• 제목/요약/키워드: Scattered photon

검색결과 48건 처리시간 0.026초

고 에너지 방사선치료에서 환자의 피폭선량 분포와 생식선의 차폐 (Shielding for Critical Organs and Radiation Exposure Dose Distribution in Patients with High Energy Radiotherapy)

  • 추성실;서창옥;김귀언
    • Journal of Radiation Protection and Research
    • /
    • 제27권1호
    • /
    • pp.1-10
    • /
    • 2002
  • 의료용 선형가속기에서 발생되는 고 에너지 광자선은 콜리메이터에 의하여 누출되며 치료두부(head), 콜리메이터, 환자를 포함한 치료실내의 모든 벽과 구성 물질들에 의하여 많은 산란선이 발생된다. 방사선치료는 종양에 따라서 최소한 40 Gy에서 80 Gy까지 조사되기 때문에 주위건강조직 특히 생식가능한 사람에 대한 생식선의 피폭선량을 평가하여야하며 종양치료에 영향을 주지 않은 범위에서 가능한 방법을 동원하여 피폭선량을 줄여야한다. 방사선 안전관리등의 기술기준에 관한 규칙(과학기술부령 제17호) 제3절 의료분야의 특별기준, 제44조(진료환자의 방사선 피폭)에 의하면 진료를 위한 환자 피폭선량을 합리적으로 달성 가능한 최소의 수준으로 유지하기 위한 절차를 구비하여야 하며 과학기술부 장관은 이에 준하는 의료시설 및 장비취급의 기술기준을 정하고 고시하여야한다고 명시 되어있다. 고 에너지방사선은 악성종양환자들의 치료성과를 향상시키는 동시에 치료후 방사선에 의한 만성효과가 발생 될 수 있기 때문에 주선속의 다양한 산란선과 누출선의 선질변화와 선량을 측정하고 생식선과 같은 주요장기를 산란선으로부터 차폐할 수 있는 기구를 제작 사용함으로서 방사선 피폭선량을 최대한으로 감소시킬 수 있었다. 고 에너지 방사선은 의료용 선형가속기(CLINAC 2100C/D. 2100C. 600C)에서 발생시킨 4, 6, 10 MV x-ray와 코발트원격치료장치(ALCYON II)의 코발트선원에서 방출되는 1.25 MV의 감마선을 이용하였다. 선량측정은 폴리스틸렌과 인체팬텀(Rando)사용하였으며 측정기는 이온함, TLD 및 필름을 사용하였다. 고 에너지 방사선에 의한 산란선은 장치의 콜리메이터 뿐만 아니라 치료실 벽 인체내부등 모든 방향에서 방사됨으로 납 벽돌에 의한 차폐율측정은 많은 변수를 가졌으며 고환인 경우에는 3면이 모두 차폐되도록 항아리모양으로 제작하였다. 태아인 경우 태아가 위치하고 있는 골반위에 육교모양의 선반을 만들고 그 위에 납 벽돌을 장치하도록 고안하였다. Co-60 감마선, 4 MV x-선, 10 MV x-선에서 발생되는 누출선량과 산란선량에 의한 평균 피폭선량은 조사면 중심으로부터 10, 30, 60cm 거리에서 조사면내 최대선량에 대하여 각각 $10^{-2},\;10^{-3},\;10^{-4}$의 비율로 측정되었으며 거리에 따라 지수함수로 줄어들었다. 흉부에 국한된 종양을 10 MV x-ray, $12{\times}12 cm^2$ 조사면으로 치료하였을 때 자궁에 받는 피폭선량은 0.9 mGy/Gy이며 고환이 받는 피폭선량은 0.6 mGy/Gy 이었으며 체장과 신장은 각각 4.8 mGy/Gy 와 2.5 mGy/Gy이다 10 MV x-선, $14{\times}14cm^2$ 조사면 경계로부터 10 cm 밖에서 납벽돌의 반가층 두께는 약 9.0 mm 이였고 20cm 밖에서는 반가층 두께가 약 6.5 mm로 측정되었다. 복부에 위치한 악성종양을 60 Gy 조사하였을 경우 태아가 위치하고 있는 자궁의 피폭선량은 약 370 mGy이고 이곳을 10 mGy이하가 되도록 차폐하려면 약 6.2 cm두께의 납 벽돌을 자궁위에 장착하여야 하며 골반치료시 고환에 10 mGy이하가 되도록 차폐하려면 약 5 cm 두께의 납 항아리가 요구된다. 고 에너지 고 준위 방사선치료시 고환은 3면을 항아리모양으로 차폐할 수 있어 피폭선량을 상당히 줄일 수 있으며 자궁인 경우 체내에서 산란된 선량의 차폐는 불가능하였다.

LOSS-OF-POOL-WATER 사고시 연구용 원자로 MAPLE-X10 시설에서의 감마 방사선장 해석 (Analysis of Gamma Radiation Fields in the MAPLE-X10 Facility Associated with Loss-of-Pool-Water Accident Conditions)

  • Kim, Kyo-Youn;Ha, Chung-Woo;I.C. Gauld
    • Nuclear Engineering and Technology
    • /
    • 제21권2호
    • /
    • pp.63-72
    • /
    • 1989
  • 연구용 원자로 MAPLE-X10 시설의 안전성을 평가하기 위하여 원자로 pool 및 보조 pool로부터 물의 상실이 가정되었을 때 시설에 대한 감마 방사선장을 해석하였다. 차폐 해석에 고려된 4개의 photon 선원항은 ORIGEN-S코드를 이용하여 계산하였다. 또한, pool물 상실 사고 조건하에서 원자로 pool 및 보조 pool에서의 감마 선량율은 QAD-CG코드를, 그리고 pool외부의 방사선장은 입체각 외부에서의 산란 photon 선량율 계산에도 적합한 MCNP 코드를 이용하여 평가하였다.

  • PDF

Radiative Transfer in Highly Thick Media through Rayleigh and Raman Scattering with Atomic Hydrogen

  • Chang, Seok-Jun
    • 천문학회보
    • /
    • 제46권2호
    • /
    • pp.40.1-40.1
    • /
    • 2021
  • Hydrogen is the most abundant element in the universe, which is, in the cosmological context, attributed to its simplest structure consisting of a proton and an electron. Hydrogen interacts with an electromagnetic wave in astrophysical environments. Rayleigh scattering refers to elastic scattering, where the frequencies of the incident and scattered photons are the same. Rayleigh and resonance scattering is a critical role study Lyman Alpha objects in the early universe. The scattering causes the frequency and spatial diffusion of Lyα. In the case of Raman scattering, the energies of the incident and scattered photons are different. The photons near Lyβ convert to the optical photons near Hα through Raman scattering. The photon scattered by atomic hydrogen can carry both of the properties of the H I region and the emission region. I adopt a Monte Carlo approach to investigate the formation of the various spectral line features through Rayleigh and Raman scattering in highly thick media of atomic hydrogen. In this thesis, I present my works on radiative transfer involving the scattering processes between far UV photon and atomic hydrogen. I introduce scattering processes with atomic hydrogen and the spectral, spatial, and polarized information originating from the scattering.

  • PDF

Dust Scattering in Turbulent Media: Correlation between the Scattered Light and Dust Column Density

  • Seon, Kwang-Il;Witt, Adolf N.
    • 천문학회보
    • /
    • 제39권1호
    • /
    • pp.59.2-59.2
    • /
    • 2014
  • Radiative transfer models in a spherical, turbulent interstellar medium (ISM), in which the photon source is situated at the center, are calculated to investigate the correlation between the scattered light and the dust column density. The medium is modeled using fractional Brownian motion structures that are appropriate for turbulent ISM. The correlation plot between the scattered light and optical depth shows substantial scatter and deviation from simple proportionality. It was also found that the overall density contrast is smoothed out in scattered light. In other words, there is an enhancement of the dust-scattered flux in low-density regions, while the scattered flux is suppressed in high-density regions. The correlation becomes less significant as the scattering becomes closer to being isotropic and the medium becomes more turbulent. Therefore, the scattered light observed in near-infrared wavelengths would show much weaker correlation than the observations in optical and ultraviolet wavelengths. We also find that the correlation plot between scattered lights at two different wavelengths shows a tighter correlation than that of the scattered light versus the optical depth.

  • PDF

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
    • /
    • 제40권3호
    • /
    • pp.147-154
    • /
    • 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.

Construction of a Dynamic Laser Light Scattering System Using a Personal Computer$^\dag$

  • Kim, Myung-Joong;Lee, Sang-Yong;Chung, Koo-Soon;Lee, Hoo-Sung
    • Bulletin of the Korean Chemical Society
    • /
    • 제8권5호
    • /
    • pp.403-405
    • /
    • 1987
  • A dynamic laser light scattering system has been constructed using a personal computer. The intensity of the scattered light was detected with a photomultiplier tube and a photon counter. The BCD output of the photon counter which is proportional to the intensity of scattered light is fed into a personal computer via an interface card. The personal computer was programmed as an autocorrelator in machine language. The data acquisition rate of the system was about 600 samples/s which is adequate for studies on the molecular dynamics of concentrated polymer solutions, polymer latices with large particle size, and polymer glass systems. The constructed system was tested with polystyrene latex and the measured diameter of the latex particle agrees well with the supplier's value.

혼탁매질에서 광분포에 관한 Monte Carlo 시뮬레이션 (Monte Carlo Simulation on Light Distribution in Turbid Material)

  • 김기준;성기천
    • 한국응용과학기술학회지
    • /
    • 제15권4호
    • /
    • pp.11-20
    • /
    • 1998
  • The propagation of light radiation in a turbid medium is an important problem that confronts dosimetry of therapeutic laser delivery and the development of diagnostic spectroscopy. Scattered light is measured as a function of the position(distance r, depth z) between the axis of the incident beam and the detection spot. Turbid sample yields a very forward-directed scattering pattern at short range of position from source to detector, whereas the thicker samples greatly attenuated the on-axis intensity at long range of position. The portions of scattered light reflected from or transmitted throughphantom depend upon internal reflectance and absorption properties of the phantom. Monte Carlo simulation method for modelling light transport in tissue is applied. It uses the photon is moved a distance where it may be scattered, absorbed, propagated, internally reflected, or transmitted out of tissue. The photon is repeatedly moved until it either escape from or is absorbed by the phantom. In order to obtain an optimum therapeutic ratio in phantom material, optimum control the light energy fluence rate is essential. This study is to discuss the physical mechanisms determining the actual light dose in phantom. Permitting a qualitative understanding of the measurements. It may also aid in designing the best model for laser medicine and application of medical engineering.

Validation of electromagnetic physics models and electron range in Geant4 Brachytherapy application

  • A. Albqoor ;E. Ababneh ;S. Okoor;I. Zahran
    • Nuclear Engineering and Technology
    • /
    • 제55권1호
    • /
    • pp.229-237
    • /
    • 2023
  • The mechanics underlying photon and electron interactions was validated using our developed Brachytherapy computer code for high Dose Rate (HDR). By comparing the photon cross-section utilizing multiple physics libraries in the developed code, the results were benchmarked against experimental and theoretical findings. Klein-Nishina and experimental cross-section results were in good agreement with the Livermore library results. For two therapeutically relevant materials, the first scattered electron range was measured within 1 mm and 2 mm, which has significant implications for the interpretation of the kernel dose spikes observed in previous research.

농도가 진한 매질에서 광증감제에 의한 광학적 파라미터측정에 관한 연구 (A Study on the Measurements of Optical Parameters in Photosensitizer by Light Scattering)

  • 김기준;이주엽
    • 한국응용과학기술학회지
    • /
    • 제28권1호
    • /
    • pp.102-108
    • /
    • 2011
  • The study of wave propagation and scattering in biological media has become increasingly important in recent years. The propagation of light within tissues is an important problem that confronts the dosimetry of therapeutic laser delivery and the development of diagnostic spectroscopy. In the clinical application of photodynamic therapy(PDT) and in photobiology, the photon deposition within a tissue determines the spatial distribution of photochemical reactions. Scattered light is measured as a function of the distance (r) between the axis of the incident beam and the detection spot. Consequently, knowledge of the photosensitizer(Chlorophyll-a) function that characterizes a phantom is measured. To obtain the results of scattering coefficients(${\mu}s$) of a turbid material from diffusion described by experimental approach. It was measured the energy fluency of photon radiation at the position of penetration depth. From fluorescence experimental method obtained the analytical expression for the scattered light as the values of $(I/I_o)_{wavelength}$ vs the distance between the center of the incident beam and optical fiber in terms of the condition of "in situ spectroscopy(optically thick)" and real time by fluorometric measurements. The result was compromised with transport of intensities though a random distribution of scatters.

In Vitro에서 광증감제에 의한 광학적 영향에 관한 연구 (A Study on the Optical Influence by Photosensitizer in Vitro)

  • 김기준;성기천
    • 한국응용과학기술학회지
    • /
    • 제22권2호
    • /
    • pp.182-190
    • /
    • 2005
  • The propagation of light radiation within tissues is an important problem that confronts the dosimetry of therapeutic laser delivery and the development of diagnostic spectroscopy. In the clinical application of photodynamic therapy(PDT) and in photobiology, the photon deposition within a tissue determines the spatial distribution of photochemical reactions. Scattered light is measured as a function of the distance (r) between the axis of the incident beam and the detection spot. Consequently, knowledge of the photosensitizer(Chlorophyll-a) function that characterizes a phantom is important. To obtain the results of scattering coefficients(${\mu}s$) of a turbid material from diffusion described by experimental approach. It was measured the energy fluency of photon radiation at the position of penetration depth. From fluorescence experimental method obtained the analytical expression for the scattered light as the values of $(I\;/I_o)_{wavelength}$ vs the distance between the center of the incident beam and optical fiber in terms of the condition of "in situ spectroscopy(optically thick)" and real time by fluorometric measurements.