• 제목/요약/키워드: percentage depth dose

검색결과 56건 처리시간 0.029초

방사선 치료용 고에너지 전자선의 조직 내 선량분포 특성에 관한 연구 (Study on Characteristics of Dose Distribution in Tissue of High Energy Electron Beam for Radiation Therapy)

  • 나수경
    • 대한방사선치료학회지
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    • 제14권1호
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    • pp.175-186
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    • 2002
  • The purpose of this study is directly measure and evaluate about absorbed dose change according to nominal energy and electron cone or medical accelerator on isodose curve, percentage depth dose, contaminated X-ray, inhomogeneous tissue, oblique surface and irradiation on intracavitary that electron beam with high energy distributed in tissue, and it settled standard data of hish energy electron beam treatment, and offer to exactly data for new dote distribution modeling study based on experimental resuls and theory. Electron beam with hish energy of $6{\sim}20$ MeV is used that generated from medical linear accelerator (Clinac 2100C/D, Varian) for the experiment, andwater phantom and Farmer chamber md Markus chamber und for absorbe d dose measurement of electron beam, and standard absorbed dose is calculated by standard measurements of International Atomic Energy Agency(IAEA) TRS 277. Dose analyzer (700i dose distribution analyzer, Wellhofer), film (X-OmatV, Kodak), external cone, intracavitary cone, cork, animal compact bone and air were used for don distribution measurement. As the results of absorbed dose ratio increased while irradiation field was increased, it appeared maximum at some irradiation field size and decreased though irradiation field size was more increased, and it decreased greatly while energy of electron beam was increased, and scattered dose on wall of electron cone was the cause. In percentage depth dose curve of electron beam, Effective depth dose(R80) for nominal energy of 6, 9, 12, 16 and 20 MeV are 1.85, 2.93, 4.07, 5.37 and 6.53 cm respectively, which seems to be one third of electron beam energy (MeV). Contaminated X-ray was generated from interaction between electron beam with high energy and material, and it was about $0.3{\sim}2.3\%$ of maximum dose and increased with increasing energy. Change of depth dose ratio of electron beam was compared with theory by Monte Carlo simulation, and calculation and measured value by Pencil beam model reciprocally, and percentage depth dose and measured value by Pencil beam were agreed almost, however, there were a little lack on build up area and error increased in pendulum and multi treatment since there was no contaminated X-ray part. Percentage depth dose calculated by Monte Carlo simulation appeared to be less from all part except maximum dose area from the curve. The change of percentage depth dose by inhomogeneous tissue, maximum range after penetration the 1 cm bone was moved 1 cm toward to surface then polystyrene phantom. In case of 1 cm and 2 cm cork, it was moved 0.5 cm and 1 cm toward to depth, respectively. In case of air, practical range was extended toward depth without energy loss. Irradiation on intracavitary is using straight and beveled type cones of 2.5, 3.0, 3.5 $cm{\phi}$, and maximum and effective $80\%$ dose depth increases while electron beam energy and size of electron cone increase. In case of contaminated X-ray, as the energy increase, straight type cones were more highly appeared then beveled type. The output factor of intracavitary small field electron cone was $15{\sim}86\%$ of standard external electron cone($15{\times}15cm^2$) and straight type was slightly higher then beveled type.

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X선 촬영시 산란선 방향 의존성에 관한 연구 (A Study on the Directional Dependence of Scatter Ray in Radiography)

  • 오현주;김성수;김영일;임한영;김흥태;이후민;김학성;이상석
    • 대한방사선기술학회지:방사선기술과학
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    • 제18권1호
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    • pp.63-70
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    • 1995
  • In this pauper, the back, forward, side and $45^{\circ}$ oblique scatter dose were measured the X-ray exposure conditions 60, 80, 100, 120kV, FFD 100cm, FS $20\times20cm$, toward the $25\times25cm\times10\sim20cm$ of solid water, paraffin and MiX-DP phantom, and Pb, Cu, Al, and styrofoam meterials, by the electrometer and 5.3 cc ionization chamber. The obtained results are summarized as following. 1. The percentage depth dose(PDD) at the range of the diagnostic x-ray energy were appeared 50 % depth dose at the 2 cm depth with 60 kV, and 5 cm depth with 120 kV X-ray, 10 % depth dose at the 10 cm depth with 60 kV and 14 cm depth with 120 kV X-ray, 5 % below depth dose at the 20 cm depth. 2. The back scatter dose which were generated the surface of Pb, Cu and Al metal plates were 10 % below, and than the back scatter dose at the Pb plate were a most amount of these which were about 10 %, and were appeared the order of Cu and Al. 3. The percentage forward scatter were appeared from 50 % to 65 %, and the more phantom thicknees become, the more forward scatter were increased with the ratio of 5 % per 5 cm thickness. 4. The percentage back scatter which were generated the tissue equivalence meterials solid water, paraffin and MiX-DP were from 20 % to 40 %, and than the back scatter dose at the solid water were a mest amount of those, and paraffin and MiX-DP were appeared with the next values. 5. The percentage $90^{\circ}$ lateral and $45^{\circ}$ oblique side scatter dose were measured from 4 % to 12 %. a most amount of scatter dose which were generated from the patient in radiography were the forward scatter, the next values were the back scatter, the third values were the $90^{\circ}$ lateral scatter.

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코발트-60의 조사야(照射野) 변형(變形) 및 반음영(半陰影) 차폐(遮蔽)효과에 따른 선량분포(線量分布)에 관한 연구(硏究) (A Study on the Dose Distribution of Various Field and Penumbra Shield in the Telecobalt-60)

  • 김영일;이혜경
    • 대한방사선기술학회지:방사선기술과학
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    • 제8권2호
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    • pp.71-72
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    • 1985
  • This study was performed on the dose distribution of various field size and the effect of penumbra shield in the telecobalt unit. The results obtained are as follows. 1. Errors of the light and ${\gamma}-ray$ field size was below the regulation as 0.52 percentage. 2. The coefficient of field area was increased with the larger field area, and this coefficient was showed the more difference in larger SSD. 3. The rectangular field areas, which were described by level of the same percentage depth does, were decreased with the more elongation factor. At the same elongation factor, the compensating factor was decreased with the larger field size. 4. The lead block or extension collimator was able to shield r-ray exposure of outside field size from 50 to 80 percentage. 5. On the matching adjacent fields, while the gap between beam edges are contacted, that overlapped beam edges indicated up to 140 percentage, and while the gap was 1 cm, it could be reduced to 90 Percentage. The lead-libocking on the overlapped area was more effective to lower dose, as 80 percentage in this case. 6. Percentage depth dose of various trimming field sizes were increased linearlly according to area 1 perimeter size, but the center split field size did not maintain linearlly.

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복부 단순 방사선 검사 시 피폭선량에 대한 연구 (A study on the radiation exposure of simple abdomen Radiation in Radiography)

  • 여진동
    • 한국방사선학회논문지
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    • 제1권3호
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    • pp.5-10
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    • 2007
  • 복부 단순방사선 촬영은 흉부촬영에 이어 가장 많이 검사가 이루어지고 있는 실정인 것이 임상현장이므로 환자의 피폭선량에 대한 연구가 필수적으로 진행이 이루어 질 필요성이 대두가 된다. 그 결과는 다음과 같았다. 1. 관전압이 60-85kV 증가 시 표면선량은 증가하고, 촬영거리를 50-150cm로 20cm씩 증가함에 mAs도 증가시킨 결과 표면선량은 감소되었다. 2. 심부선량 백분율은 60-75kV에서는 4cm 깊이, 80-85kV에서는 6cm 깊이에서 50% 이하를 나타내었으며, 60kV에서는 12cm 깊이, 65-85kV에서는 14cm 깊이에서 5% 이하를 나타났다. 3. 전방산란율은 60-85kV까지 관전압이 증가 시 10-11.78%까지 증가함을 나타내었다. 후방 산란율은 관전압이 60-85kV 증가 시 25-37%로 증가하였다. 측방산란율은 음극 측에서는 관전압이 60-85kV 증가 시 1.63-2.95%로 완만하게 증가하나 양극측은 그 반대로 감소하는데 그 원인은 heel effect 현상 때문인가 사료된다. 후방산란율이 가장 크고, 그 다음이 전방산란율, 측방산란율 순으로 작아짐을 알 수 있다.

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편향전자석의 자장변화에 따른 광자선 선질평가에 관한 고찰 (Study of photon beam quality tool at magnetic field change in bending magnet)

  • 김정호;유세종;박명철;배석환;김기진
    • 대한안전경영과학회지
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    • 제16권4호
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    • pp.433-439
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    • 2014
  • Beam quality is changed about magnetic field of bending magnet. Evaluation of beam quality using PDD(Percentage Depth Dose) at 10cm depth at recommendation of AAPM(America Academy of Pain Medicine). However this evaluation shows fragmentary element. Therefore this study is applied to three value, 10cm divided by 5cm depth PDD, 20cm divided by 10cm depth PDD, 30cm divided by 20cm depth PDD, at change the magnetic field. PDD is measured at magnetic field changed ${\pm}1%$, ${\pm}2%$ at 6MV(Mega Voltage), 10MV photon. The plan technique is 3 portal plan using Core-Plan at human pelvic phantom. Conventional and presented methods are compared at maximum and minimum dose. The presented method increased discernment of relieve the unequal distribution and energy area than conventional method. Henceforth, application of presented method will be considered. Development of energy measurement method and detector miniaturization will be needed about continuous study.

Enhanced Dynamic Wedge를 사용한 Mapcheck에서의 선량분포 평가 (Evaluation of the dose distribution in Mapcheck using Enhanced Dynamic Wedge)

  • 강수만;장은성;이병구;정봉재;신정섭;박철우
    • 한국방사선학회논문지
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    • 제6권5호
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    • pp.343-349
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    • 2012
  • 세기조절방사선치료(intensity modulated radiation therapy ; IMRT)는 주변 정상장기 선량을 최소화하면서 종양에 집중적으로 고선량을 조사할 수 있는 장점으로 인하여 최근 그 사용이 급격히 증가하고 있다. 기능강화 동적쐐기 (enhanced dynamic wedge; EDW) 사용 시 기하학적 변화에 따른 Mapcheck에서의 선량분포를 측정 평가하고자 한다. Clinac ix에서 IMRT를 이용하여 EDW angle($10^{\circ}$, $15^{\circ}$, $20^{\circ}$, $25^{\circ}$, $30^{\circ}$, $45^{\circ}$, $60^{\circ}$), field size(asymmetric field), depth 변화(1,5 cm, 5 cm)에 따른 선량분포를 검증하기 위해 Mapcheck위에 고체팬텀을 올려놓고 6 MV, 10MVX-ray로 100MU를 조사하였다. 6MV, 10MV의 에너지를 사용하여 기하학적변화에 따라 최대선량깊이(1.5 cm)와 5 cm 깊이에서 심부 선량백분율(percentage depth dose; PDD)은 치료계획장치에서 계산한 값의 차이가 최대 0.6%로 1%미만의 값으로 나타났다. 심부선량백분율은 조사야 중앙에서 최대선량깊이의 선량을 100%로 보았을 경우, 2.4%에서 7.2%의 범위에 있다. 또한 심부선량백분율 차이의 최대값은 Y2-OUT 방향에서 4.1%로 나타났고 Y1-IN 방향으로 1.7%로 나타났다. 동적쐐기를 사용하여 환자를 치료할 경우, 조사야 주변부의 불필요한 피폭을 유발하여 산란되는 선량을 줄이기 위하여 기능 강화 동적쐐기를 사용하는 것이 바람직할 것으로 사료된다. 특히 임상에서 환자를 치료할 경우, 쐐기의 toe방향 선량이 heel방향 선량보다 높다는 것을 염두에 두고 치료를 수행해야 할 것으로 사료된다.

광섬유 방사선량계를 이용한 선량보강 영역에서의 심부선량 백분율과 피부 선량률 측정 (Measurement of Skin Dose and Percentage Depth Does in Build-up Region Using a Fiber-optic Dosimeter)

  • 조동현;장경원;유욱재;서정기;허지연;이봉수;조영호
    • 한국광학회지
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    • 제21권1호
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    • pp.16-20
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    • 2010
  • 본 연구에서는 고 에너지 광자선을 조사 할 때, 선량보강 영영에서의 피부 선량률을 측정을 위해 유기 섬광체와 플라스틱 광섬유를 사용한 광섬유 방사선량계를 제작하였다. 광섬유 방사선량계의 센서부에서 발생된 섬광빛은 30 m 길이의 광섬유를 통해 전달되어 광증배관과 전류계로 측정된다. 광섬유 방사선량계로 측정한 선량보강 영역에서의 피부 선량률은 이온 전리함 및 GAFCHROMIC EBT 필름의 측정 결과와 비교 및 분석 하였다.

VitalBeam 선형가속기의 심부선량백분율과 측방선량분포 측정을 위한 새로운 기준 전리함으로서 스텔스 전리함의 성능 평가 (Performance Evaluation of Stealth Chamber as a Novel Reference Chamber for Measuring Percentage Depth Dose and Profile of VitalBeam Linear Accelerator)

  • 김연래;정진범;강성희;강상원;김경현;정재용;신영주;서태석;이정우
    • 대한방사선기술학회지:방사선기술과학
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    • 제41권3호
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    • pp.201-207
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    • 2018
  • The purpose of this study is to evaluate the performance of a "stealth chamber" as a novel reference chamber for measuring percentage depth dose (PDD) and profile of 6, 8 and 10 MV photon energies. The PDD curves and dose profiles with fields ranging from $3{\times}3$ to $25{\times}25cm^2$ were acquired from measurements by using the stealth chamber and CC 13 chamber as reference chamber. All measurements were performed with Varian VitalBeam linear accelerator. In order to assess the performance of stealth chamber, PDD curves and profiles measured with stealth chamber were compared with measurement data using CC13 chamber. For PPDs measured with both chambers, the dosimetric parameters such as $d_{max}$ (depth of maximum dose), $D_{50}$ (PDD at 50 mm depth), and $D_{100}$ (PDD at 100 mm depth) were analyzed. Moreover, root mean square error (RMSE) values for profiles at $d_{max}$ and 100 mm depth were evaluated. The measured PDDs and profiles between the stealth chamber and CC13 chamber as reference detector had almost comparable. For PDDs, the evaluated dosimetric parameters were observed small difference (<1%) for all energies and field sizes, except for $d_{max}$ less than 2 mm. In addition, the difference of RMSEs for profiles at $d_{max}$ and 100 mm depth was similar for both chambers. This study confirmed that the use of stealth chamber for measuring commission beam data is a feasible as reference chamber for fields ranging from $3{\times}3$ to $20{\times}20cm^2$. Furthermore, it has an advantage with respect to measurement of the small fields (less than $3{\times}3cm^2$ field) although not performed in this study.

Water Phantom 속 Conventional X-ray 중심축상의 깊이 선량 백분율 (Central Axis Percentage Depth-Dose in a Water Phantom Irradiated by Conventional X-rays)

  • 김원식;하석호;황선태;오장진;전재식
    • Journal of Radiation Protection and Research
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    • 제12권1호
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    • pp.1-11
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    • 1987
  • X-선 target 으로 부터 water phantom($30{\times}30{\times}30cm^3$) 표면까지 1m이고 이 지점에서 비임 크기가 $5cm{\phi},\;10cm{\phi},\;15cm{\phi}$인 경우 phantom 표면으로 부터 X-선 중심축을 따라 깊이 2.5cm의 기준점으로 부터깊이 20cm까지 2.5cm 간격으로 깊이-선량 백분율, P(%)을 추정하였다. 사용된 X-선 인가전압 및 전류는 $150{\sim}250kV$ 및 5 mA 이었고 물속 흡수선량률, $\dot{D}_w$은 NE 2571 공동전리함의 조사선량 교정인자 $N_x$로부터 구한 공기 kerma 고정인자 $N_k$를 이용하여 결정하였다. 기준조사선량룰 $\dot{X}_c$은 Exradin A-2공동 전리함을 일본 ETL로부터 교정하여 X-선 선질을 ETL 교정선질과 같도록 반가층을 결정한 후에 측정되었다. 한편, 흡수선량 및 깊이-선량 백분율 측정의 정확도를 검증하기 위해 phantom 속 깊이 5 cm되는 교정점에서 물속흡수선량률, $\dot{D}_w$$N_k$로부터 산출한 값과 Burlin의 일반화된 공동이론을 이용하여 계산한 값을 비교해 보았으며, $N_k$로부터 결정된 깊이-선량 백분율 P(%)을 BJR Suppl. 로부터 구한 값과 비교해 본 결과는 좋은 일치를 보였다.

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THERMOLUMINESCENCE DOSIMETRIC PROPERTIES OF Ge- AND Er-DOPED OPTICAL FIBRES AND THEIR APPLICATION IN THE MEASUREMENT OF DEPTH -DOSE IN SOLID WATER PHANTHOM

  • Amin, Y.M.;Abdulla, Y.A.;Khoo, B.H.
    • Journal of Radiation Protection and Research
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    • 제26권3호
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    • pp.143-147
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    • 2001
  • The dosimetric properties of Ge- and Er-doped optical fibres are studied. The Ge-doped fibre is found to be more sensitive to radiation and there is little fading of TL signal compared with Er-doped fibre. The Ge- and Er-doped fibres showed a linear response over a range of ${\sim}1\;Gy$ to about 120 Gy and ${\sim}1Gy$ to about 250Gy respectively. The Ge-doped fibre is found to be dose-rate independent both for photons and electron beams of energy ranging from 6 to 10 MeV and 6 to 12 MeV respectively. The fibre is energy independent for energy greater than ${\sim}0.1\;MeV$ for photon or 0.1 MeV for electron beam. From the depth-dose measurement, it was found that the position of maximum dose, dmax, increased with increasing energy ranging from ${\sim}2\;cm$ and ${\sim}2.5\;cm$ for 6 MeV and 10 MeV photons respectively. The central axis percentage depth dose at 10 cm depth was found to be in good agreement with the value obtained using ionization chamber.

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