• 제목/요약/키워드: Radiation treatment planning

검색결과 621건 처리시간 0.028초

유방암의 접선조사 시 Field-in-Field Intensity Modulated Radiation Therapy와 Conventional Radiation Therapy의 전산화 치료계획에 관한 고찰 (A Comparison of Field-in-Field Intensity Modulated Radiation Therapy Planning and Conventional Radiation Therapy Planning with Tangential Beam for Breast Cancer)

  • 유순미;염미숙;김대섭;백금문;권경태
    • 대한방사선치료학회지
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    • 제22권1호
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    • pp.41-46
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    • 2010
  • 목 적: 유방암의 접선조사 시 쐐기필터를 이용한 Conventional RT 기법과 정적다엽조리개를 이용한 FiF-IMRT 기법을 이용하여 전산화 치료계획 시 발생하는 선량분포의 차이를 환자의 유방 크기와 형태에 따라 분류하여 비교 분석하고자 한다. 대상 및 방법: 유방암 환자 30명을 대상으로 Eclipse treatment planning system ($Varian^{TM}$, USA, V8.0)을 사용하여 전산화 치료 계획을 시행하여 유방의 크기와 형태에 따라 분류하고, Dose Volume Histogram (DVH)을 이용하여 Conformity Index (CI)와 Homogeneity Index (HI)를 비교 분석하였다. 결 과: CI값은 ${\pm}1.2%$의 차이를 나타냈으며 FiF-IMRT의 경우 Conventional RT보다 HI값이 평균 1.67% 낮은 값으로 유방의 크기와 형태에 따른 분류값과 ${\Delta}HI$ (%)값의 상관관계를 알아본 결과 단면길이와 부피에서 높은 상관관계를 보였으며 통계적으로 유의(P<0.01)하였다. 결 론: 유방의 단면 길이와 부피가 증가할수록 Conventional RT의 경우보다 FiF-IMRT로 전산화 치료계획 시 유방 내의 선량 균등성이 향상되었으며 유방의 크기에 따라 그 효과가 다르므로 유방의 크기에 따른 적절한 치료계획이 필요할 것으로 생각된다.

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Enhancing value of quality assurance rounds in improving radiotherapy management: a retrospective analysis from King Hussein Cancer Center in Jordan

  • Khader, Jamal K.;Al-Mousa, Abdelatif M.;Mohamad, Issa A.;Abuhijlih, Ramiz A.;Al-Khatib, Sondos A.;Alnsour, Anoud Z.;Asha, Wafa A.;Ramahi, Shada W.;Hosni, Ali A.;Abuhijla, Fawzi J.
    • Radiation Oncology Journal
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    • 제37권1호
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    • pp.60-65
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    • 2019
  • Purpose: The quality assurance (QA) chart rounds are multidisciplinary meetings to review radiation therapy (RT) treatment plans. This study focus on describing the changes in RT management based on QA round reviews in a single institution. Materials and Methods: After 9 full years of implementation, a retrospective review of all patients whose charts passed through departmental QA chart rounds from 2007 to 2015. The reviewed cases were presented for RT plan review; subcategorized based on decision in QA rounds into: approved, minor modifications or major modifications. Major modification defined as any substantial change which required patient re-simulation or re-planning prior to commencement of RT. Minor modification included treatment plan changes which didn't necessarily require RT re-planning. Results: Overall 7,149 RT treatment plans for different anatomical sites were reviewed at QA rounds. From these treatment plans, 6,654 (93%) were approved, 144 (2%) required minor modifications, while 351 (5%) required major modifications. Major modification included changes in: selected RT dose (96/351, 27%), target volume definition (127/351, 36%), organs-at-risk contouring (10/351, 3%), dose volume objectives/constraints criteria (90/351, 26%), and intent of treatment (28/351, 8%). The RT plans which required major modification according to the tumor subtype were as follows: head and neck (104/904, 12%), thoracic (12/199, 6%), gastrointestinal (33/687,5%), skin (5/106, 5%), genitourinary (16/359, 4%), breast (104/2387, 4%), central nervous system (36/846, 4%), sarcoma (11/277, 4%), pediatric (7/251, 3%), lymphoma (10/423, 2%), gynecological tumors (2/359, 1%), and others (11/351, 3%). Conclusion: Multi-disciplinary standardized QA chart rounds provide a comprehensive and an influential method on RT plans and/or treatment decisions.

A Study for Optimal Dose Planning in Stereotactic Radiosurgery

  • Suh, Tae-suk
    • 한국의학물리학회지:의학물리
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    • 제1권1호
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    • pp.23-29
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    • 1990
  • In order to explane the stereotactic procedure, the three steps of the procedure (target localization, dose planning, and radiation treatment) must be examined separately. The ultimate accuracy of the full procedure is dependent on each of these steps and on the consistancy of the approach The concern in this article was about dose planning, which is a important factor to the success of radiation treatment. The major factor in dose planning is a dosimetry system to evaluate the dose delivered to the target and normal tissues in the patient, while it generates an optimal dose distribution that will satisfy a set of clinical criteria for the patient. A three-dimensional treatment planning program is a prerequisite for treatment plan optimization. It must cover 3-D methods for representing the patient, the dose distributions, and beam settings. The major problems and possible modelings about 3-D factors and optimization technique were discussed to simplify and solve the problems associatied with 3-D optimization, with relative ease and efficiency. These modification can simplify the optimization problem while saving time, and can be used to develop reference dose planning system to prepare standard guideline for the selection of optimum beam parameters, such as the target position, collimator size, arc spacing, the variation in arc length and weight. The method yields good results which can then be simulated and tailored to the individual case. The procedure needed for dose planning in stereotactic radiosurgery is shown in figure 1.

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Stereotactic Radiosurgery를 위한 소형 조사면의 선량측정 (Treatment Planning and Dosimetry of Small Radiation Fields for Stereotactic Radiosurgery)

  • 추성실;서창옥;노준규;정상섭
    • Radiation Oncology Journal
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    • 제7권1호
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    • pp.101-112
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    • 1989
  • The treatment planning and dosimetry of small fields for stereotactic radiosurgery with 10 MV x-ray isocentrically mounted linear accelerator is presented. Special consideration in this study was given to the variation of absorbed dose with field size, the central axis percent depth doses and the combined moving beam dose distribution. The collimator scatter correction factors of small fields $(1\times1\~3\times3cm^2)$ were measured with ion chamber at a target chamber distance of 300cm where the projected fields were larger than the polystyrene buildup caps and it was calibrated with the tissue equivalent solid state detectors of small size (TLD, PLD, ESR and semiconductors). The central axis percent depth doses for $1\timesl\;and\;3\times3cm^2$ fields could be derived with the same acuracy by interpolating between measured values for larger fields and calculated zero area data, and it was also calibrated with semiconductor detectors. The agreement between experimental and calculated data was found to be under $2\%$ within the fields. The three dimensional dose planning of stereotactic focusing irradiation on small size tumor regions was performed with dose planning computer system (Therac 2300) and was verified with film dosimetry. The more the number of strips and the wider the angle of arc rotation, the larger were the dose delivered on tumor and the less the dose to surrounding the normal tissues. The circular cone, we designed, improves the alignment, minimizes the penumbra of the beam and formats ball shape of treatment area without stellate patterns. These dosimetric techniques can provide adequate physics background for stereotactic radiosurgery with small radiation fields and 10MV x-ray beam.

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Discrepancies in Dose-volume Histograms Generated from Different Treatment Planning Systems

  • Kim, Jung-in;Han, Ji Hye;Choi, Chang Heon;An, Hyun Joon;Wu, Hong-Gyun;Park, Jong Min
    • Journal of Radiation Protection and Research
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    • 제43권2호
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    • pp.59-65
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    • 2018
  • Background: We analyzed changes in the doses, structure volumes, and dose-volume histograms (DVHs) when data were transferred from one commercial treatment planning system (TPS) to another commercial TPS. Materials and Methods: A total of 22 volumetric modulated arc therapy (VMAT) plans for nasopharyngeal cancer were generated with the Eclipse system using 6-MV photon beams. The computed tomography (CT) images, dose distributions, and structure information, including the planning target volume (PTV) and organs at risk (OARs), were transferred from the Eclipse to the MRIdian system in digital imaging and communications in medicine (DICOM) format. Thereafter, DVHs of the OARs and PTVs were generated in the MRIdian system. The structure volumes, dose distributions, and DVHs were compared between the MRIdian and Eclipse systems. Results and Discussion: The dose differences between the two systems were negligible (average matching ratio for every voxel with a 0.1% dose difference criterion = $100.0{\pm}0.0%$). However, the structure volumes significantly differed between the MRIdian and Eclipse systems (volume differences of $743.21{\pm}461.91%$ for the optic chiasm and $8.98{\pm}1.98%$ for the PTV). Compared to the Eclipse system, the MRIdian system generally overestimated the structure volumes (all, p < 0.001). The DVHs that were plotted using the relative structure volumes exhibited small differences between the MRIdian and Eclipse systems. In contrast, the DVHs that were plotted using the absolute structure volumes showed large differences between the two TPSs. Conclusion: DVH interpretation between two TPSs should be performed using DVHs plotted with the absolute dose and absolute volume, rather than the relative values.

두경부암 환자 치료시 3차원 보상체의 임상 적용에 대한 고찰 (Clinical Application of 3-D Compensator in Head and Neck Cancer)

  • 홍동기;이정우;이두현;박광호;김정만
    • 대한방사선치료학회지
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    • 제9권1호
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    • pp.64-70
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    • 1997
  • The goal of radiation treatment planning is to deliver the dose to the patient within $5\%$ of that prescribed. We have often encountered the situation that the area which have not only several irregular contours but also tissue heterogeneities should be treated. With conventional devices such as wedges, missing tissue compensator. there are some limitations to achieve the uniform dose distribution in treatment volume. The use of CT simulator, 3-D planning system, computer-controlled milling machine enables it to deliver the dose uniformally. This report includes the whole procedure which have patient data acquisition 3D planning, computer-controlled milling, performance verification of 3D compensator, and TLD evaluation. We applied it for the treatment of head and heck cancer only. In Spite of the irregular contour and different electron density of tessue, we have achieved the uniformity of the dose distribution within ${\pm}3\%$ relatively. Although there are some problems which are not only verification of performance but uncertainties of using the new treatment device, we believe that the improvement of dosimetry will eliminate the uncertainties of that application. so the other lesions besides head and neck can will be ale to use the 3D compensator to achieve the dose uniformity

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가임기 여성의 방사선 치료 시 난소 선량 평가 (Evaluation of Ovary Dose of Childbearing age Woman with Breast cancer in Radiation therapy)

  • 박성준;이영철;김선명;김영범
    • 대한방사선치료학회지
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    • 제33권
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    • pp.145-153
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    • 2021
  • 목 적: 본 연구에서는 가임기 여성의 유방암 방사선 치료 시 난소 선량에 대해 실험을 통하여 평가해보고자 한다. 치료기법에 따른 치료계획시스템에서 계산된 선량과 열형광선량계를 이용한 측정선량을 비교·분석하여 난소 선량을 평가하고 납(Pb) 앞치마의 사용유무에 따른 선량 분석을 통해 임상에서의 유용성을 알아보고자 한다. 대상 및 방법: 측정에는 Rando humanoid phantom을 이용하였고, 치료기법으로는 쐐기필터치료기법, 3차원 입체조형치료, 세기변조방사선치료를 사용하였다. CT simulator를 이용하여 얻은 Rando humanoid phantom 3D 영상의 우측 유방에 처방선량의 95%가 전달될 수 있도록 치료계획을 세웠고, TLD를 Rando hunmanoid phantom의 가상 표적의 표면 및 심부에 삽입하고 방사선을 조사하였다. 측정위치는 치료 중심점과 Rando humanoid phantom의 정중앙을 중심으로 반대쪽 유방으로 2cm 이동한 지점과 치료 중심축 및 하방으로 우측 유방의 경계면에서 5cm, 10cm, 12.5cm, 15cm, 17.5cm, 20cm, 우측 난소 위치의 표면과 중심점을 포함하여 총 9개 지점에서 측정하였다. 치료계획시스템의 선량 비교에서는 쐐기필터치료기법 2가지와 3차원 입체조형치료, 세기변조방사선치료 등 총 4개의 치료 계획을 수립하여 비교하였다. 그리고 TLD를 이용한 측정값 비교는 세기변조방사선치료와 쐐기필터를 이용한 치료를 비교하였고, 납 앞치마의 사용유무에 따라서 세기변조방사선치료의 선량차이를 측정하여 비교·분석하였다. 측정값은 각 포인트마다 3개의 TLD값 평균을 내고 TLD 교정값을 이용하여 환산하였으며 이를 Point dose mean값으로 계산하였다. 치료계획값과 실제 측정값을 비교하기 위해 각 지점마다 절대선량값을 측정하여 %Diff 값으로 계산하였다. 결 과: 치료 중심점인 Point A에서는 치료계획시스템에서 최대 201.7cGy가 나왔고, 실제 TLD 측정값은 최대 200.6cGy가 나왔다. 모든 치료계획시스템에서 유방 경계면으로부터 하방으로 17.5cm 떨어진 지점인 Point G 부터는 0cGy로 계산이 되었다. 실제 TLD 측정 결과 Point G에서는 최대 2.6cGy가 나왔고, 난소선량인 Point J에서는 최대 0.9cGy로 나타났으며 %Diff값은 0.3%~1.3%였다. 납 앞치마의 사용유무에 따른 선량 차이는 최대 2.1cGy에서 최소 0.1cGy로 나타났으며 %Diff값은 0.1%~1.1%였다. 결 론: 치료계획시스템에서 3가지 치료계획에 따른 선량차이는 최저 0.85%에서 최고 2.45%로 큰 격차를 보이지 않았다. 난소에서 Rando humanoid phantom의 치료계획과 실제 측정한 선량차이는 0.9% 이내로 나타났으나 실제 측정에서 조금 더 높게 측정되었다. 이는 치료계획시스템에서 산란선의 영향을 정확하게 반영하지 못하였고, 실제 측정에서는 TLD를 삽입한 상태로 CBCT를 촬영한 선량과 산란선량이 반영된 것으로 사료된다. 납 앞치마의 유무에 따른 선량측정에서 납 앞치마를 사용했을 경우에 치료범위에서 가까운 거리일수록 차폐의 효과가 있었으며, 치료범위에서 15cm 이상 거리가 있는 경우에는 거의 영향을 미치지 않는 것으로 나타났다. 임상적으로 방사선 치료 중에는 임신이나 인공수정을 하기에는 적절하지 않지만, 치료 중 난소에 조사된 선량은 방사선 치료 후 가임기 여성의 생식 기능에 크게 영향을 주지 않을 것으로 생각된다. 하지만 가임 여성의 경우에는 지속적인 불안감을 가지고 있으므로 이번 결과를 통한 데이터를 제시함으로써 심리적인 안정을 도모할 수 있을 것으로 사료된다.