• 제목/요약/키워드: high- and low-dose-rate irradiation

검색결과 51건 처리시간 0.022초

자궁경부암 강내 방사선 조사장치에 의한 직장 및 방광의 피폭선량 평가 (Dose Distribution of Rectum and Bladder in Intracavitary Irradiation)

  • 추성실;오원용;서창옥;김귀언
    • Radiation Oncology Journal
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    • 제2권2호
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    • pp.261-270
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    • 1984
  • The intrauterine irradiation is essential to achieve adequate tumor dose to central tumor mass of uterine malignancy in radiotherapy. The complications of pelvic organ are known to be directly related to radiation dose and physical parameters. The simulation radiation and medical records of 203 patients who were treated with intrauterine irradiation from Feb. 1983 to Oct. 1983, were critically analized. The physical parameters to include distances between lateral walls of vaginal fornices, longitudinal and lateral angles of tandem applicator to the body axis, the distance from the external os of uterine cervix to the central axis of ovoids were measured for low dose rate irradiation system and high dose rate remote control afterloading system. The radiation doses and dose distributions within cervical area including interesting points and bladder, rectum, according to sources arrangement and location of applicator, were estimated with personal computer. Followings were summary of study results ; 1. In distances between lateral walls of vaginal fornices, the low dose rate system showed as $4\~7cm$ width and high dose rate system showed as $5\~6cm$. 2. In horizontal angulation of tandem to body axis, the low dose rate system revealed mid position$64.6\%$, left deviation $19.2\%$and right deviation $16.2\%$. 3. In longitudinal angulation of tandem to body axis, the mid position was $11.8\%$ and anterior angulation $88.2\%$ in low dose rate system but in high dose rate system, anterior angulation was $98.5\%$. 4. Down ward displacement of ovoids below external os was only $3\%$ in low dose rate system and $66.7\%$ in high dose rate system. 5. In radiation source arrangement, the most activities of tandem and ovoid were 35 by 30 in low dose rate system but 50 by 40 in high dose rate system. 6. In low and high dose rate system, the total doses an4 TDF were 50, 70 Gy and 141, 123, including 40 Gy external irradiation. 7. The doses and TDF in interesting points Co, B, were 93, 47 Gy and 230, 73 in high dose rate system but in low doss rate system, 123, 52 Gy and 262, 75 respectively. 8. Doses and TDF in bladder and rectum were 70, 68 Gy and 124, 120 in low dose rate system, but in high dose rate system, 58, 64 Gy 98, 110 respectively, and then grades of injuries in bladder and rectum were 25, $30\%$ and 18, $23\%$ respectively.

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묵은 채소 종자의 발아와 생육 및 효소활성에 미치는 $\gamma$선의 영향 (Effects of Gamma Radiation on the Germination, Growth and Enzyme (peroxidase and catalase) Activities of Old Vegetable Seed)

  • 김재성;백명화;김동희;이영근;정규회
    • 환경생물
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    • 제19권3호
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    • pp.205-210
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    • 2001
  • 묵은 배추와 무 종자에 저선량 ${\gamma}$선을 조사하여 종자발아율과 발아유식물의 효소활성 변화를 조사하였다. 발아율은 대조구에 비해 저선량 조사구에서 증가하는 경향을 보였는데 특히 발아초기단계에 효과가 뚜렷하게 나타났으며 배추는 2 Gy와 8 Gy조사구에서 4-ll % 정도, 무는 2 Gy, 6 Gy, 10 Gy 조사구에서 25-41% 정도 증가하였다. 저선량 ${\gamma}$선이 조사된 배추와 무의 유묘초장도 저선량 조사구에서 증가하였는데 특히 배추의 경우는 4 Gy와 l0 Gy 조사구에서, 무는 6 Gy 조사구에서 뚜렷한 증가효과를 보였다. 저선량 조사구의 단백질 함량은 발아초기단계에 대조구에 비해 증가하였으며 POD와 CAT 활성은 4 Gy와 l0 Gy 조사구에서 증가하였다. 이에 저선량 $\gamma$선에 의해 묵은 종자의 발아와 효소활성이 촉진됨을 확인할 수 있었다.

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방사선(放射線) 조사(照射) 중(中) 절연유(絶緣油)의 유기전류(誘起電流)에 관한 연구(硏究) (A Study on Radition-Induced Current in Insulating Oil during X-ray Irradiation)

  • 김영일;이덕출;정연택
    • 대한방사선기술학회지:방사선기술과학
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    • 제11권1호
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    • pp.33-41
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    • 1988
  • This study was measured the radiation-induced current - X-ray dose, dose rate, X-ray quality, time, temperature, electric field characteristics and the dependence of gap length in insulating oil under of D.C. Voltage before, during and after X-ray irradiation. The obtained results can be summarized as following. 1. The radiation - induced current is more the dependence of X-ray quality (tube voltage) than quantity (tube current), the dependence of quantity is appeared at the high than low X-.ay tube voltage. 2. The dependence of dose rate is appeared at the more dose rate, and ${\triangle}\;=\;0.64{\sim}0.74$. 3. The higher temperature of insulating oil and X-ray tube voltage (X-ray quality) is increased, at the low electric field, the more radiation-induced current. 4. $G_{eq}-G_{o}(={\triangle}G)$ is increased at the low than high temperature, high than low X-ray quality. 5. The dependence of temperature is appeared before than during X-ray irradiation. 6. The RIC saturation region is appeared at the high than low insulating oil temperature during (1000 V/cm above) than before (4000 V/cm above) X-ray irradiation.

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CHANGING OF RGS TRANSCRIPTS LEVELS BY LOW-DOSE-RATE IONIZING RADIATION IN MOUSE TESTIS

  • Kim, Tae-Hwan;Baik, Ji Sue;Heo, Kyu;Kim, Joong Sun;Lee, Ki Ja;Rhee, Man Hee;Kim, Sung Dae
    • Journal of Radiation Protection and Research
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    • 제40권3호
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    • pp.187-193
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    • 2015
  • Deleterious effects of high dose radiation exposure with high-dose-rate are unarguable, but they are still controversial in low-dose-rate. The regulator of G-protein signaling (RGS) is a negative regulator of G protein-coupled receptor (GPCR) signaling. In addition, it is reported that irradiation stress led to GPCR-mediated mitogen-activated protein kinase (MAPK) and phosphotidylinositol 3-kinase (PI3-k) signaling. The RGS mRNA expression profiles by whole body radiation with low-dose-rate has not yet been explored. In the present study, we, therefore, examined which RGS was modulated by the whole body radiation with low-dose-rate ($3.49mGy{\cdot}h^{-1}$). Among 16 RGS expression tested, RGS6, RGS13 and RGS16 mRNA were down-regulated by low-dose-rate irradiation. This is the first report that whole body radiation with low-dose-rate can modulate the different RGS expression levels. These results are expected to reveal the potential target and/or the biomarker proteins associated with male testis toxicity induced by low-dose-rate irradiation, which might contribute to understanding the mechanism beyond the testis toxicity.

자궁경부암 강내 방사선조사에 있어서 고 및 저 선량율방법에 의한 선량율 비교 고찰 (Comparison Study of Dose Rate and Physical Parameters in Low and High Dose Rate Intracavitary Radiation Systems for Carcinoma of the Uterne Cervix.)

  • 양칠용
    • 대한방사선치료학회지
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    • 제1권1호
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    • pp.70-78
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    • 1985
  • The intrauterine irradiation is essential to achieve adequate tumor dose to centeral tumor mass in radio therapy for uterine malignancy. The complications of pelvic organ are known to be directly related to radiation dose and physical parameters. The comparison study of currently using 2 systems was undertaken. The simulation films and medical records of 135 patients who was treated with intrauterine irradiation at one of general hospitals in Busan and Seoul between Jan. 1983 and June 1983, were critically analized and physical parameters of low dose rate system and remote controlled high dose rate system were measured. The physical parameters include distances between lateral walls of vaginal fornices, longitudinal and lateral angles of tandem to the body axis, the distance from the external os of uterine cervix to the central axis of ovoids, the radiation dose ratio to rectum and bladder to reference point A. Followings were summary of study results: 1. In distances between lateral walls of vaginal fornices the low dose rate system showed wide distribution and relatively larger distances. In low dose rate system 5.0-5.9 cm was $55.89\%$ 6.0-6.9 cm: $23.53\%$, 4.0-4.9cm: $10.29\%$, 3.0-3.9cm: $10.29\%$, and in high dose rate system 5.0-5.9cm was $80.59\%$, 4.0-4.9cm: $17.91\%$, $6.0\~6.9\;cm:\;1.5\%$. 2. In lateral angulation of tandem to body axis, the low does system revealed mid position (the position along body axis) $64.7\%$, Lt. deviation $19.13\%$ and Rt. deviation $16.17\%$. However the high dose rate system revealed mid position $49.26\%$ Lt. deviation $40.29\%$ and Rt. deviation $10.45\%$. 3. In longitudinal angulation of tandem to body axis the mid position was $11.77\%$ and anterior angulation $88.23\%$ in low dose rate system but in high dose rate system the mid position was $1.56\%$ and anterior angulation $98.44\%$. 4. Down ward displacement of ovoids below external os was only $2.94\%$ in low dose rate system and $67.69\%$ in high dose rate system. 5. The radiation dose ration to rectum to reference point A was $102.70\%$ in high dose rate system and $70.09\%$ in low dose rate system. The dose ratio to bladder to reference point A was $78.14\%$ in high dose rate system and $75.32\%$ in low dose rate system.

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IDENTIFICATION OF GENES EXPRESSED IN LOW-DOSE-RATE γ-IRRADIATED MOUSE WHOLE BRAIN

  • Bong, Jin Jong;Kang, Yu Mi;Choi, Seung Jin;Kim, Dong-Kwon;Lee, Kyung Mi;Kim, Hee Sun
    • Journal of Radiation Protection and Research
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    • 제38권4호
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    • pp.166-171
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    • 2013
  • While high-dose ionizing radiation results in long term cellular cytotoxicity, chronic low-dose (<0.2 Gy) of X- or ${\gamma}$-ray irradiation can be beneficial to living organisms by inducing radiation hormesis, stimulating immune function, and adaptive responses. During chronic low-dose-rate radiation (LDR) exposure, whole body of mice is exposed to radiation, however, it remains unclear if LDR causes changes in gene expression of the whole brain. Therefore, we aim to investigate expressed genes (EGs) and signaling pathways specifically regulated by LDR-irradiation ($^{137}Cs$, a cumulative dose of 1.7 Gy for total 100 days) in the whole brain. Using microarray analysis of whole brain RNA extracts harvested from ICR and AKR/J mice after LDR-irradiation, we discovered that two mice strains displayed distinct gene regulation patterns upon LDR-irradiation. In ICR mice, genes involved in ion transport, transition metal ion transport, and developmental cell growth were turned on while, in AKR/J mice, genes involved in sensory perception, cognition, olfactory transduction, G-protein coupled receptor pathways, inflammatory response, proteolysis, and base excision repair were found to be affected by LDR. We validated LDR-sensitive EGs by qPCR and confirmed specific upregulation of S100a7a, Olfr624, and Gm4868 genes in AKR/J mice whole brain. Therefore, our data provide the first report of genetic changes regulated by LDR in the mouse whole brain, which may affect several aspects of brain function.

DOSE AND DOSE RATE EFFECTS OF IRRADIATION ON BLOOD COUNT AND CYTOKINE LEVEL IN BALB/c MICE

  • Son, Yeonghoon;Jung, Dong Hyuk;Kim, Sung Dae;Lee, Chang Geun;Yang, Kwangmo;Kim, Joong Sun
    • Journal of Radiation Protection and Research
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    • 제38권4호
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    • pp.179-184
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    • 2013
  • The biological effects of radiation are dependent on the dose rate and dose of radiation. In this study, effects of dose and dose rate using whole body radiation on plasma cytokines and blood count from male BALB/c mice were evaluated. We examined the blood and cytokine changes in mice exposed to a low (3.49m Gy $h^{-1}$) and high (2.6 Gy $min^{-1}$) dose rate of radiation at a total dose of 0.5 and 2 Gy, respectively. Blood from mice exposed to radiation were evaluated using cytokine assays and complete blood count. Peripheral lymphocytes and neutrophils decreased in a dose dependent manner following high dose rate radiation. The peripheral lymphocytes population remained unchanged following low dose rate radiation; however, the neutrophils population increased after radiation. The sera from these mice exhibited elevated levels of flt3 ligand and granulocyte-colony-stimulating factor (G-CSF), after high/low dose rate radiation. These results suggest that low-dose-rate radiation does not induce blood damage, which was unlike high-dose-rate radiation treatment; low-dose-rate radiation exposure activated the hematopoiesis through the increase of flt3 ligand and G-CSF.

고선량율 감마선 환경하에서의 카메라 관측성능 (Monitoring Performance of Camera under the High Dose-rate Gamma Ray Environment)

  • 조재완;정경민
    • 전기학회논문지
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    • 제61권8호
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    • pp.1172-1178
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    • 2012
  • In this paper, the gamma ray irradiation test results of the CCD cameras are described. From the low dose-rate (2.11 Gy/h) to the high dose-rate (150 Gy/h) level, which is the same level when the hydrogen explosion was occurred in the 1~3 reactor unit of the Fukushima nuclear power plant, the monitoring performance of the cameras owing to the speckles are evaluated. The numbers of speckles, generated by gamma ray irradiation, in the image of cameras are calculated by image processing technique. And the legibility of the sensor indicator (dosimeter) owing to the numbers of the speckles is presented.

저선량 ${\gamma}$선 조사가 대두 식물체의 방사선 감수성에 미치는 영향 (Effects of Low Dose ${\gamma}$ Radiation on the Radiosensitivity of Soybean(Glycine max L.) Plant)

  • 김재성;채성기;백명화;김동희
    • 한국환경농학회지
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    • 제19권4호
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    • pp.324-327
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    • 2000
  • 저선량 조사한 대두종자의 초기생육과 대두 유식물체의 후속고선량에 대한 방사선 감수성 변화를 알아보고자 저선량 0, 4, 8, 12, 20 Gy를 조사하여 재배한 대두 유식물체에 ${\gamma}$선 50, 100, 200 Gy를 조사한 후 생육상황을 관찰하였다. 저선량 조사에 의해 대두 신규종자의 발아율 증가효과는 없었으나 작물 생장 증대효과는 있었으며 저선량 8 Gy 조사구가 가장 효과적이었다. 대두유식물체의 고선량 방사선에 의한 생육장해는 사전 저선량조사에 의해 크게 감소되었으며 저선량 조사에 의한 고선량 방사선 저항성 증가는 8 Gy와 20 Gy조사에서 가장 효과적이었다.

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저선량 $\gamma$선 조사가 토마토의 초기생육과 후속고선량 $\gamma$선 저항성에 미치는 영향 (Effects of low dose $\gamma$-ray on the early growth of tomato and the resistance to subsequent high doses of radiation)

  • 김재성;김진규;백명화;김동희
    • Journal of Radiation Protection and Research
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    • 제24권3호
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    • pp.123-129
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    • 1999
  • 저선량 $\gamma$선 조사한 토마토 2품종, 서광과 하우스모모타로 종자의 발아와 초기생육 및 후속 고선량에 대한 생육효과를 조사하였다. 저선량에 의한 발아와 생육촉진효과는 품종에 따라 달랐다. 발아율의 경우 서광은 모든 저선량 조사구에서 증가되었으나, 하우스모모타로는 오히려 감소되었다. 유묘초장은 저선량 조사에 의해 증가되었으며 두 품종 모두 4 Gy와 8 Gy 조사구에서 가장 효과적이었다. 생육 2개월 후 서광의 초장은 억제되었으나 생체중은 4 Gy와 2 Gy에서 증가되었고, 하우스모모타로의 초장은 12 Gy와 20 Gy에서, 생체중은 20 Gy와 4 Gy에서 가장 높은 증가효과를 보였다. 토마토 식물체의 고선량 피폭에 의한 생육장해는 사전 저선량 조사에 의해 감소되었는데 서광의 경우 2 Gy와 8 Gy 조사구에서 저항성이 높았으며 하우스모모타로의 경우 모든 저선량 조사구에서 저항성 효과가 나타났으며 특히 2 Gy와 12 Gy 조사구에서 높았다.

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