• 제목/요약/키워드: Radiation field Size

검색결과 386건 처리시간 0.026초

CBCT 촬영 시 조사야 조절에 따른 영상의 최적화 및 피폭선량에 관한 고찰 (A Study of Image Quality and Exposed Dose by Field Size Changing on CBCT)

  • 방승재;김영연;정일선;김정수;김영곤
    • 대한방사선치료학회지
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    • 제25권2호
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    • pp.175-180
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    • 2013
  • 목 적: 방사선치료에 있어 환자자세 설정(Set-up) 오차를 줄이기 위하여 많은 장비들이 개발되어 왔다. CBCT 촬영은 Set-up 오차를 줄이고, 정확한 치료를 수행하는 최신 방법 중 하나이다. CBCT의 조사야를 조절하여 영상의질(Image quality) 향상과 피폭선량을 측정하고 분석함으로써 임상에서 최적화하여 사용할 수 있는 치료조사야(Field size)를 제시하고자 한다. 대상 및 방법: Catphan phantom을 이용하여 Half fan, Full fan mode로 조사야를 2~16 cm까지 2 cm 간격으로 촬영하였다. Small field size (2 cm, 4 cm), Medium field size (8 cm, 10 cm), Large field size (14 cm 이상)으로 구분하여 Image quality를 평가하였다. CTDi는 CTDi phantom과 Ion chamber를 이용하여 측정 및 분석하였다. 결 과: CT값 일치도(CT number linearity)는 Small, Large field size에서 촬영한 값이 Medium field size보다 크게 나타났다. 공간분해능(Spatial resolution)은 Full fan에서 Small field size촬영을 제외하고 나머지 Field size에서 크게 차이가 나지 않았다. Half fan에서는 많은 차이를 보였다. CT 값 균일도(HU uniformity)는 Full fan에서는 Medium size를 제외하고는 제조사에서 권고하는 값을 초과하였으며, Half fan에서는 모든 Field size가 Full fan에서는 Medium field size에서는 안정된 값으로 분석되었다. CT 피폭선량(CTDi)는 Medium field size에서 증가 할수록 루트함수의 그래프의 형태로 나타났다. 결 론:Small field size에서는 Image quality와 실용성의 측면에서도 적절하지 않은 것으로 사료된다. Medium field size는 Large field size에서 보다 Image quality도 우수하고 환자의 피폭선량을 줄일 수 있으므로 본 논문에서는 CBCT 촬영 시 Field size 8~10 cm 촬영이 유용하다고 사료된다.

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전자선 에너지 및 조사야에 따른 유효선원 피부 간 거리 변화 (Variation of Effective SSD According to Electron Energies and Irradiated Field Sizes)

  • 양칠용;염하용;정태식
    • Radiation Oncology Journal
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    • 제5권2호
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    • pp.157-163
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    • 1987
  • It is known that fixed source to skin distance (SSD) cannot be used when the treatment field is sloped or larger than the size of second collimator in electron beam irradiation and inverse square law using effective ssd should be adopted. Effective SSDs were measured in different field sizes in each 6, 9, 12, 15 and 18MeV electron energy by suing NELAC 1018D linear accelerator of Kosin Medical Center. We found important parmeters of effective SSD. 1. Minimum effective SSD was 58.8cm in small field size of $6\pm6cm$ and maximum effective SSD was 94.9cm in large field size of $25\pm25cm$, with 6MeV energy. It's difference was 36.1cm. The dose rate at measuring point was quite different even with a small difference of SSD in small field $(6\times6cm)$ and low energy (6 MeV). 2. Effective SSD increased with field size in same electron energy. 3. Effective SSDs gradually increased with the electron energies and reached maximum at 12 or 15 MeV electron energy and decreased again at 18MeV electron energy in each identical field size. And so the effective SSD should be measured in each energy and field size for practical radiotherapy.

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A of Radiation Field with a Developed EPID

  • Y.H. Ji;Lee, D.H.;Lee, D.H.;Y.K. Oh;Kim, Y.J.;C.K. Cho;Kim, M.S.;H.J. Yoo;K.M. Yang
    • 한국의학물리학회:학술대회논문집
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    • 한국의학물리학회 2003년도 제27회 추계학술대회
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    • pp.67-67
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    • 2003
  • It is crucial to minimize setup errors of a cancer treatment machine using a high energy and to perform precise radiation therapy. Usually, port film has been used for verifying errors. The Korea Cancer Center Hospital (KCCH) has manufactured digital electronic portal imaging device (EPID) system to verify treatment machine errors as a Quality Assurance (Q.A) tool. This EPID was consisted of a metal/fluorescent screen, 45$^{\circ}$ mirror, a camera and an image grabber and could display the portal image with near real time KIRAMS has also made the acrylic phantom that has lead line of 1mm width for ligh/radiation field congruence verification and reference points phantom for using as an isocenter on portal image. We acquired portal images of 10$\times$10cm field size with this phantom by EPID and portal film rotating treatment head by 0.3$^{\circ}$, 0.6$^{\circ}$ and 0.9$^{\circ}$. To check field size, we acquired portal images with 18$\times$18cm, 19$\times$19cm and 20$\times$20cm field size with collimator angle 0$^{\circ}$ and 0.5$^{\circ}$ individually. We have performed Flatness comparison by displaying the line intensity from EPID and film images. The 0.6$^{\circ}$ shift of collimator angle was easily observed by edge detection of irradiated field size on EPID image. To the extent of one pixel (0.76mm) difference could be detected. We also have measured field size by finding optimal threshold value, finding isocenter, finding field edge and gauging distance between isocenter and edge. This EPID system could be used as a Q.A tool for checking field size, light/radiation congruence and flatness with a developed video based EPID.

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The Radiation Spot Size due to Wiggler Errors in a Free-Electron Laser Oscillator

  • Nam, Soon-Kwon;Park, Y.S.
    • Journal of the Korean Physical Society
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    • 제73권10호
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    • pp.1495-1501
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    • 2018
  • We have developed an extended three-dimensional free-electron laser (3D FEL) code with source-dependent expansion to calculate the intensity of the radiation field and the spot size in a free-electron laser oscillator. The effect of the wiggler field errors was evaluated for the case of a planar wiggler generated by a magnet stack with parabolic shaped pole faces by using the extended three-dimensional equations in a free-electron laser oscillator based on the proposed FEL facility which is to be operated in the far-infrared and the infrared regions. The radiation spot size due to the wiggler field errors also have been analyzed for wiggler errors of ${\Delta}B/B=0.0$, 0.03, 0.06 and 0.09% at z = 1 m and z = 2 m. The effect of the diffraction of radiation field due to the wiggler field errors of ${\Delta}B/B=0.0$ and ${\Delta}B/B=0.09%$ at 200 passes was evaluated by using the extended 3D code that we developed. The variation of the curvature of the phase front and the effect of the radiation field intensity due to the wiggler field errors were also evaluated for B = 0.5 T and B = 0.7 T with the wiggler error of ${\Delta}B/B=0.09%$ at 200 passes and the results were compared to those of without errors. The intensity of the radiation, behavior of the radiation spot size and the variation of the curvature of the phase were highly sensitive to the wiggler error of ${\Delta}B/B$ > 0.09%, but were less sensitive to the wiggler errors for ${\Delta}B/B$ < 0.09% in a free-electron laser (FEL) oscillator based on the proposed FEL facility.

Size Measurement of Radioactive Aerosol Particles in Intense Radiation Fields Using Wire Screens and Imaging Plates

  • Oki, Yuichi;Tanaka, Toru;Takamiya, Koichi;Osada, Naoyuki;Nitta, Shinnosuke;Ishi, Yoshihiro;Uesugi, Tomonori;Kuriyama, Yasutoshi;Sakamoto, Masaaki;Ohtsuki, Tsutomu
    • Journal of Radiation Protection and Research
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    • 제41권3호
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    • pp.216-221
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    • 2016
  • Background: Very fine radiation-induced aerosol particles are produced in intense radiation fields, such as high-intensity accelerator rooms and containment vessels such as those in the Fukushima Daiichi nuclear power plant (FDNPP). Size measurement of the aerosol particles is very important for understanding the behavior of radioactive aerosols released in the FDNPP accident and radiation safety in high-energy accelerators. Materials and Methods: A combined technique using wire screens and imaging plates was developed for size measurement of fine radioactive aerosol particles smaller than 100 nm in diameter. This technique was applied to the radiation field of a proton accelerator room, in which radioactive atoms produced in air during machine operation are incorporated into radiation-induced aerosol particles. The size of $^{11}C$-bearing aerosol particles was analyzed using the wire screen technique in distinction from other positron emitters in combination with a radioactive decay analysis. Results and Discussion: The size distribution for $^{11}C$-bearing aerosol particles was found to be ca. $70{\mu}m$ in geometric mean diameter. The size was similar to that for $^7Be$-bearing particles obtained by a Ge detector measurement, and was slightly larger than the number-based size distribution measured with a scanning mobility particle sizer. Conclusion: The particle size measuring method using wire screens and imaging plates was successfully applied to the fine aerosol particles produced in an intense radiation field of a proton accelerator. This technique is applicable to size measurement of radioactive aerosol particles produced in the intense radiation fields of radiation facilities.

선형가속기에서 상위조리개와 하위조리개의 교환에 의한 선량 변화의 고찰 (The study on dose variation due to exchange of Upper and Lower jaw in the linear accelerator)

  • 임충근;김회남;송기원
    • 대한방사선치료학회지
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    • 제11권1호
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    • pp.6-10
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    • 1999
  • The field size can be beam output, therefore MonitorUnit can be varied due to field size dependence The purpose of this study is to evaluate and compare the dose variation according to exchange of collimator The measurements were perfomed with Wellhofer dosimetry system(water phantom. ion chamber. electrometer. system controller. build up cap. etc)and two types of linear accerlerator (Mevatron KD, MevatronMX) Scatter can be affected to field size dependence and scatter correction is separated into collimator and phantom components, scatter components can affect by exchanging of collimator Measurements of collimator scatter factor(Sc) was done in air with build up cap. 1)Square field (5cm2 to 40cm2) was measured 2)and then keeping the upper jaw constant at loom and varing lower jaw from 5cm to 40cm, 3)keeping the lower jaw constant at 10cm and varing upper jaw from 5cm to 40cm Measurements of total scatter factor(Scp) was done in water at Dmax as the procedure of collimator scatter factor measurements in water Dmax The total scatter factors were obtained to the following equation(Sp=Scp/Sc) The measured data is normalized to the data of reference field size($10{\times}10$), rectangular field is inverted to equivalent field to compare three field size data As the collimator setting is varied, the output was changed In conclusion, the error was obtained small but it must be eliminated if we intend to reach the common stated goal of $5\%$ overall uncertainty in dose determination

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방사선발생장치 교육을 위한 시뮬레이터의 개발과 유용성 평가 (Development and Usefulness Evaluation of Simulator for Educational Radiation Generator)

  • 서정민
    • 대한방사선기술학회지:방사선기술과학
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    • 제44권6호
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    • pp.591-597
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    • 2021
  • In the present study, we developed virtual reality education contents for radiation generator on radiation education field. The radiation generator was divided by module and even the X-ray exposure part was manufactured in detail for designing 3D models. The mechanical details of the X-ray exposure part, the function of adjusting field size of the X-ray, the function of moving the exposure part, and the demonstrating the principle of the X-ray tube were applied. For developing VR contents, the Unreal Engine was used. To evaluate the usefulness of virtual reality content, we used t-test by SPSS. The group used the simulator showed significantly higher levels of understanding of X-ray generation, X-ray irradiation unit composition, irradiation field size adjustment, irradiation unit position adjustment, and overall composition and function. We believe that this VR contents will be used well with radiation safe environment.

코발트-60 감마선의 전자 오염에 관한 연구 (Study on the Reduction of Electron Contamination with A Cobalt-60 Gamma Ray)

  • 김태규;전하정;이명자
    • Radiation Oncology Journal
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    • 제7권2호
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    • pp.293-297
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    • 1989
  • Electron contamination due to the interaction between radiation beam and material was analyzed for the factors such as source-skin distance (SSD), field size, tray characteristics and position of filter, which can affect the surface dose in Cobalt teletherapy. Surface dose in open beam was more influenced by SSD with increasing field size. Relative surface charge (RSC) increased with the use of tray (solid, circular hole, slotted), compared with open beam, which is thought to be due to increased electron contamination of the tray. To reduce the surface dose, 0.4mm thick Lipowitz metal filter was used. Compared with open beam, RSC decreased by 8.8%, 11.3%, 13.3%, 16.6%, 19.3% and 21.7% for the field size of $5{\times}5$, $10{\times}10$, $15{\times}15$, $20{\times}20$, $25{\times}25$ and $30{\times}30cm^2$, respectively. On the contrary, use of Lipowitz metal filter increased RSC at 60cm or less SSD. Surface dose was effectively reduced with Lpowitz metal filter placed right below solid tray in Cobalt teletherapy.

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고에너지 선형가속기의 Independent Collimator를 이용한 비대칭 방사선 조사시 방사선량 결정에 미치는 요인에 관한 연구 (Dosimetric Characteristics of Dual Photon Energy Using Independent Collimator Jaws)

  • 김정기;최영민;이형힉;허원주
    • Radiation Oncology Journal
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    • 제14권3호
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    • pp.237-244
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    • 1996
  • 목적 : 의료용 선형가속기의 Independent Collimator는 현재 광범위하게 사용되고 있다. 그러나 방사선량의 계산과 MU(Monitor Unit)의 계산에 사용되는 모든 기본 자료는 대칭 조사면를 기준으로 작성되었기 때문에 independent collimator를 사용한 비대칭적인 조사면의 경우 현재 사용하고 있는 계산 방식을 그대로 적용함에 무리가 있을 것으로 생각된다. 따라서 이러한 의문에 대한 체계적이고 과학적인 검토가 필요할 것으로 사료되어 본 연구를 진행하였다. 대상 및 방법 :본 연구는 Dual Photon Beam(6MV와 15MV)을 산출(産出)하는 선형가속기(Linac 1800, Varian Co)에서 collimator 사용시 산란 방사선의 총채로 표현되어지는 field size factor, beam qualify에 영향을 미치는 HVL와 PDD를 조사하였다. 먼저 field size factor는 water phantom(WP 600C Wellhofer, Germany)내의 Dmax에서 field size $3{\times}3cm$에서 $35{\times}35cm$까지의 방사선량의 변화를 square field로 $1cm^2$씩 증가시켜 가며 0.6cc ion chamber(NE 2571)로 측정하였다. Beam quality는 100cm SSD(source-surface distance)에서 $5{\times}5$, $10{\times}10$, $15{\times}15$$20{\times}20cm$ field size로 0, 3 및 10cm off-axis distance와 dmax 4, 10, 15 및 20cm의 깊이에서 측정하였다. Dose distribution을 분석하기 위하여 film densitometer와 water phantom(IC 10 ion chamber)을 사용, $10{\times}10cm$ field size에서 5, 10 및 15cm의 off-axis distance까지의 방사선량의 분포를 관찰하고 대칭 방사선 조사면와 비교 분석하여 실제 isodose 분포에 미치는 영향을 관찰하였다. 결과: 1) Relative field size factor는 중심 축에서 off-axis lateral distance에 따라 다양하게 변화하였는데 6MV X-선의 경우 최대 $3.1\%$, 15MV X-선의 경우 최대 $5\%$까지의 변화를 보였다. 이때 off-axis factor를 구하여 교정을 하였을 경우 중심 축의 field size factor와 거의 유사한 값에 도달할 수 있었다. 2) Beam qualify의 변화를 관찰하기 위한 실험에서 HVL는 off-axis distance가 멀어질수록 감소하였고 PDD도 off-axis distance가 멀어지고 측정 깊이가 깊어질수록 감소되는 현상을 보였다. 통상적인 방사선 치료시에 이용되는 $5{\times}5cm$ 이상의 field size와 15cm 이내의 깊이에서는 3cm 와 l0cm의 off-axis에서 6MV X-선은 평균 $0.5\%$$2\%$, 15MV X선은 $0.4\%$$1.4\%$의 감소 현상을 보여 큰 편차를 관찰할 수 없었다. 3) Isodose distribution은 off-axis distance가 멀어질수록 depth dose의 증가치가 감소되었으며 특히 central axis의 가장자리 부위에서는 isodose curve의 위축이 확연하였다. 결론 : Independent collimator를 사용하여 비대칭 방사선 치료를 할 경우 MU의 계산은 off-axis factor와 PDD 보정이 필수적이며 임상적으로는 중심 축에서의 과소조사에 대한 정밀한 주의가 필요할 것으로 사료된다.

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6MV 선형가속기에서 Al/Cu에 관한 여과판 사용시 전자오염 감소에 관한 연구 (Reduction of Electron Contamination in Photon Beam by electron Filter in 6MV Linear Accelerator)

  • 이철수
    • 대한방사선치료학회지
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    • 제8권1호
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    • pp.41-54
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    • 1996
  • The secondary electrons developed by interaction between primary beam and a tray mounted for blocks in Megavoltage irradiation result in excess soft radiation dose to the surface layer. To reduce this electron contamination, electron filters have been used to be attached under a tray. Various filters with Cu and Al plates in six different thickness and Cu/Al combined plates in 3 different thickness were tested to measure the reduction rate of secondary electron contamination to the surface layer. The measurement to find optimal filter was performed on 6MV linear accelerator in $10 cm{\times}10 cm$ field size and fixed 78.5cm source to measurement points distance from surface to maximum build up point in 2mm intervals. The result was analyzed as the ratio of measured doses with using filters, to standard doses of measured open beam. The result of this study was fellowing : 1. The contaminated low energy radiation were mainly produced by blocking tray. 2. The surface absorbed dose was slowly increased by increasing irradiation field size but rapidly increased at field size above $15cm{\times}15cm$. 3. Al plate upto 2.5mm thickness used as a filter was found to be inadequate due to the failure of reduction of the surface absorbed dose below doses of the under surface upto the maximal build up. Cu 0.5mm plate and Cu 0.28mm/A1 1.5mm compound plate were found to be optimal filters. 4. By using these 2 filters, the absorbed dose to the surface were effectively reduced $5.5\%$ in field size $4cm{\times}4cm,\;11.3\%$ in field size $10cm{\times}10cm,\;22.3\%$ in field size $25cm{\times}25cm$. 5. In field size $10cm{\times}10cm$, the absorbed dose to the surface of irradiation was reduced by setting TSD 20cm at least,. but effective and enough dose reduction could be achieved by setting TSD 30cm as 2 optimal filters used. 6. More surface dose absorbed at TSD less than 7.4cm with a tray and filters together indicated that soft radiation was also developed by filters. 7. The variation of PDD by the different size of irradiation field was minimal as 2 optimal filters used. There was also not different in variation of PDD according to using any of two different filters. 8. PDD was not effected either by various TSD or by using the different filter among two.

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