• 제목/요약/키워드: TIS21

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유방암환자의 유방보존수술 후 방사선 치료 성적 (Radiation Therapy for Operable Breast Cancer after Conservative Surgery)

  • 이명자;전하정
    • Radiation Oncology Journal
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    • 제20권4호
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    • pp.309-315
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    • 2002
  • 목적 : 유방암 환자에서 국소적 절제 수술 후 방사선 치료 후 재발 양상, 생존율 및 예후 인자를 평가하기 위해 후향적으로 분석을 하였다. 대상 및 방법 : 1985년 1월부터 1996년 12월까지 한양대학교병원 치료방사선과에서 유방보존수술 후 방사선치료를 위해 의뢰된 유방암 1기, 2기 및 3기 53명을 대상으로 후향적 분석을 하였다. 추적기간은 평균 84개월이었고 최소 5년이었다. 연령분포는 24세부터 72세였고 중앙연령은 43세였다. 2명을 제외한 51명이 액와 림프절 곽청술을 받았고 조직병리상 42명이 침윤성 선암이었고 2명이 소엽 세포암 2명은 선관내 선암이었고 7명은 그 외 병리소견을 가졌다. 병기로 T0 2명 T1 30명, T2 21명이었고, 53명 중 15명이 액와 림프절 침윤이 있었다. 원발 종양위치로 내측이 13명, 외측이 38명 유두 하 부위가 2명이었다. 방사선 조사는 전체유방에 $46\~50\;Gy$와 원발 종양 주위에 $14\~18\;Gy$ 추가조사를 시행하였다. 결과 : 5년 생존율은 $94.3\%$ 5년 무병생존율은 $92.4\%$였다. 10년 생존율은 $91.2\%$ 10년 무병생존율은 $81\%$였다. 병기별로 I $100\%$, IIa는 $100\%$, IIb 및 IIIa는 $66,7\%$의 5년 생존율을 보였다. 4명$(7.5\%)$에서 국소 재발이 있었고 3명$(5.7\%)$에서 원격전이가 있었다. 원발 병소 내 국소 재발은 2년 이내였고 원발 병소 밖의 국소 재발은 8년 후에 보였다. 원격전이는 2년에서 6년 사이였다. 35세 이하의 환자에서 국소 및 원격전이가 높아 12예 중 5예의 재발율을 보였고 (국소재발 2명, 원격전이 3명) 종양크기가 2 cm 이상인 환자 21예 중 5예(국소재발 2명, 원격전이 3명)에서 재발율을 보였다. 액와 림프절 침윤이 있는 15명 중 4명$(26.6\%)$에서 원격전이가 있었다. 종양의 크기 2 cm 이상인 환자에서 임파선 전이율이 $38.1\%$였고 35세 이하의 젊은 연령에서 임파선 전이율이 $58.3\%$였다. 예후 인자로는 연령과 액와 림프절 침윤과 종양이 클수록 생존율이 유의하게 낮았다. 결론 : 유방 보존 수술 후 방사선 치료를 받은 조기 유방암환자의 치료결과는 양호함을 알 수 있었다. 국소 재발율은 추적기간이 길수록 증가함으로 보다 더 장기적인 추적이 필요하고 젊은 연령층의 치료 결과를 향상시키기 위해 보다 효과적인 치료법의 개발이 필요하리라 생각된다.

유역특성에 의한 합성단위도의 유도에 관한 연구 (Derivation of the Synthetic Unit Hydrograph Based on the Watershed Characteristics)

  • 서승덕
    • 한국농공학회지
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    • 제17권1호
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    • pp.3642-3654
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    • 1975
  • The purpose of this thesis is to derive a unit hydrograph which may be applied to the ungaged watershed area from the relations between directly measurable unitgraph properties such as peak discharge(qp), time to peak discharge (Tp), and lag time (Lg) and watershed characteristics such as river length(L) from the given station to the upstream limits of the watershed area in km, river length from station to centroid of gravity of the watershed area in km (Lca), and main stream slope in meter per km (S). Other procedure based on routing a time-area diagram through catchment storage named Instantaneous Unit Hydrograph(IUH). Dimensionless unitgraph also analysed in brief. The basic data (1969 to 1973) used in these studies are 9 recording level gages and rating curves, 41 rain gages and pluviographs, and 40 observed unitgraphs through the 9 sub watersheds in Nak Oong River basin. The results summarized in these studies are as follows; 1. Time in hour from start of rise to peak rate (Tp) generally occured at the position of 0.3Tb (time base of hydrograph) with some indication of higher values for larger watershed. The base flow is comparelatively higher than the other small watershed area. 2. Te losses from rainfall were divided into initial loss and continuing loss. Initial loss may be defined as that portion of storm rainfall which is intercepted by vegetation, held in deppression storage or infiltrated at a high rate early in the storm and continuing loss is defined as the loss which continues at a constant rate throughout the duration of the storm after the initial loss has been satisfied. Tis continuing loss approximates the nearly constant rate of infiltration (${\Phi}$-index method). The loss rate from this analysis was estimated 50 Per cent to the rainfall excess approximately during the surface runoff occured. 3. Stream slope seems approximate, as is usual, to consider the mainstreamonly, not giving any specific consideration to tributary. It is desirable to develop a single measure of slope that is representative of the who1e stream. The mean slope of channel increment in 1 meter per 200 meters and 1 meter per 1400 meters were defined at Gazang and Jindong respectively. It is considered that the slopes are low slightly in the light of other river studies. Flood concentration rate might slightly be low in the Nak Dong river basin. 4. It found that the watershed lag (Lg, hrs) could be expressed by Lg=0.253 (L.Lca)0.4171 The product L.Lca is a measure of the size and shape of the watershed. For the logarithms, the correlation coefficient for Lg was 0.97 which defined that Lg is closely related with the watershed characteristics, L and Lca. 5. Expression for basin might be expected to take form containing theslope as {{{{ { L}_{g }=0.545 {( { L. { L}_{ca } } over { SQRT {s} } ) }^{0.346 } }}}} For the logarithms, the correlation coefficient for Lg was 0.97 which defined that Lg is closely related with the basin characteristics too. It should be needed to take care of analysis which relating to the mean slopes 6. Peak discharge per unit area of unitgraph for standard duration tr, ㎥/sec/$\textrm{km}^2$, was given by qp=10-0.52-0.0184Lg with a indication of lower values for watershed contrary to the higher lag time. For the logarithms, the correlation coefficient qp was 0.998 which defined high sign ificance. The peak discharge of the unitgraph for an area could therefore be expected to take the from Qp=qp. A(㎥/sec). 7. Using the unitgraph parameter Lg, the base length of the unitgraph, in days, was adopted as {{{{ {T}_{b } =0.73+2.073( { { L}_{g } } over {24 } )}}}} with high significant correlation coefficient, 0.92. The constant of the above equation are fixed by the procedure used to separate base flow from direct runoff. 8. The width W75 of the unitgraph at discharge equal to 75 per cent of the peak discharge, in hours and the width W50 at discharge equal to 50 Per cent of the peak discharge in hours, can be estimated from {{{{ { W}_{75 }= { 1.61} over { { q}_{b } ^{1.05 } } }}}} and {{{{ { W}_{50 }= { 2.5} over { { q}_{b } ^{1.05 } } }}}} respectively. This provides supplementary guide for sketching the unitgraph. 9. Above equations define the three factors necessary to construct the unitgraph for duration tr. For the duration tR, the lag is LgR=Lg+0.2(tR-tr) and this modified lag, LgRis used in qp and Tb It the tr happens to be equal to or close to tR, further assume qpR=qp. 10. Triangular hydrograph is a dimensionless unitgraph prepared from the 40 unitgraphs. The equation is shown as {{{{ { q}_{p } = { K.A.Q} over { { T}_{p } } }}}} or {{{{ { q}_{p } = { 0.21A.Q} over { { T}_{p } } }}}} The constant 0.21 is defined to Nak Dong River basin. 11. The base length of the time-area diagram for the IUH routing is {{{{C=0.9 {( { L. { L}_{ca } } over { SQRT { s} } ) }^{1/3 } }}}}. Correlation coefficient for C was 0.983 which defined a high significance. The base length of the T-AD was set to equal the time from the midpoint of rain fall excess to the point of contraflexure. The constant K, derived in this studies is K=8.32+0.0213 {{{{ { L} over { SQRT { s} } }}}} with correlation coefficient, 0.964. 12. In the light of the results analysed in these studies, average errors in the peak discharge of the Synthetic unitgraph, Triangular unitgraph, and IUH were estimated as 2.2, 7.7 and 6.4 per cent respectively to the peak of observed average unitgraph. Each ordinate of the Synthetic unitgraph was approached closely to the observed one.

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