• Title/Summary/Keyword: Medium-dose gamma radiation

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Survival Rate and Biological Effect of Chronic Medium-Dose-Rate Gamma Radiation Exposed to Mice (장기 중선량률 감마선 피폭에 의한 마우스의 생존율 및 생물학적 영향 평가)

  • Kim, Jae-Kyung;Jin, Yeung Bae;Oh, Su-Mi;Lee, Yun-Jong;Sung, Nak-Yun;Song, Beom-Seok;Park, Jong-Heum;Byun, Eui-Baek;Lee, Ju-Woon;Kim, Jae-Hun
    • Journal of Radiation Industry
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    • v.7 no.2_3
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    • pp.155-159
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    • 2013
  • Late effects of chronic exposure to gamma radiation are potential hazards to worker in radiation facilities as well as to the general public. Recently, chronic gamma radiation exposure effects have become a serious concern. Using a total of 60 mice, we studied the biological effects of medium-dose chronic exposure to gamma radiation. Sixty female 6-week-old specific pathogen free Balb/c mice were randomly divided into six groups (five groups irradiated and one non-irradiated control group). Irradiation was carried out for 7 days using gamma rays at dose rates of 119.65, 238.10, 357.14, 476.19 and $595.24mGy\;h^{-1}$ with total doses 20, 40, 60, 80 and 100 Gy. After irradiation, we determined survival rate of gamma radiation exposed mice during 1 week and 476.19 and $595.24mGy\;h^{-1}$ exposed group mice showed less 10% of survival rate. Otherwise, 119.65, 238.10 and $357.14mGy\;h^{-1}$ exposed group mice were survived each 100%, 80% and 70%. Half of survived mice after 1 week are immediately sacrifice and counted body and spleen weights. Compared with control non-irradiated group, total body weights and spleen weights isolated from 119.65, 238.10 and 357.14 irradiated group mice showed significant decreased. However, no significant alteration was observed between 119.65, 238.10 and $357.14mGy\;h^{-1}$ irradiated group. Overall, our results show for the first time that medium-dose chronic gamma radiation has the potential to stimulation of biological effects.

Effects of Low Dose Gamma Radiation on the Formation of Shikonin Derivatives on Callus Cultures of Lithospermum erythrorhizon (지치(Lithospermum erythrorhizon S.)의 캘러스배양에서 Shikonin 유도체 생산에 미치는 저선량γ선의 효과)

  • Hwang, Hye-Yeon;Kim, Jae-Sung;Lee, Young-Bok
    • Journal of Plant Biotechnology
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    • v.30 no.3
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    • pp.293-299
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    • 2003
  • The effects of low dosage ${\gamma}$-radiation on the cell growth and the formation of shikonin derivatives were investigated in callus cultures of Lithospermum erythrorhizon under different medium and light conditions. Gamma radiation significantly affected the cell growed and formation of shikonin derivatives, depending on the culture conditions. In the cell cultures grown on M-9 medium, 2Gy and 16Gy of ${\gamma}$-radiation increased the calli growth and the formation of shikonin derivatives, respectively under 16hr day light condition. When calli were cultured for 60 days in the dark after irradiation of ${\gamma}$-radiation, cell growth was increased at low dosage of 1Gy and 2Gy in LS medium containing BA 2mg/L and IAA 0.2mg/L. Interestingly, calli grown in M-9 medium by 2Gy irradiation for 60 days significantly stimulated the formation of shikonin derivatives(13.21mg/g cell fresh wt), which was approximately 6 times higher than untreated cells.

Biological Effects of Different Chronic Medium-Dose-Rate Gamma Radiation Period Exposed on Mice (장기 중선량률의 감마선 피폭 기간에 따른 실험동물의 생물학적 영향 연구)

  • Kim, Jae-Kyung;Jin, Yeung Bae;Oh, Su-Mi;Lee, Yun-Jong;Sung, Nak-Yun;Song, Beom-Seok;Park, Jong-Heum;Byun, Eui-Baek;Lee, Ju-Woon;Kim, Jae-Hun
    • Journal of Radiation Industry
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    • v.7 no.2_3
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    • pp.135-139
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    • 2013
  • Recently, chronic gamma radiation exposure on biological effects in middle dose-rates have become a serious concern. We investigated the biological effects of middle dose chronic exposure to gamma ray. Fifty male 6-week-old specific free Balb/c mice were randomly divided into five groups (four groups irradiated and one non-irradiated control group). Gamma radiation exposed in Gamma phytotron on Advanced Radiation Technology Institute (Jeongeup, Korea). Irradiation was carried out for 1 or 2 weeks using gamma rays at dose rates of 45 and $50mGy\;h^{-1}$ with total doses 7.56 Gy ($45mGy\;h^{-1}$, 1 week), 8.4 Gy ($50mGy\;h^{-1}$, 1 week), 15.12 Gy ($45mGy\;h^{-1}$, 2 weeks) and 16.8 Gy ($50mGy\;h^{-1}$, 2 weeks). After irradiation, immediately we sacrificed and counted body and organ weights. Moreover we counted spleen cell numbers. Compared with control non-irradiated group, all irradiated groups of body and spleen weights showed significant decreased. However, no significant alteration was observed between same irradiated period groups. In spleen cell numbers, reduced compared to the control group. However, significant alteration was observed between same irradiated period groups ($45mGy\;h^{-1}$, $50mGy\;h^{-1}$). These results demonstrated biological effects according to the radiation dose rate and irradiated period.

Effects of Low Dose $\gamma$ Radiation on Callus Growth of Lithospermum erythrorhizon S. (지치 (Lithospermum erythrorhizon S.) Callus 생장에 미치는 저선량 $\gamma$선의 효과)

  • 황혜연;김재성;이영복
    • Korean Journal of Plant Tissue Culture
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    • v.28 no.6
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    • pp.305-310
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    • 2001
  • The effect of low dose ${\gamma}$-radiation on the callus growth of Lithospermum erythrorhizon S. cultured on different medium and lighting condition was investigated. The 8 Gy irradiation stimulated callus growth on LS medium supplemented with BA 2 mg/L and NAA 2 mg/L, however, the growth of callus was more effective on LS medium supplemented with BA 1 mg/L and NAA 1 mg/L under 16 hrs day light. And on the LS medium containing IAA 0.2 mg/L, 16 Gy irradiation increased the callus growth by supplement with kinetin 2 mg/1 and the effect of kinetin was higher than BA at same concentration. The growth of callus was more vigorous on LS medium than MS medium in general. On M-9 medium, the growth of callus was poor regardless lighting conditions, however, by ${\gamma}$-ray irradiation of 16 Gy or 30 Gy, callus growth rates were increased by 30% or more than 30%, especially, under 16 hrs day light condition.

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Improvement of the Hygienic Quality and Shelf-life of Kwamegi from Cololabis seira by Gamma Irradiation (꽁치과메기의 위생적 품질개선 및 저장기간 연장을 위한 감마선 조사)

  • Cho, Kyung-Hwan;Lee, Ju-Woon;Kim, Jae-Hun;Ryu, Gi-Hyung;Yook, Hong-Sun;Byun, Myung-Woo
    • Korean Journal of Food Science and Technology
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    • v.32 no.5
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    • pp.1102-1106
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    • 2000
  • This study was carried out to investigate the effects of gamma irradiation for the improvement of hygienic quality and the extension of shelf-life of Kwamegi(semi-dried colobabis seira). Kwamegi was stored at $5^{\circ}C$ and $15^{\circ}C$ after gamma irradiation with doses of 0, 3, 5, 7 and 10 kGy. In microbiological aspects, non-irradiated Kwamegi was rapidly deteriorated during storage, and some harmful bacteria were detected in a microbial analysis using a selective medium. However, the total viable cells and presumptive pathogens were reduced with the increase of irradiation dose, and dose level of 7 to 10 kGy was considered to be optimum and effective dose for the preservation of Kwamegi.

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The Tumor Control According to Radiation Dose of Gamma Knife Radiosurgery for Small and Medium-Sized Brain Metastases from Non-Small Cell Lung Cancer

  • Park, Sue Jee;Lim, Sa-Hoe;Kim, Young-Jin;Moon, Kyung-Sub;Kim, In-Young;Jung, Shin;Kim, Seul-Kee;Oh, In-Jae;Hong, Jong-Hwan;Jung, Tae-Young
    • Journal of Korean Neurosurgical Society
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    • v.64 no.6
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    • pp.983-994
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    • 2021
  • Objective : The effectiveness of gamma knife radiosurgery (GKR) in the treatment of brain metastases is well established. The aim of this study was to evaluate the efficacy and safety of maximizing the radiation dose in GKR and the factors influencing tumor control in cases of small and medium-sized brain metastases from non-small cell lung cancer (NSCLC). Methods : We analyzed 230 metastatic brain tumors less than 5 mL in volume in 146 patients with NSCLC who underwent GKR. The patients had no previous radiation therapy for brain metastases. The pathologies of the tumors were adenocarcinoma (n=207), squamous cell carcinoma (n=18), and others (n=5). The radiation doses were classified as 18, 20, 22, and 24 Gy, and based on the tumor volume, the tumors were categorized as follows : small-sized (less than 1 mL) and medium-sized (1-3 and 3-5 mL). The progression-free survival (PFS) of the individual 230 tumors and 146 brain metastases was evaluated after GKR depending on the pathology, Eastern Cooperative Oncology Group (ECOG) performance score (PS), tumor volume, radiation dose, and anti-cancer regimens. The radiotoxicity after GKR was also evaluated. Results : After GKR, the restricted mean PFS of individual 230 tumors at 24 months was 15.6 months (14.0-17.1). In small-sized tumors, as the dose of radiation increased, the tumor control rates tended to increase (p=0.072). In medium-sized tumors, there was no statistically difference in PFS with an increase of radiation dose (p=0.783). On univariate analyses, a statistically significant increase in PFS was associated with adenocarcinomas (p=0.001), tumors with ECOG PS 0 (p=0.005), small-sized tumors (p=0.003), radiation dose of 24 Gy (p=0.014), synchronous lesions (p=0.002), and targeted therapy (p=0.004). On multivariate analyses, an improved PFS was seen with targeted therapy (hazard ratio, 0.356; 95% confidence interval, 0.150-0.842; p=0.019). After GKR, the restricted mean PFS of brain at 24 months was 9.8 months (8.5-11.1) in 146 patients, and the pattern of recurrence was mostly distant within the brain (66.4%). The small and medium-sized tumors treated with GKR showed radiotoxicitiy in five out of 230 tumors (2.2%), which were controlled with medical treatment. Conclusion : The small-sized tumors were effectively controlled without symptomatic radiation necrosis as the radiation dose was increased up to 24 Gy. The medium-sized tumors showed potential for symptomatic radiation necrosis without signifcant tumor control rate, when greater than 18 Gy. GKR combined targeted therapy improved the tumor control of GKR-treated tumors.

Radiosensitivity of the in vitro Cultured Young Plants for Sport Mutation Induction of Stevia rebaudiana Bert (스테비아(Stevia rebaudiana Bert)의 아조돌연변이유기를 위한 기내유식물체의 방사선감수성)

  • Yoon, Tai-Young;Kim, Ee-Youb;Hyun, Kyung-Sup;Jo, Han-Jig;Lee, Young-Il;Ju, Sun-Ah;Oh, Seung-Cheol;Kim, Dong Sub;Kang, Si-Yong;Ko, Jeong-Ae
    • Journal of Radiation Industry
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    • v.4 no.4
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    • pp.297-306
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    • 2010
  • Due to the increasing incidence of diabetes, obesity and hypertensive, stevia has been placed great attentions as the sweetener to substitute sucrose in the world. Stevia was introduced to Korea in 1970's, but it has not been an attractive crop in that time. However, recently it has more attention for the natural food sweet additives. Because stevia have many problems for cultivation especially cultivar, seed germination, fertility, uniformity and glycoside quality, the sport mutation was attempted to in vitro plants for the improvement of some characteristics. The young in vitro plants was nursed on MS medium supplemented with $1mg\;l^{-1}\;GA_3$. Shoots of 10 cm height were irradiated with 0~200 Gy of gamma ray and the every node was separated and inoculated on MS basic medium. The lethality, number and length of shoot, numbers of node and branch were investigated for the evaluation of radiosensitivity. The optimum dose of gamma ray seemed to be around 80 Gy for the sport mutation induction in stevia. The lower node was more sensitive than higher node to radiation.

Effect of ionizing radiation on cultured submandibular gland (SG) cells of mouse (전리 방사선 조사에 의한 마우스 배양 악하선 세포의 변화)

  • Lee, Song-Jae
    • The Journal of Korean Society for Radiation Therapy
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    • v.4 no.1
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    • pp.71-77
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    • 1990
  • The present study was undertaken to investigate effects of ionizing radiation on DNA synthesis and chromosomal abnormality in cultured submandibular gland(SG) cells. SG cells from C57BL/6N Crj mice were cultured in Dulbecco's modified Eagle's medium (DME) supplemented with $10\%$ fetal bovine serum, antibiotics and fungizone. The cultured SG cells were irradiated with graded doses of gamma ray ($^{60}Co$) at a dose rate of 58.4rad/min. The effect of irradiation of $^{60}Co$ on DNA synthesis in cultured cells was evaluated by measuring the incorporation of 3H-TdR. Using conventional chromosome techniques and Giemsa staining methods, chromosomal abnormalities in cultured SG cells, induced by irradiation of $^{60}Co$ werw examined. Cytological observations were carried out by a light microscope with high resolving power. The results obtained were as follows : 1. DNA synthesis of SG cells was quantitatively dependent on a radiation dose compare to control. 2. A polyploids and few chromosome-type break, such as single and double breaks, deltions and triradial figures were more predominantly in irradiated SG cells than in control. This increase of chromosomal abnormality was in the proposition to the irradiation doses.

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Characteristic Evaluation of Exposed Dose with NORM added Consumer Product based on ICRP Reference Phantom (ICRP 기준팬텀 기반의 천연방사성핵종이 포함된 가공제품 사용으로 인한 피폭선량 특성 평가)

  • Yoo, Do Hyeon;Lee, Hyun Cheol;Shin, Wook-Geun;Choi, Hyun Joon;Min, Chul Hee
    • Journal of Radiation Protection and Research
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    • v.39 no.4
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    • pp.159-167
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    • 2014
  • In Korea, July 2012, the law as called 'Act on Safety Control of Radioactive Rays Around Living Environment' was implemented to control the consumer product containing Naturally Occurring Radioactive Material (NORM), but, there are no appropriate database and effective dose calculation system. The aim of this study was to develop evaluation technique of the exposure dose with the use of the consumer products containing NORM and to understand the characteristics of the exposed dose according to the radiation type and energy. For the evaluate of exposure dose, the ICRP reference phantom was simulated by the MCNPX code based on Monte Carlo method, and the minimum, medium, maximum energy of alphas, betas, gammas from the representative NORM of Uranium decay series were used as the source term in the simulation. The annual effective doses were calculated by the exposure scenario of the consumer product usage time and position. Short range of the alpha and beta rays are mostly delivered the dose to the skin. On the other hand, the gamma rays mostly delivered the similar dose to all of the organs. The results of the annual effective dose with $1Bq{\cdot}g^{-1}$ radioactive stone-bed and 10% radioactive concentration were employed with the usage time of 7 hours 50 minute per day, the maximum annual effective dose of alphas, betas, gammas were calculated 0.0222, 0.0836, $0.0101mSv{\cdot}y^{-1}$, respectively.

Radiation Absorbed Dose Calculation Using Planar Images after Ho-166-CHICO Therapy (Ho-166-CHICO 치료 후 평면 영상을 이용한 방사선 흡수선량의 계산)

  • 조철우;박찬희;원재환;왕희정;김영미;박경배;이병기
    • Progress in Medical Physics
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    • v.9 no.3
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    • pp.155-162
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    • 1998
  • Ho-l66 was produced by neutron reaction in a reactor at the Korea Atomic Energy Institute (Taejon, Korea). Ho-l66 emits a high energy beta particles with a maximum energy of 1.85 MeV and small proportion of gamma rays (80 keV). Therefore, the radiation absorbed dose estimation could be based on the in-vivo quantification of the activity in tumors from the gamma camera images. Approximately 1 mCi of Ho-l66 in solution was mixed into the flood phantom and planar scintigraphic images were acquired with and without patient interposed between the phantom and scintillation camera. Transmission factor over an area of interest was calculated from the ratio of counts in selected regions of the two images described above. A dual-head gamma camera(Multispect2, Siemens, Hoffman Estates, IL, USA) equipped with medium energy collimators was utilized for imaging(80 keV${\pm}$10%). Fifty-nine year old female patient with hepatoma was enrolled into the therapeutic protocol after the informed consent obtained. Thirty millicuries(110MBq) of Ho-166-CHICO was injected into the right hepatic arterial branch supplying hepatoma. When the injection was completed, anterior and posterior scintigraphic views of the chest and pelvic regions were obtained for 3 successive days. Regions of interest (ROIs) were drawn over the organs in both the anterior and posterior views. The activity in those ROIs was estimated from geometric mean, calibration factor and transmission factors. Absorbed dose was calculated using the Marinelli formula and Medical Internal Radiation Dose (MIRD) schema. Tumor dose of the patient treated with 1110 MBq(30 mCi) Ho-l66 was calculated to be 179.7 Gy. Dose distribution to normal liver, spleen, lung and bone was 9.1, 10.3, 3.9, 5.0 % of the tumor dose respectively. In conclusion, tumor dose and absorbed dose to surrounding structures were calculated by daily external imaging after the Ho-l66 therapy for hepatoma. In order to limit the thresholding dose to each surrounding organ, absorbed dose calculation provides useful information.

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