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SWAT 모형을 이용한 도시하천 상류유역의 하천유지유량 산정방안 (Determination of Instreamflow Requirement for Upstream Urban Watershed Using SWAT Model)

  • 이길성;정은성;신문주;김영오
    • 한국수자원학회논문집
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    • 제39권8호
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    • pp.703-716
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    • 2006
  • 본 연구에서는 안양천 중상류 유역에 대해 SWAT 모형을 이용하여 현재(2000년)의 토지이용 및 지하수 취수량(2000년)을 토대로 유황곡선을 도출하고 개발이전의 토지이용(1975년)과 지하수 취수가 전혀 없는 이상적인 상태에서 유황곡선을 도출하여 비교 분석하였다. 또한 기존의 갈수량과 항목별 필요유량을 비교하여 큰 값으로 하천유지유량을 설정한 것과 본 연구에서 수행한 유황들을 비교하였다. 그 결과 오전, 삼성, 삼막, 수암천의 경우, 현재의 상태와 이상적인 상태의 갈수량이 전혀 변화하지 않음을 보였으며 삼성, 삼막천은 두 경우, 모두 갈수량이 0임을 확인할 수 있었다. 이는 대상유역의 유역면적이 작은 지방2급 하천일 뿐만 아니라 경사가 급한 산간지역이 대부분을 이루어서 개발 전에도 기저유출이 많지 않았기 때문이다. 또한 학의, 삼성천, 기아대교 상류유역과 같이 하천유지유량을 항목별 필요유량으로 산정한 경우는 모든 유역에서 이상적인 상황의 저수량보다 큰 값을 보였다. 따라서 지방2급 하천과 같이 유역면적이 작거나 산지하천의 경우에도 일률적으로 갈수량이나 항목별 필요유량을 비교하여 큰 값으로 하천유지유량을 설정하기보다는 SWAT과 같은 토지이용을 고려하는 수문 모의모형을 이용하여 대상유역에 대해 자연적인 상황에서의 갈수량 또는 저수랑 등 다른 적절한 방안을 사용하는 것이 바람직하다.

개선된 HPLC분석법을 이용한 세파클러 모노하이드레이트 250 mg 캡슐의 생물학적동등성 (Bioequivalence of Cefaclor Monohydrate 250mg Capsules Using an Improved HPLC Analytical Method)

  • 김태완;;한선영;송옥경;신관석;강성하;이범진
    • 한국임상약학회지
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    • 제15권1호
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    • pp.21-26
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    • 2005
  • A bioequivalence study of CKD $Cefaclor^{(R)}$ capsule (Chong Kun Dang Pharm Co., Ltd) to $Ceclor^{(R)}$ capsule (Lilly Korea Co., Ltd.) was conducted according to the guidelines of Korea Food and Drug Administration (KFDA). Twenty four healthy male Korean volunteers received each medicine at the cefaclor dose of 250 mg in a $2{\times}2$ crossover study. There was a one-week washout period between the doses. An improved high-performance liquid chromatorgraphy (HPLC) analytical method with UV detection was used to determine plasma cefaclor concentration in human volunteers for 8 hr after oral drug administration. The area under the plasma concentration-time curve from time zero to 8 hr ($AUC_{0-8hr}$) was calculated by the linear trapezoidal rule. the $C_{max}$ (maximum plasma drug concentration) and $T_{max}$ (time to reach $C_{max}$) were compiled from the plasma concentration-time data. Analysis of variance was carried out using logarithmically transformed $AUC_{0-8hr}\;and\;C_{max}$. No significant sequence effect was found for all of the bioavailability parameters indicating that the cross-over design was properly performed. The $90{\%}$ confidence intervals of the $AUC_{0-8hr}$ ratio and the $C_{max}$ ratio for CKD $Cefaclor^{(R)}$ and $Ceclor^{(R)}$ were $0.9400{\leq}{\delta}{\leq}1.0345$ and $0.8858{\leq}{\delta}{\leq}1.1021$, respectively. These values were within the acceptable bioequivalence intervals of 0.80-1.25. Thus, our study demonstrated the of CKD $cefaclor^{(R)}$ capsule was bioequivalent to $Cefaclor^{(R)}$ capsule with respect to its bioavailability.

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뮤코펙트 정(염산암브록솔 30 mg)에 대한 암브렉트 정의 생물학적 동등성 (Bioequivalence of AmbrectTM Tablet to MucopectTM Tablet (Ambroxol hydrochloride 30 mg))

  • 유정연;정선경;최미희;한상범;이경률;이희주
    • Journal of Pharmaceutical Investigation
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    • 제33권3호
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    • pp.215-221
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    • 2003
  • A bioequivalence study of $Ambrect^{TM}$ tablets (Dong Wha Pharm. Ind. Co., Ltd.) to $Mucopect^{TM}$ tablets (Boehringer Ingelheim Korea, Ltd.) was conducted according to the guideline of Korea Food and Drug Administration (KFDA). Twenty four healthy male Korea volunteers received each medicine at the ambroxol hydrochloride dose of 30 mg in a $2{\times}2$ crossover study. There was a one-week wash out period between the doses. Plasma concentrations of ambroxol were monitored by a high-performance liquid chromatography for over a period of 24 hours after the administration. $AUC_t$ (the area under the plasma concentration-time curve from time zero to 24 hr) was calulated by the linear trapezoidal rule method. $C_{max}$ (maximum plasma drug concentration) and $T_{max}\;(time\;to\;reach\;C_{max})$ were compiled from the plasma concentration-time data. Analysis of variance was carried out using logarithmically transformed $AUC_t\;and\;C_{max}$. No significant sequence effect was found for all of the bioavailability parameters indicating that the crossover design was properly performed. The 90% confidence intervals of the $AUC_t$ ratio and the $C_{max}$ ratio for $Ambrect^{TM}/Mucopect^{TM}$ were 0.89-1.01 and 0.89-1.02, respectively. These values were within the acceptable bioequivalence intervals of 0.80-1.25. Thus, our study demonstrated the bioequivalence of $Ambrect^{TM}\;and\;Mucopect^{TM}$ with respect to the rate and extent of absorption.

케타스캅셀(이부딜라스트 10 mg)에 대한 딜라스트캡슐의 생물학적동등성 (Bioequivalence of DilastTM Capsule to Ketas® Capsule (Ibudilast 10 mg))

  • 장규영;강승우;유은주;유수현;이경률;이희주
    • Journal of Pharmaceutical Investigation
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    • 제37권3호
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    • pp.197-203
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    • 2007
  • A bioequivalence study of $Dilast^{TM}$ Capsule (Chong Kun Dang Pharma. Co., Ltd.) to $Ketas^{(R)}$ Capsule (Han Dok Pharma. Co., Ltd.) was conducted according to the guidelines of Korea Food and Drug Administration (KFDA). Twenty eight healthy male Korean volunteers received each medicine at the ibudilast dose of 20 mg in a $2{\times}2$ crossover study. There was one week wash-out period between the doses. Plasma concentrations of ibudilast were monitored by a liquid chromatography-tandem mass spectrometry (LC-MS/MS) for over a period of 36 hours after drug administration. $AUC_t$ (the area under the plasma concentration-time curve from time zero to 36 hr) was calculated by the linear trapezoidal rule method. $C_{max}$ (maximum plasma drug concentration) and $T_{max}$ (time to reach $C_{max}$) were compiled from the plasma concentration-time data. Analysis of variance was carried out using logarithmically transformed $AUC_t\;and\;C_{max}$. No significant sequence effect was found for all of the bioavailability parameters indicating that the crossover design was properly performed. The 90% confidence intervals of the $AUC_t$ ratio and the $C_{max}$ ratio for $Dilast^{TM}$ $Capsule/Ketas^{(R)}$ Capsule were $log0.93{\sim}log1.06$ and $log0.93{\sim}log1.11$, respectively. These values were within the acceptable bioequivalence intervals of $log0.80{\sim}log1.25$. Thus, our study demonstrated the bioequivalence of $Dilast^{TM}$ Capsule and $Ketas^{(R)}$ Capsule with respect to the rate and extent of absorption.

소말겐 정(탈니플루메이트 370 mg)에 대한 플루탈 정의 생물학적동등성 (Bioequivalence of FLUTAL Tablet to SOMALGEN Tablet (Talniflumate 370 mg))

  • 이헌우;조성희;박완수;임호택;김영관;류재환;이경태
    • Journal of Pharmaceutical Investigation
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    • 제35권4호
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    • pp.303-308
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    • 2005
  • The purpose of the present study was to evaluate the bioequivalence of two talniflumate tablets, SOMALGEN tablet (Kun Wha Pharm. Co., Ltd., Seoul, Korea, reference drug) and FLUTAL tablet (Kukje Pharm. Co., Ltd., Korea, test drug), according to the guidelines of Korea Food and Drug Administration (KFDA). Twenty-four healthy male Korean volunteers received two tablets at the talniflumate dose of 740 mg in a $2{\pm}2$ crossover study. There was a one-week washout period between the doses. Plasma concentrations of niflumic acid were monitored by an HPLC-UV for over a period of 14 hr after the administration. $AUC_t$(the area under the plasma concentration-time curve from time zero to 14 hr) was calculated by the linear trapezoidal rule method. $C_{max}$(maximum plasma drug concentration) and $T_{max}$(time to reach $C_{max}$) were compiled from the plasma concentration-time data. Analysis of variance was carried out using logarithmically transformed $AUC_t$, $C_{max}$ and untransformed $T_{max}$. No significant sequence effect was found for all of the bioavailability parameters indicating that the crossover design was properly performed. The 90% confidence intervals of the $AUC_t$, ratio and the $C_{max}$ ratio for SOMALGEN/FLUTAL were $log0.8510{\sim}log1.0318$ and $log0.9264{\sim}log1.0607$, respectively. These values were within the acceptable bioequivalence intervals of $log0.80{\sim}log1.25$. Taken together, our study demonstrated the bioequivalence of SOMALGEN and FLUTAL with respect to the rate and extent of absorption.

큐란 정(염산라니티딘 150 mg)에 대한 수도염산라니티딘정의 생물학적동등성 (Bioequivalence Of SudoTM Ranitidine Hydrochloride Tablet to CuranTM Tablet (Ranitidine Hydrochloride 150 mg))

  • 이선녀;고연정;강승우;윤서현;박무신;이예리;이경률;이희주
    • Journal of Pharmaceutical Investigation
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    • 제36권3호
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    • pp.193-199
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    • 2006
  • A bioequivalence study of $Sudo^{TM}$ Ranitidine HCI tablet (Sudo Pharma. Ind. Co., Ltd.) to $Curan^{TM}$ tablet (Il Dong Pharma. Ind. Co., Ltd.) was conducted according to the guidelines of Korea Food and Drug Administration (KFDA). Twenty four healthy male Korean volunteers received each medicine at the ranitidine hydrochloride dose of 150 mg in a 2x2 crossover study. There was a one week wash-out period between the doses. Plasma concentrations of ranitidine were monitored by a high-turbulent liquid chromatography (HTLC) for over a period of 12 hours after drug administration. $AUC_t$ (the area under the plasma concentration-time curve from time zero to 12 hr) was calculated by the linear trapezoidal rule method. $C_{max}$ (maximum plasma drug concentration) and $T_{max}$ (time to reach $C_{max}$) were compiled from the plasma concentration-time data. Analysis of variance was carried out using logarithmically transformed $AUC_t$ and $C_{max}$. No significant sequence effect was found far all of the bioavailability parameters indicating that the crossover design was properly performed. The 90% confidence intervals of the $AUC_t$ ratio and the $C_{max}$ ratio for $Sudo^{TM}$ Ranitidine $HCl/Curan^{TM}$ were 0.92-1.00 and 0.90-1.03, respectively. These values were within the acceptable bioequivalence intervals of 0.80-1.25. Thus, our study demonstrated the bioequivalence of $Sudo^{TM}$ Ranitidine HCI and $Curan^{TM}$ with respect to the rate and extent of absorption.

모빅 캡슐(멜록시캄 7.5 mg)에 대한 멜락스 캡슐의 생물학적동등성 (Bioequivalence of MelaxTM Capsule to MobicTM Capsule (Meloxicam 7.5 mg))

  • 이예리;염승복;고연정;고정길;김호현;이희주;이경률
    • Journal of Pharmaceutical Investigation
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    • 제34권5호
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    • pp.413-418
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    • 2004
  • A bioequivalence of $Melax^{TM}$ capsules (Chong Kun Dang Pharm., Korea) and $Mobic^{TM}$ capsules (Boehringer Ingelheim Korea) was evaluated according to the guideline of Korea Food and Drug Administration (KFDA). Single 15 mg dose of meloxicam of each medicine was administered orally to 24 healthy male volunteers. This study was performed in a $2\;{\times}\;2$ crossover design. Concentrations of meloxicam in human plasma were monitored by a high-performance liquid chromatography. $AUC_t$ (the area under the plasma concentration-time curve from time zero to 72 hr) was calculated by the linear trapezoidal rule method. $C_{max}$ (maximum plasma drug concentration) and $T_{max}$ (time to reach $C_{max}$) were compiled from the plasma concentration-time data. Analysis of variance was performed using logarithmically transformed $AUC_t$ and $C_{max}$. No significant sequence effect was found for all of the bioavailability parameters. The 90% confidence intervals of the $AUC_t$ ratio and the $C_{max}$ ratio for $Melax^{TM}/Mobic^{TM}$ were 0.95 - 1.04 and 0.98 - 1.14, respectively. This study demonstrated a bioequivalence of $Melax^{TM}$ and $Mobic^{TM}$ with respect to the rate and extent of absorption.

록소닌 정(록소프로펜 나트륨 무수물 60 mg)에 대한 록시펜 정의 생물학적 동등성 (Bioequivalence of Loxipen Tablet to Loxonin Tablet (Sodium Loxoprofen Anhydride 60 mg))

  • 김인화;한태규;김경식;정석재;이민화;심창구
    • Journal of Pharmaceutical Investigation
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    • 제28권3호
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    • pp.185-191
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    • 1998
  • A bioequivalence study of the Loxipen tablets (Dae Wha Pharmaceutical Co., Korea) to the Loxonin tablets (Dong Hwa Pharmaceutical Co., Korea), formulations of sodium loxoprofen anhydrous 60 mg, was conducted. Sixteen healthy Korean male subjects received each formulation at the dose of 60 mg as sodium loxoprofen anhydrous in a $2{\times}2$ crossover study. There was a 2-week washout period between the dose. Plasma concentrations of loxoprofen were monitored by an HPLC method for over a period of 6 h after each administration. AUC (area under the plasma concentration-time curve from time zero to infinity) was calculated by the linear trapezoidal and extrapolation method. $C_{max}$ (maximum plasma drug concentration) and $T_{max}$ $(time\;to\;reach\;C_{max})$ were compiled from the plasma drug concentration-time data. Analysis of variance (ANOVA) revealed that there are no differences in AUC, $C_{max}$ and $T_{max}$ between the formulations. The apparent differences between the formulations in these parameters were all far less than 20% (i.e., 5.88, 7.81 and 6.09% for AUC, $C_{max}$ and $T_{max}$, respectively). Minimum detectable differences (%) at ${\alpha}=0.1$ and $1-{\beta}=0.8$ were all less than 20% difference in these parameters between the formulations were all over 0.8 (i.e., 15.81, 13.13 and 19.85 for AUC, $C_{max}$ and $T_{max}$, respectively). The 90% confidence intervals for these parameters were also within ${\pm}20%$ (i.e., $-16.52{\sim}4.77$, $-16.65{\sim}1,02$ and $-19.45{\sim}7.28%$ for AUC, $C_{max}$ and $T_{max}$, respectively). These results satisfy the bioequivalence criteria of the Korea Food and Drug Administration (KFDA) guidelines (No. 98-51). Therefore, these results indicate that the 2 formulations of loxoprofen are bioequivalent and, thus, may be prescribed interchangeably.

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Bioequivalence of Boryung Torsemide Tablet to Torem Tablet (Torasemide 10 mg) by High Performance Liquid Chromatography/UV Detector

  • Cho, Hea-Young;Kang, Hyun-Ah;Park, Chan-Ho;Kim, Se-Mi;Kim, Dong-Ho;Park, Sun-Ae;Kim, Kyung-Ran;Hur, Hyeon;Lee, Yong-Bok
    • Journal of Pharmaceutical Investigation
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    • 제35권5호
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    • pp.323-328
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    • 2005
  • The purpose of the present study was to evaluate the bioequivalence of two torasemide tablets, Torem tablet (Roche Korea Co., Ltd., Korea, reference drug) and Boryung Torsemide tablet (Boryung Pharmaceutical Co., Ltd., Korea, test drug), according to the guidelines of Korea Food and Drug Administration (KFDA). After adding an internal standard (furosemide) to human serum, serum samples were extracted using 5 mL of ethyl acetate. Compounds were analyzed by reverse-phase HPLC method with UV detection. This method showed linear response over the concentration range of 0.05 ug/mL with correlation coefficient of 0.999. The lower limit of quantitation using 0.5 mL of serum was 0.05 ug/mL which was sensitive enough for pharmacokinetic studies. Twenty-eight healthy male Korean volunteers received each medicine at the torasemide dose of 20 mg in a $2{\times}2$ crossover study. There was a one-week washout period between the doses. Serum concentrations of torasemide were monitored by an HPLC-UV for over a period of 12 hr after the administration. $AUC_{t}$(the area under the serum concentration-time curve from time zero to 12 hr) was calculated by the linear trapezoidal rule method. $C_{max}$ (maximum serum drug concentration) and $T_{max}$ (time to reach $C_{max}$) were compiled from the serum concentration-time data. Analysis of variance was carried out using logarithmically transformed $AUC_{t}$ and $C_{max}$. No significant sequence effect was found for all of the bioavailability parameters indicating that the crossover design was properly performed. The 90% confidence intervals of the $AUC_{t}$ ratio and the $C_{max}$ ratio for Boryung Torsemide/Torem were log 0.97-10g 1.03 and log 0.93log 1.12, respectively. These values were within the acceptable bioequivalence intervals of log 0.80-log 1.25. Thus, the criteria of the KFDA guidelines for the bioequivalence was satisfied, indicating Boryung Torsemide tablet and Torem tablet are bioequivalent.

코자 정(로자탄 칼륨 50 mg)에 대한 로자르탄 정의 생물학적동등성 (Bioequivalence of LosartanTM Tablet to CozzarTM Tablet (Losartan Kalium 50 mg))

  • 김용원;박완수;김성수;서지형;조성희;이헌우;류재환;이경태
    • Journal of Pharmaceutical Investigation
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    • 제36권2호
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    • pp.131-136
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    • 2006
  • The purpose of the present study was to evaluate the bioequivalence of two losartan tablets, $Cozaar^{TM}$ tablet (MSD Korea. Co., Ltd., Seoul, Korea, reference drug) and $Losartan^{TM}$ tablet (DaeWon Pharm. Co., Ltd., Korea, test drug), according to the guidelines of Korea Food and Drug Administration (KFDA). Twenty-four healthy male Korean volunteers received two tablets at the losartan kalium dose of 100 mg in a $2\;{\time}\;2$ crossover study. There was a one-week washout period between the doses. Plasma concentrations of losartan were monitored by an LC-MS/MS for over a period of 12 hr after the administration. $AUC_t$ (the area under the plasma concentration-time curve from time zero to 12 hr) was calculated by the linear trapezoidal rule method. $C_{max}$ (maximum plasma drug concentration) and $T_{max}$ (time to reach $C_{max}$) were compiled from the plasma concentration-time data. Analysis of variance was carried out using logarithmically transformed $AUC_t$ and $C_{max}$. No significant sequence effect was found for all of the bioavailability parameters indicating that the crossover design was properly performed. The 90% confidence intervals of the $AUC_t$ ratio and the $C_{max}$ ratio for $Cozaar^{TM}/Losartan^{TM}$ were $log\;0.97{\sim}log\;1.12\;and\;log\;0.93{\sim}log\;1.23$, respectively. These values were within the acceptable bioequivalence intervals of $log\;0.80{\sim}log\;1.25$. Taken together, our study demonstrated the bioequivalence of $Cozaar^{TM}$ and $Losartan^TM$ with respect to the rate and extent of absorption.