• 제목/요약/키워드: Skin Dose Coefficient

검색결과 10건 처리시간 0.01초

Implications of using a 50-μm-thick skin target layer in skin dose coefficient calculation for photons, protons, and helium ions

  • Yeom, Yeon Soo;Nguyen, Thang Tat;Choi, Chansoo;Han, Min Cheol;Lee, Hanjin;Han, Haegin;Kim, Chan Hyeong
    • Nuclear Engineering and Technology
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    • 제49권7호
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    • pp.1495-1504
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    • 2017
  • In a previous study, a set of polygon-mesh (PM)-based skin models including a $50-{\mu}m-thick$ radiosensitive target layer were constructed and used to calculate skin dose coefficients (DCs) for idealized external beams of electrons. The results showed that the calculated skin DCs were significantly different from the International Commission on Radiological Protection (ICRP) Publication 116 skin DCs calculated using voxel-type ICRP reference phantoms that do not include the thin target layer. The difference was as large as 7,700 times for electron energies less than 1 MeV, which raises a significant issue that should be addressed subsequently. In the present study, therefore, as an extension of the initial, previous study, skin DCs for three other particles (photons, protons, and helium ions) were calculated by using the PM-based skin models and the calculated values were compared with the ICRP-116 skin DCs. The analysis of our results showed that for the photon exposures, the calculated values were generally in good agreement with the ICRP-116 values. For the charged particles, by contrast, there was a significant difference between the PM-model-calculated skin DCs and the ICRP-116 values. Specifically, the ICRP-116 skin DCs were smaller than those calculated by the PM models-which is to say that they were under-estimated-by up to ~16 times for both protons and helium ions. These differences in skin dose also significantly affected the calculation of the effective dose (E) values, which is reasonable, considering that the skin dose is the major factor determining effective dose calculation for charged particles. The results of the current study generally show that the ICRP-116 DCs for skin dose and effective dose are not reliable for charged particles.

진단방사선촬영에서 광자극발광선량계를 이용한 환자 피부선량의 측정 (Measurement of the Skin Dose of Patient Using the Optically Stimulated Luminescent Dosimeter at Diagnostic Radiography)

  • 김종언;임인철;민병인
    • 한국콘텐츠학회논문지
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    • 제11권9호
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    • pp.437-442
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    • 2011
  • 본 연구의 목적은 진단방사선촬영의 X-선 빔 조사 조건하에서 광자극발광선량계를 사용하여 환자의 피부선량을 측정하는 것이다. 피부선량의 측정은 머리, 가슴, 골반에 대하여 실시하고 재현성의 시험은 가슴에서 시행하였다. 그 결과 머리는 이마에서 피부선량 1.30 mSv의 값을 얻었으며 가슴은 검상돌기, 유방, 폐첨에서 각각 0.92, 0.52, 0.70 mSv의 값을 얻었다. 또한 골반은 좌측골반과 우측골반에서 피부선량 각각 2.78, 3.08 mSv의 값을 얻었다. 재현성은 변동계수로서 0.033을 얻었다. 피부선량들은 결정적 영향에서 일반인의 선량한도(50 mSv)의 1/100에서 1/17에 대응하는 값들을 나타냈다. 각 관전압에 대한 피부선량의 정확한 측정을 위하여 측정값은 판독장치의 표시값에 보정인자를 곱해야 한다. 이에 향후에는 관전압에 대한 에너지의존성의 연구가 진행되어야 할 것으로 사료된다.

Comparative Study of the Effective Dose from Panoramic Radiography in Dentistry Measured Using a Radiophotoluminescent Glass Dosimeter and an Optically Stimulated Luminescence Detector

  • Lee, Kyeong Hee;Kim, Myeong Seong;Kweon, Dae Cheol;Choi, Jiwon
    • Journal of the Korean Physical Society
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    • 제73권9호
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    • pp.1377-1384
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    • 2018
  • Accurate measurement of the absorbed dose and the effective dose is required in dental panoramic radiography involving relatively low energy with a rotational X-ray tube system using long exposures. To determine the effectiveness of measuring the irradiation by using passive dosimetry, we compared the entrance skin doses by using a radiophotoluminescent glass dosimeter (RPL) and an optically stimulated luminescence detector (OSL) in a phantom model consisting of nine and 31 transverse sections. The parameters of the panoramic device were set to 80 kV, 4 mA, and 12 s in the standard program mode. The X-ray spectrum was applied in the same manner as the panoramic dose by using the SpekCalc Software. The results indicated a mass attenuation coefficient of $0.008226cm^2/g$, and an effective energy of 34 keV. The equivalent dose between the RPL and the OSL was calculated based on a product of the absorbed doses. The density of the aluminum attenuators was $2.699g/cm^3$. During the panoramic examination, tissue absorption doses with regard to the RPL were a surface dose of $75.33{\mu}Gy$ and a depth dose of $71.77{\mu}Gy$, those with regard to the OSL were surface dose of $9.2{\mu}Gy$ a depth dose of $70.39{\mu}Gy$ and a mean dose of $74.79{\mu}Gy$. The effective dose based on the International Commission on Radiological Protection Publication 103 tissue weighting factor for the RPL were $0.742{\mu}Sv$, $8.9{\mu}Sv$, $2.96{\mu}Sv$ and those for the OSL were $0.754{\mu}Sv$, $9.05{\mu}Sv$, and $3.018{\mu}Sv$ in the parotid and sublingual glands, orbit, and thyroid gland, respectively. The RPL was more effective than the OSL for measuring the absorbed radiation dose in low-energy systems with a rotational X-ray tube.

다양한 비스테로이드성 소염진통제의 쥐 피부 투과 (In vitro Rat Skin Permeation of Various NSAIDs)

  • 김민정;도희정;조원제;용철순;최한곤;이치호;김대덕
    • Journal of Pharmaceutical Investigation
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    • 제32권4호
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    • pp.313-319
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    • 2002
  • Rat skin permeation of various nonsteroidal antiinflammatory drugs (NSAIDs) was investigated in vitro using Franz diffusion cell at $37^{\circ}C$. The effect of various skin permeation enhancers was also observed as a preliminary study of developing transdermal delivery systems of NSAIDs. Lipophilicity of NSAIDs was determined from thε partition coefficient (log P) in 1-octanol/water and 1-octanol/IPB mutual-saturated solutions. The solubility was determined in water, isotonic phosphate buffer (IPB), and propylene glycol (PG) at $37^{\circ}C$. The rat skin permeation rate of acetaminophen, piroxicam, and aceclofenac was almost negligible, although they were saturated in PG. Addition of 1 % permeation enhancer increased the permeation rate of ketoprofen, ketorolac, and diclofenac. However, the skin permeation rate of ibuprofen did not increase with the addition of various enhancers. Among the permeation enhancers testεd, oleic acid was the most effective for various NSAIDs. Based on the daily dose, lipophilicity, and the skin permeation ratε achieved in this study, ketoprofen and ketorolac seem to be the most promising drug candidates for transdermal delivery systems, especially when formulated with unsaturated fatty acids, such as oleic acid.

환자 안전을 위한 비 계측 선량측정의 활용 : NDD-M (Non Dosimetry Measurements Use for Patients Safety : NDD-M)

  • 길종원;선종률;송월수
    • 대한안전경영과학회지
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    • 제18권1호
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    • pp.141-145
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    • 2016
  • This study was to improve to utilization of non dosimetry measurements for X-ray radiography. Experiments was passed off varying the X-ray tube voltage and the thickness of the aluminum filter by actual dose. Calculated results was set to the first beam quality factors, calculated first correction coefficient by the Microsoft Excel program was set as the second beam quality factors. To make the non dosimetry measurements simply, the Excel program apply to the new beam quality factors, the error was compared to the previous studies, and the results verify the calculated value of smaller errors.

Investigation on Individual Variation of Organ Doses for Photon External Exposures: A Monte Carlo Simulation Study

  • Yumi Lee;Ji Won Choi;Lior Braunstein;Choonsik Lee;Yeon Soo Yeom
    • Journal of Radiation Protection and Research
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    • 제49권1호
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    • pp.50-64
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    • 2024
  • Background: The reference dose coefficients (DCs) of the International Commission on Radiological Protection (ICRP) have been widely used to estimate organ doses of individuals for risk assessments. This approach has been well accepted because individual anatomy data are usually unavailable, although dosimetric uncertainty exists due to the anatomical difference between the reference phantoms and the individuals. We attempted to quantify the individual variation of organ doses for photon external exposures by calculating and comparing organ DCs for 30 individuals against the ICRP reference DCs. Materials and Methods: We acquired computed tomography images from 30 patients in which eight organs (brain, breasts, liver, lungs, skeleton, skin, stomach, and urinary bladder) were segmented using the ImageJ software to create voxel phantoms. The phantoms were implemented into the Monte Carlo N-Particle 6 (MCNP6) code and then irradiated by broad parallel photon beams (10 keV to 10 MeV) at four directions (antero-posterior, postero-anterior, left-lateral, right-lateral) to calculate organ DCs. Results and Discussion: There was significant variation in organ doses due to the difference in anatomy among the individuals, especially in the kilovoltage region (e.g., <100 keV). For example, the red bone marrow doses at 0.01 MeV varied from 3 to 7 orders of the magnitude depending on the irradiation geometry. In contrast, in the megavoltage region (1-10 MeV), the individual variation of the organ doses was found to be negligibly small (differences <10%). It was also interesting to observe that the organ doses of the ICRP reference phantoms showed good agreement with the mean values of the organ doses among the patients in many cases. Conclusion: The results of this study would be informative to improve insights in individual-specific dosimetry. It should be extended to further studies in terms of many different aspects (e.g., other particles such as neutrons, other exposures such as internal exposures, and a larger number of individuals/patients) in the future.

몬테칼로 시뮬레이션에 의한 지표면 오염 방사선장에서의 유효선량 평가 (Assessment of Effective Doses in the Radiation Field of Contaminated Ground Surface by Monte Carlo Simulation)

  • 장재권;이재기;장시영
    • Journal of Radiation Protection and Research
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    • 제24권4호
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    • pp.205-213
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    • 1999
  • 지표에 오염된 방사성핵종의 단위방사능당 유효선량환산계수를 남성과 여성 인형모의피폭체와 MCNP4A 코드를 이용하여 계산하였다. 모사실험은 40 keV에서 10 MeV 영역의 19개 단일 에너지에 대한 유효선량 계산을 수행하였다. 에너지에 따른 단위 선원강도에 대한 유효선량 E를 기존 연구자들의 결과물인 유효선량당량 $H_E$와 비교한 결과, 본 연구의 E값이 USEPA의 FGR에 주어진 $H_E$ 값에 비해 30%의 편차를 보였다. 에너지와 유효선량의 관계를 polynomial fitting을 통해 구한 유효선량 감응함수는 다음과 같다. $f({\varepsilon})[fSv\;m^2]=\;0.0634\;+\;0.727{\varepsilon}-0.0520{\varepsilon}^2+0.00247{\varepsilon}^3$ 여기서, ${\varepsilon}$는 감마선의 에너지(MeV)이다. 감응함수와 ICRP 38의 방사성핵종 붕괴 자료를 이용하여 지표면과 공기 오염의 단위 방사능농도에 대한 유효선량환산계수를 계산한 후 DOSEFACTOR코드를 사용하여 계산한 베타선에 의한 피부선량을 합하여 90개의 중요 핵종들에 대한 환산계수를 평가하여 도표로 제시하였다. 기존 자료들과 비교를 통해 기존 환산계수를 사용할 경우 특히 저에너지 감마선이나 고에너지 베타선을 방출하는 핵종에 대해서 상당한 과소평가가 이루어질 수 있음을 확인할 수 있었다.

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두경부암 방사선치료 시 선량 균일도 향상을 위한 Thermoplastic 구강 보상체의 개발 (Development of a Thermoplastic Oral Compensator for Improving Dose Uniformity in Radiation Therapy for Head and Neck Cancer)

  • 최준용;원영진;박지연;김종원;문봉기;윤형근;문수호;전종병;서태석
    • 한국의학물리학회지:의학물리
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    • 제23권4호
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    • pp.269-278
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    • 2012
  • 두경부암 방사선치료 시 공동 경계면 및 주변 치료 부위의 선량 균일도 향상을 위하여 조직 등가의 thermoplastic 구강 보상체를 개발하였다. Thermoplastic의 유용성 평가를 위해, 기존에 사용해 오던 치과용 인상재료인 paraffin, alginate, 그리고 putty로 제작한 각 구강 보상체의 물성 및 선량 분포 향상도를 비교하였다. 물성 평가에는 강도 평가(압축 실험, 낙하 실험)와 자연변형도(시간에 따른 체적 변화) 평가를 수행하였으며, 개발한 선량 검증용 팬톰에 삽입한 유리선량계와 Gafchromic EBT2 필름을 이용하여 표면선량, 공동 경계면 선량 및 빔 측면도를 측정하여 전달 선량을 평가하였다. 두 달간 각 구강 보상체의 자연변형도 평가하였을 때, alginate는 수분증발로 최대 80% 체적 변화를 보였으나, thermoplastic을 포함한 나머지 조직 등가 물질은 체적 변화가 3% 미만으로 나타났다. 강도 평가 중 5회 반복한 1.5 m 높이의 자유 낙하실험에서 paraffin은 충격에 의하여 파손이 발생되었으나, thermoplastic은 낙하에 의한 파손이 발생되지 않았으며, 압축 강도 실험에서도 paraffin에 비하여 8배 이상의 높은 힘에서도 파손되지 않았다. 유리선량계를 이용한 선량 검증 결과, 1문 조사 시 조직등가[약 80 HU (Hounsfield Unit)]의 thermoplastic은 동일한 처방 선량 전달 시 약 1,000 HU 이상의 값을 나타내는 putty에 비해 4% 낮은 출력계수(monitor unit) 전달로 약 4.9%의 낮은 표면 선량을 전달하였다. 또한 빔 입사 방향을 기준으로 할 때, 구강 통과 후 경계면의 빔 측면도에서 선량 균일도 평가를 위해 측정한 조사영역 편평도는 air, thermoplastic, putty에서 각각 11.41, 3.98, 4.30으로 나타났다. Thermoplastic 구강 보상체는 조직 등가 물질로 기존에 사용해오던 구강 보상체에 비하여 강도가 높고 물질 변형 확률이 적으며, 구강을 포함을 경계면 및 주변 부위에 균일한 선량 분포를 형성할 수 있으므로 균일한 처방 선량 전달 및 피부 선량 감소가 가능하다.

화학물질 관리 연구-1. 산업안전보건법상 관리 화학물질의 특성과 노출기준 비교 (Study on the Chemical Management - 1. Chemical Characteristics and Occupational Exposure Limits under Occupational Safety and Health Act of Korea)

  • 박지훈;함승헌;김선주;이권섭;하권철;박동욱;윤충식
    • 한국산업보건학회지
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    • 제25권1호
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    • pp.45-57
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    • 2015
  • Objectives: This study aims to compare the physicochemical characteristics, toxicological data with Occupational Exposure Limits (OELs) of chemicals under the Occupational Safety and Health Act(OSHA) regulated by the Ministry of Employment and Labor of Korea. Methods: Information on chemicals which have OELs on physicochemical characteristics and toxicological data was collected using Material Safety Data Sheet(MSDS) from Korea Occupational Safety and Health Agency(KOSHA) and the Korea Information System for Chemical Safety Management(KISChem) in 2014. Statistical analyses including correlation and simple regression were performed to compare the OELs with chemical characteristics including molecular weight, boiling point, odor threshold, vapor pressure, vapor density, solubility and octanol-water partition coefficient(OWPC) and toxicological data such as median lethal dose($LD_{50}$) and median lethal concentration($LC_{50}$). Results: A total of 656 chemicals have OELs under OSHA in Korea. The numbers of chemicals which have eight-hour time weighted average(TWA) and short term exposure limits(STEL) are 618 and 190, respectively. TWA was significantly correlated with boiling point and STEL was only correlated with vapor pressure among physicochemical characteristics. Solubility and OWPC between "skin" and "no skin" substances which indicate skin penetration were not significantly different. Both $LD_{50}$ and $LC_{50}$ were correlated with TWA, while the $LC_{50}$ was not with STEL. As health indicators, health rating and Emergency Response Planning Guidelines(ERPG) rating as recommended by the National Fire Protection Association(NFPA) and American Industrial Hygiene Association(AIHA) were associated with OELs and reflect the chemical hazards. Conclusions: We found relationships between OEL and chemical information including physicochemical characteristics and toxicological data. The study has an important meaning for understanding present regulatory OELs.

Enhanced Local Anesthetic Efficacy of Bioadhesive Ropivacaine Gels

  • Cho, Cheong-Weon;Choi, Jun-Shik;Shin, Sang-Chul
    • Biomolecules & Therapeutics
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    • 제19권3호
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    • pp.357-363
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    • 2011
  • In relieving local pains, ropivacaine has been widely used. In case of their application such as ointments and creams, it is difficult to expect their effects for a significant period of time, because they are easily removed by wetting, movement and contacting. Therefore, the new formulations that have suitable bioadhesion were needed to enhance local anesthetic effects. The effect of drug concentration and temperature on drug release was studied from the prepared 1.5% Carboxymethyl cellulose (CMC) (150MC) gels using synthetic cellulose membrane at $37{\pm}0.5^{\circ}C$. As the drug concentration and temperature increased, the drug release increased. A linear relationship was observed between the logarithm of the permeability coefficient and the reciprocal temperature. The activation energy of drug permeation was 3.16 kcal/mol for a 1.5% loading dose. To increase the skin permeation of ropivacaine from CMC gel, enhancers such as saturated and unsaturated fatty acids, pyrrolidones, propylene glycol derivatives, glycerides, and non-ionic surfactants were incorporated into the ropivacaine-CMC gels. Among the enhancers used, polyoxyethylene 2-oleyl ether showed the highest enhancing effects. For the efficacy study, the anesthetic action of the formulated ropivacaine gel containing an enhancer and vasoconstrictor was evaluated with the tail-flick analgesimeter. According to the rat tail-flick test, 1.5% drug gels containing polyoxyethylene 2-oleyl ether and tetrahydrozoline showed the best prolonged local analgesic effects. In conclusion, the enhanced local anesthetic gels containing penetration enhancer and vasoconstrictor could be developed using the bioadhesive polymer.