• 제목/요약/키워드: Out-of-Field Dose

검색결과 157건 처리시간 0.023초

Secondary Neutron Dose in Carbon-ion Radiotherapy: Investigations in QST-NIRS

  • Yonai, Shunsuke;Matsumoto, Shinnosuke
    • Journal of Radiation Protection and Research
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    • 제46권2호
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    • pp.39-47
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    • 2021
  • Background: The National Institutes for Quantum and Radiological Science and Technology-National Institute of Radiological Sciences (QST-NIRS) has continuously investigated the undesired radiation exposure in ion beam radiotherapy mainly in carbon-ion radiotherapy (CIRT). This review introduces our investigations on the secondary neutron dose in CIRT with the broad and scanning beam methods. Materials and Methods: The neutron ambient dose equivalents in CIRT are evaluated based on rem meter (WENDI-II) measurements. The out-of-field organ doses assuming prostate cancer and pediatric brain tumor treatments are also evaluated through the Monte Carlo simulation. This evaluation of the out-of-field dose includes contributions from secondary neutrons and secondary charged particles. Results and Discussion: The measurements of the neutron ambient dose equivalents at a 90#x00B0; angle to the beam axis in CIRT with the broad beam method show that the neutron dose per treatment dose in CIRT is lower than that in proton radiotherapy (PRT). For the scanning beam with the energy scanning technique, the neutron dose per treatment dose in CIRT is lower than that in PRT. Moreover, the out-of-field organ doses in CIRT decreased with distance to the target and are less than the lower bound in intensity-modulated radiotherapy (IMRT) shown in AAPM TG-158 (American Association of Physicists in Medicine Task Group). Conclusion: The evaluation of the out-of-field doses is important from the viewpoint of secondary cancer risk after radiotherapy. Secondary neutrons are the major source in CIRT, especially in the distant area from the target volume. However, the dose level in CIRT is similar or lower than that in PRT and IMRT, even if the contributions from all radiation species are included in the evaluation.

QUANTITATIVE DATA TO SHOW EFFECTS OF GEOMETRIC ERRORS AND DOSE GRADIENTS ON DOSE DIFFERENCE FOR IMRT DOSE QUALITY ASSURANCE MEASUREMENTS

  • Park, So-Yeon;Park, Jong-Min;Ye, Sung-Joon
    • Journal of Radiation Protection and Research
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    • 제36권4호
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    • pp.183-189
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    • 2011
  • To quantitatively evaluate how setup errors in conjunction with dose gradients contribute to the error in IMRT dose quality assurance (DQA) measurements. The control group consisted of 5 DQA plans of which all individual field dose differences were less than ${\pm}5%$. On the contrary, the examination group was composed of 16 DQA plans where any individual field dose difference was larger than ${\pm}10%$ even though their total dose differences were less than ${\pm}5%$. The difference in 3D dose gradients between the two groups was estimated in a cube of $6{\times}6{\times}6\;mm^3$ centered at the verification point. Under the assumption that setup errors existed during the DQA measurements of the examination group, a three dimensional offset point inside the cube was sought out, where the individual field dose difference was minimized. The average dose gradients of the control group along the x, y, and z axes were 0.21, 0.20, and 0.15 $cGy{\cdot}mm^{-1}$, respectively, while those of the examination group were 0.64, 0.48, and 0.28 $cGy{\cdot}mm^{-1}$, respectively. All 16 plans of the examination group had their own 3D offset points in the cube. The individual field dose differences recalculated at the offset points were mostly diminished and thus the average values of total and individual field dose differences were reduced from 3.1% to 2.2% and 15.4% to 2.2%, respectively. The offset distribution turned out to be random in the 3D coordinate. This study provided the quantitative data that support the large individual field dose difference mainly stems from possible geometric errors (e.g., random setup errors) under the influence of steep dose gradients of IMRT field.

전자선치료 시 조사부위 차폐물 형태에 따른 선량변화 연구 (A Study on the Dose Changes Depending on the Shielding Block Type of Irradiation During Electron Beam Theraphy)

  • 이선엽;박철수;이재승;구은회;조재환;김응찬;문수호;김진수;박철우;동경래;권대철
    • 대한방사선기술학회지:방사선기술과학
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    • 제33권3호
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    • pp.253-260
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    • 2010
  • 전자의 다중산란에 의한 선량분포를 좌우하는 다양한 원인으로서 조사통에 삽입되는 차폐물의 제작형태에 따른 전자선의 선량분포를 알고자 하였다. 실험을 위하여 선속 확산현상을 고려한 차폐물(divergency cut-out block)과 선속 확산현상을 고려하지 않은 차폐물(straight cut-out block)을 제작하고 선량분포 구간 면적과 조사면 평탄도 및 대칭도를 비교하였다. 결과적으로 선속 확산현상을 고려한 차폐물이 선속 확산현상을 고려하지 않은 차폐물보다 차폐물 두께에 대한 측방산란효과가 현저하게 감소함으로서 기준점 깊이에서 균등한 선량분포를 이루었다. 특히 선속 확산현상을 고려한 차폐물일수록 고 선량 영역이 현저하게 감소하였으며 조사면 경계부에서 균일한 선량분포를 이루었다. 이는 환자의 투여선량의 정확도를 증가시키기 위한 모형 연구로서 전자선의 선량분포 특성을 고려한 방사선치료계획을 수립해야 할 것이다.

EQUIVALENT DOSE FROM SECONDARY NEUTRONS AND SCATTER PHOTONS IN ADVANCE RADIATION THERAPY TECHNIQUES WITH 15 MV PHOTON BEAMS

  • Ayuthaya, Isra Israngkul Na;Suriyapee, Sivalee;Pengvanich, Phongpheath
    • Journal of Radiation Protection and Research
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    • 제40권3호
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    • pp.147-154
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    • 2015
  • The scatter photons and photoneutrons from high energy photon beams (more than 10 MV) will increase the undesired dose to the patient and the staff working in linear accelerator room. This undesired dose which is found at out-of-field area can increase the probability of secondary malignancy. The purpose of this study is to determine the equivalent dose of scatter photons and neutrons generated by 3 different treatment techniques: 3D-conformal, intensity modulated radiation therapy (IMRT) and volumetric modulated arc therapy (VMAT). The measurement was performed using two types of the optically stimulation luminescence detectors (OSL and OSLN) in the Alderson Rando phantom that was irradiated by 3 different treatment techniques following the actual prostate cancer treatment plans. The scatter photon and neutron equivalent dose were compared among the 3 treatments techniques at the surface in the out-of-field area and the critical organs. Maximum equivalent dose of scatter photons and neutrons was found when using the IMRT technique. The scatter neutrons showed average equivalent doses of 0.26, 0.63 and $0.31mSv{\cdot}Gy^{-1}$ at abdominal surface region which was 20 cm from isocenter for 3D, IMRT and VMAT, respectively. The scattered photons equivalent doses were 6.94, 10.17 and $6.56mSv{\cdot}Gy^{-1}$ for 3D, IMRT and VMAT, respectively. For the 5 organ dose measurements, the scattered neutron and photon equivalent doses in out of field from the IMRT plan were highest. The result revealed that the scatter equivalent doses for neutron and photon were higher for IMRT. So the suitable treatment techniques should be selected to benefit the patient and the treatment room staff.

선형가속기를 이용한 방사선 수술의 선량분포의 실험적 확인 (Verification of Dose Distribution for Stereotactic Radiosurgery with a Linear Accelerator)

  • 박경란;김계준;추성실;이종영;조철우;이창걸;서창옥;김귀언
    • Radiation Oncology Journal
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    • 제11권2호
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    • pp.421-430
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    • 1993
  • The calculation of dose distribution in multiple arc stereotactic radiotherapy is a three-dimensional problem and, therefore, the three-dimensional dose calculation algorithm is important and the algorithm's accuracy and reliability should be confirmed experimentally. The aim of this study is to verify the dose distribution of stereotactic radiosurgery experimentally and to investigate the effect of the beam quality, the number of arcs of radiation, and the tertiary collimation on the resulting dose distribution. Film dosimetry with phantom measurements was done to get the three-dimensional orthogonal isodose distribution. All experiments were carried out with a 6 MV X-ray, except for the study of the effects of beam energy on dose distribution, which was done for X-ray energies of 6 and 15 MV. The irradiation technique was from 4 to 11 arcs at intervals of from 15 to 45 degrees between each arc with various field sizes with additional circular collimator. The dose distributions of square field with linear accelerator collimator compared with the dose distributions obtained using circular field with tertiary collimator. The parameters used for comparing the results were the shape of the isodose curve, dose fall-offs fom $90\%$ to $50\%$ and from $90\%\;to\;20\%$ isodose line for the steepest and shallowest profile, and $A=\frac{90\%\;isodose\;area}{50\%\;isodose\;area-90\%\;isodose\;area}$(modified from Chierego). This ratio may be considered as being proportional to the sparing of normal tissue around the target volume. The effect of beam energy in 6 and 15 MV X-ray indicated that the shapes of isodose curves were the same. The value of ratio A and the steepest and shallowest dose fall-offs for 6 MV X-ray was minimally better than that for 15 MV X-ray. These data illustrated that an increase in the dimensions of the field from 10 to 28 mm in diameter did not significantly change the isodose distribution. There was no significant difference in dose gradient and the shape of isodose curve regardless of the number of arcs for field sizes of 10, 21, and 32 mm in diameter. The shape of isodose curves was more circular in circular field and square in square field. And the dose gradient for the circular field was slightly better than that for the square field.

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유방암 접선조사 치료 방법에 대한 반대쪽 유방에서의 산란선량 평가 (Evaluation of Scattered Dose to the Contralateral Breast by Separating Effect of Medial Tangential Field and Lateral Tangential Field: A Comparison of Common Primary Breast Irradiation Techniques)

  • 반태준;전수동;곽정원;백금문
    • 대한방사선치료학회지
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    • 제24권2호
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    • pp.183-188
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    • 2012
  • 목 적: 암치료 기술의 발전으로 환자의 생존기간이 길어짐에 따라 치료 이후 삶의 질을 증진하고 치료 방법에 의한 부작용을 줄이는 노력에 관심이 집중되고 있다. 본 연구는 유방암 접선조사 치료에서 치료방법 차이가 반대쪽 유방 산란 선량에 미치는 영향을 분석하고자 하였다. 대상 및 방법: 본원에서 제작한 유방 모형 팬텀의 전산화 단층 영상을 이용하여 이클립스 10.0 (Eclipse 10.0, Varian, USA) 치료계획 시스템을 사용하여 $30^{\circ}$ wedge plan, $15^{\circ}$ wedge plan, $30^{\circ}$ EDW (Enhanced dynamic wedge) plan, Non-wedge plan, FIF(Field in Field) plan을 수립하였다. 각 치료계획은 선형가속기 CL-6EX (VARIAN, USA)를 이용하여 400 cGy씩 조사하였고 팬텀의 중심점으로부터 횡축방향으로 1 cm, 3 cm, 5 cm, 9 cm 씩 이동한 지점의 1 cm 깊이에서 전리조(FC 65G, IBA)를 이용하여 내측접선(Medial tangential) 조사와 외측접선(Lateral tangential) 조사에서 발생하는 산란선량을 각각 측정하고 비교 분석하였다. 결 과: 반대쪽 유방 산란 선량을 평가해보았을 때 $30^{\circ}$ wedge plan, $15^{\circ}$ wedge plan, $30^{\circ}$ EDW (Enhanced dynamic wedge) plan, Non-wedge plan, FiF (Field in Field) plan에서 처방선량에 대해 각각 6.55%, 4.72%, 2.79%, 2.33%, 1.87%로 나타났다. 내측접선조사와 외측접선 조사로 나누어 보았을 때 내측접선 조사 측정값은 각각 4.94%, 3.33%, 1.55%, 1.17%, 0.77%로 나타났고 외측접선 조사는 각각 1.61%, 1.40%, 1.24%, 1.16%, 1.10%의 산란 선량이 측정되었다. 결 론: 유방암 접선 조사 치료방법 중 반대쪽 유방에 가장 적은 산란 선량이 발생하는 방법은 FiF plan으로 이때 발생한 산란선량은 팬텀 내에서 기인한 선량이 주로 작용하는 것으로 판단되었다. 가장 많은 산란 선량이 발생하는 치료방법은 $30^{\circ}$ wedge plan이었고 쐐기필터를 비롯한 치료 장비에서 기인한 선량은 3.3%로 평가되었다. 치료계획 시스템은 처방선량에 대해 상대적으로 낮은 산란 선량 영역은 정확성이 떨어지는 것으로 나타났다. 치료 조사야 밖으로 발생하는 산란 선량은 처방 선량에 비해 그 양이 적지만 2차 암 발생 확률과 관련이 있다는 점에서 간과할 수 없는 부분이며 방사선 치료를 결정하는데 있어 고려되어야 할 부분으로 사료된다.

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삼차원 뇌혈관조영술에서 테이블 높이와 확대율 조절에 따른 수정체 선량 감소에 대한 연구 (Radiation Dose Reduction of Lens by Adjusting Table Height and Magnification Ratio in 3D Cerebral Angiography)

  • 윤종태;이기백
    • 대한방사선기술학회지:방사선기술과학
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    • 제45권4호
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    • pp.313-320
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    • 2022
  • Both angiography and interventional procedures accompanied by angiography provide many diagnostic and therapeutic benefits to patients and are rapidly increasing. However, unlike general radiography or computed tomography using the same X-ray, the amount of radiation is quite high, but the dose range can vary considerably for each patient and operator. The high sensitivity of the lens to radiation during cerebral angiography and neurointervention is already well known, and although there are many related studies, it is insufficient to easily reduce radiation in diagnosis and treatment. In this situation, in particular, by adding three-dimensional rotational angiography (3D-RA) to the existing two-dimensional (2D) angiography, it is now possible to make an accurate diagnosis. However, since this 3D-RA acquires images through projection of more radiation than before, the exposure dose of the lens may be higher. Therefore, we tried to analyze whether the radiation dose of the lens can be reduced by moving the lens out of the field range by adjusting the table height and magnification ratio during the examination using 3D-RA. The surface dose was measured using a rando phantom and a radiophotoluminescent glass dosimeter (PLD) and the radiation dose was compared by adjusting the table height and magnification ratio based on the central point. As a result, it was found that the radiation dose of the lens decreased as the table height increased from the central point, that is, as the lens was out of the field of view. In conclusion, in 3D-RA, moving the table position of about 2 cm in height will make a significant contribution to the dose reduction of the lens, and it was confirmed that adjusting the magnification ratio can also reduce the surface dose of the lens.

직무피폭의 선량제약치에 관한 연구: 분야별 전문가 의견 중심으로 (A Study on the Dose Constraints for Occupational Exposure: Focusing on Expert Opinions by Field of Ridiation Industry)

  • 박일;박찬희;정규환;박찬호;김용건;박태진
    • 방사선산업학회지
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    • 제17권1호
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    • pp.61-67
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    • 2023
  • A Study on the Introduction of Dose Constraints for Occupational Exposures: Focusing on Experts' Opinions by Field of Radiation Industry. The International Commission on Radiological Protection suggests Justification, Optimization, and Dose Limits as the three principles of radiological protection, among which, as a means of protection optimization, ICRP 103 recommends to set dose constraints. In this study, opinions are collected from experts in each category of radiation industries for stakeholder participation to qualify dose constraints. A guidance and questionnaire for analyzing the dose constraints have been developed for their collection, and opinions were collected from radiation protection experts in selected categories. 20 out of 22 experts, consisted with 91%, have assessed the dose constraints setting is necessary, and 2 experts, consisted with 9%, assessed it is unnecessary. The average of dose constraint presented by experts for RI production institutions is to be the highest level of 15.3 mSv, and light-water reactors (14.6 mSv), non-destructive inspection (14.4 mSv), heavy-water reactor and medical institutes (13.9mSv) is to be above the overall average dose constraint. In case of public institutions, the average dose constraint is to be 8.6mSv, and research institutions (8.8mSv), educational institutions (9.6 mSv), waste disposal sites (9.7 mSv), and general industries (10.6 mSv) are resulted to below the overall average dose constraint. As for the means of setting dose constraints, 8 experts out of 22 suggested setting dose constraints for each specific industry or task. And, 5 experts especially suggest setting dose constraints for the specific groups with relatively high exposure, such as workers with above the record levels. As a countermeasure for workers who exceed the dose constraints, 15 experts out of 22 expressed that the cause analyses for them and preparation for a plan of reducing them are necessary.

열형광선량계(TLD)와 MOSFET을 이용한 유방암 방사선치료계획에 대한 피부선량 평가 (Evaluation of the Breast plan using the TLD and Mosfet for the skin dose)

  • 김선명;김영범;이상록;백상윤;정세영
    • 대한방사선치료학회지
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    • 제27권2호
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    • pp.107-113
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    • 2015
  • 목 적 : 유방암 치료에 있어 피부선량의 측정은 매우 중요하다. 치료계획시에는 처방선량에 비해 초과선량이나 부족선량이 생길 수 있으므로 이에 대한 유방암의 여러 가지 치료계획간 피부선량 평가가 필요하다. 이에 대해 본원에서는 다양한 선량계를 이용하여 선량을 분석하여 유방암치료에 적용하고자 한다. 대상 및 방법 : 유방암은 기본적으로 접선방향 치료계획 시 일어나는 skin dose(Drain site, Scar)의 선량차이를 알아보기 위하여 인체모형팬텀을 이용하였다. 인체모형팬텀을 전산화단층촬영하고 전산화치료계획에서 open과 쐐기필터(Wedge filter)를 이용한 치료계획, Field-in-Field를 이용한 치료계획, 그리고 Dose fluence를 이용한 Irregular compensation 치료계획을 세우고 컴퓨터치료계획 프로그램(Eclipse)으로 선량관심점과 측정점의 선량을 비교하였다. 치료실에서 인체모형팬텀을 위치시키고 선량비교를 위하여 각 치료계획 측정점에 열형광선량계(themoluminesence dosimeter, TLD)와 MOSFET(Metal oxide-silicon field effect transistor)을 이용하여 선량을 측정하여 비교평가 하였다. 결 과 : 피부선량은 치료계획 중심점을 기준으로 위와 아래는 Dose fluence를 이용한 Irregular compensation 치료계획 사용 시 MOSFET을 이용한 선량측정에서 가장 많은 선량이 들어가는 것으로 나타났다. 내측과 외측의 측정선량은 open과 쐐기필터 치료계획에서 TLD와 MOSFET을 이용하여 측정시 5.7%에서 10.3%까지 낮게 나타났다. 반대쪽 유방의 선량은 open 치료계획이 가장 적었고, Dose fluence를 이용한 Irregular compensation 치료계획을 사용 시 가장 많은 선량이 측정되었다. 치료종별 치료계획상에서는 내측과 외측의 선량편차가 가장 컸으며, TLD와 MOSFET 측정시에도 같은 경향을 보였다. 외측은 TLD, 내측은 MOSFET이 가장 편차가 컸다. 결 론 : 치료계획에 따른 피부선량은 전반적으로 Dose fluence를 이용한 Irregular compensation의 치료계획을 사용 시 가장 많이 들어가는 것으로 나타났으며, 이는 많은 MLC의 움직임에 의한 산란선 영향으로 생각된다. 모든 치료계획에서 피부의 위치에 따라 약간의 차이는 있으나 부족선량이 생기는 부분에서는 내측의 내유임파절(Intramammary lymph nodes)선량이나 Scar, Drain site등에서 세심한 주의가 필요하다. 부족선량을 높이기위해서는 Dose fluence를 이용한 Irregular compensation의 치료계획을 사용하는 것이 좋겠으나, 전체적인 선량을 높이기보다는 선택적인 범위내에서 선량을 높이게 되므로 환자의 연령이나 움짐임 등을 고려하여 치료기술을 선택하는 것이 바람직할 것으로 사료된다.

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A Study on Effective Source-Skin Distance using Phantom in Electron Beam Therapy

  • Kim, Min-Tae;Lee, Hae-Kag;Heo, Yeong-Cheol;Cho, Jae-Hwan
    • Journal of Magnetics
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    • 제19권1호
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    • pp.15-19
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    • 2014
  • In this study, for 6-20 MeV electron beam energy occurring in a linear accelerator, the authors attempted to investigate the relation between the effective source-skin distance and the relation between the radiation field and the effective source-skin distance. The equipment used included a 6-20 MeV electron beam from a linear accelerator, and the distance was measured by a ionization chamber targeting the solid phantom. The measurement method for the effective source-skin distance according to the size of the radiation field changes the source-skin distance (100, 105, 110, 115 cm) for the electron beam energy (6, 9, 12, 16, 20 MeV). The effective source-skin distance was measured using the method proposed by Faiz Khan, measuring the dose according to each radiation field ($6{\times}6$, $10{\times}10$, $15{\times}150$, $20{\times}20cm^2$) at the maximum dose depth (1.3, 2.05, 2.7, 2.45, 1.8 cm, respectively) of each energy. In addition, the effective source-skin distance when cut-out blocks ($6{\times}6$, $10{\times}10$, $15{\times}15cm^2$) were used and the effective source-skin distance when they were not used, was measured and compared. The research results showed that the effective source-skin distance was increased according to the increase of the radiation field at the same amount of energy. In addition, the minimum distance was 60.4 cm when the 6 MeV electron beams were used with $6{\times}6$ cut-out blocks and the maximum distance was 87.2 cm when the 6 MeV electron beams were used with $20{\times}20$ cut-out blocks; thus, the largest difference between both of these was 26.8 cm. When comparing the before and after the using the $6{\times}6$ cut-out block, the difference between both was 8.2 cm in 6 MeV electron beam energy and was 2.1 cm in 20 MeV. Thus, the results showed that the difference was reduced according to an increase in the energy. In addition, in the comparative experiments performed by changing the size of the cut-out block at 6 MeV, the results showed that the source-skin distance was 8.2 cm when the size of the cut-out block was $6{\times}6$, 2.5 cm when the size of the cut-out block was $10{\times}10$, and 21.4 cm when the size of the cut-out block $15{\times}15$. In conclusion, it is recommended that the actual measurement is used for each energy and radiation field in the clinical dose measurement and for the measurement of the effective source-skin distance using cut-out blocks.