연목;임채만;이상도;김우성;김동준;정성수;김주옥;고영춘
    • Tuberculosis and Respiratory Diseases
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    • 제58권5호
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    • pp.498-506
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    • 2005
  • 연구배경 : 본 연구는 COPD환자를 대상으로 기관지확장제인 tiotropium 1일 1회, 1회 1캅셀 $18{\mu}g$과 ipratropium 1일 4회, 1회 2퍼프(퍼프당 $20{\mu}g$)의 유효성 및 안전성을 비교 평가하고자 하였다. 방 법 : 초기 선별방문 후, 환자는 2주간의 관찰기간에 들어갔으며, 이 기간을 마친 환자는 이중맹검, 무작위배정 하에 위약과 함께 1일 1회 tiotropium 또는 1일 4회 ipratropium을 투여 받았다. 유효성평가는 폐기능검사, 일중 PEFR측정, 환자평가 설문조사, 보조치료약물(살부타몰) 사용량으로 하였다. 폐기능검사는 치료시작 시(0일), 치료 14일후와 치료종료 시(28일)에 하였는데, 이때 투약 5분 전, 투약 후 30분, 60분, 120분 및 180분에 시행하였다. 결 과 : 16개 기관에서 134명의 환자가 분석되었다. 환자의 평균 (표준편차) 나이는 66 (7)세이었고 $FEV_1$은 예측치의 42 (12)%였다. 4주 치료 후 trough $FEV_1$ 반응은 ipratropium군에 비해 tiotropium군에서 유의하게 높았으며 PEFR경우에도 4주 동안 지속적으로 아침 흡입 전 측정한 PEFR이 tiotropium군에서 높게 나타났다(차이: 12.52-13.88 l/min). 4주 치료 기간동안 tiotropium은 좋은 내약성과 함께, ipratropium과 유사한 안전성을 나타냈다. 결 론 : 1일 1회 흡입용 항콜린제제인 tiotropium이 1일 4회 흡입용제제인 ipratropium에 비해 COPD환자를 치료하는데 더 우수한 기관지확장 반응을 보여주었고 안전성에서는 유사하였다.

대구 안심연료단지 환경오염물질 노출 평가(II) - TSP, PM10, PM2.5 및 중금속 농도분포 및 노출특성 - (Exposure Assessments of Environmental Contaminants in Ansim Briquette Fuel Complex, Daegu(II) - Concentration distribution and exposure characteristics of TSP, PM10, PM2.5, and heavy metals -)

  • 정종현;피영규;이준정;오인보;손병현;이형돈;윤미라;김근배;유승도;민영선;이관;임현술
    • 한국산업보건학회지
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    • 제25권3호
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    • pp.380-391
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    • 2015
  • Objectives: The objective of this study is to assess airborne particulate matter pollution and its effect on health of residents living near Ansim Briquette Fuel Complex and its vicinities. Also, this study measured and analyzed the concentration of TSP, $PM_{10}$, $PM_{2.5}$, and heavy metals which influences on the environmental and respiratory disease in Ansim Briquette Fuel Complex, Daegu, Korea. Methods: In this study, we analyzed various environmental pollutants such as particulate matter and heavy metals from Ansim Briquette Fuel Complex that adversely affected local residents's health. In particular, we verified the concentration distribution and characteristics of exposure for TSP, $PM_{10}$, and $PM_{2.5}$ among particulate matters, and heavy metals(Cd, Cr, Cu, Mn, Ni, Pb, Fe, Zn, and Mg). In that regard, the official test method on air pollution in Korea for analysis of particulate matter and heavy metal in atmosphere were conducted. The large capacity air sampling method by the official test method on air pollution in Korea were applied for sampling of heavy metals in atmosphere. In addition, we evaluated the concentration of seasonal environmental pollutants for each point of residence in Ansim Briquette Fuel Complex and surrounding area. The sampling measured periods for air pollutants were from August 11, 2013 to February 21, 2014. Furthermore, we measured and analyzed the seasonal concentrations(summer, autumn and winter). Results: The average concentration for TSP, $PM_{10}$, and $PM_{2.5}$ by direct influence area at Ansim Briquette Fuel Complex were 1.7, 1.4 and 1.9 times higher than reference region. In analysis results of seasonal concentrations for particulate matter in four direct influence and reference area, concentration levels for winter were generally somewhat higher than concentrations for summer and autumn. The average concentrations for Cd, Cr, Mn, Ni, Pb, Fe, and Zn in direct influence area at Ansim Briquette Fuel Complex were $0.0008{\pm}0.0004{\mu}g/Sm^3$, $0.0141{\pm}0.0163{\mu}g/Sm^3$, $0.0248{\pm}0.0059{\mu}g/Sm^3$, $0.0026{\pm}0.0011{\mu}g/Sm^3$, $0.0272{\pm}0.0084{\mu}g/Sm^3$, $0.4855{\pm}0.1862{\mu}g/Sm^3$, and $0.3068{\pm}0.0631{\mu}g/Sm^3$, respectively. In particularly, the average concentrations for Cd, Cr, Mn, Ni, Pb, Fe, and Zn in direct influence area at Ansim Briquette Fuel Complex were 1.9, 3.6, 2.1, 1.9, 1.4, 2.6, and 1.2 times higher than reference area, respectively. The continuous monitoring and management were required for some heavy metals such as Cr and Ni. Moreover, the average concentration in winter for particulate matter in direct influence area at Ansim Briquette Fuel Complex were generally higher than concentrations in summer and autumn. Also, average concentrations for TSP, $PM_{10}$, and $PM_{2.5}$ were from 1.5 to 2.0 times, 1.2 to 1.8 times, and 1.1 to 2.3 times higher than reference area, respectively. In results for seasonal atmospheric environment, TSP, $PM_{10}$, $PM_{2.5}$, and heavy metal concentrations in direct influence area were higher than reference area. Especially, the concentrations in C station were a high level in comparison with other area. Conclusions: In the results, some particulate matters and heavy metals were relatively high concentration, in order to understand the environmental pollution level and health effect in surrounding area at Ansim Briquette Fuel Complex. The concentration of some heavy metals emitted from direct influence area at Ansim Briquette Fuel Complex were relatively higher than reference area. In particular, average concentration for heavy metals in this study were higher than average concentrations in air quality monitoring station for heavy metal for 7 years in Deagu metropolitan region. Especially, the residents near Ansim Briquette Fuel Complex may be exposed to the pollutants(TSP, $PM_{10}$, $PM_{2.5}$, and heavy metals, etc) emitted from the factories in Ansim Briquette Fuel Complex.