국내 자연 방사선 고준위 지역(청원군, 보은군) 사육 돼지의 림프구 미소핵 발생 평가

Cytogenetic and hematological analysis was performed in peripheral blood obtained from pigs bred in the high background radiation areas (HBRA) (Cheongwon-gun and Boeun-gun) and a control area. The frequencies of gamma-ray induced micronuclei (MN) in the cytokinesis-blocked (CB) lymphocytes at severa...

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Veröffentlicht in:Taehan Suŭi Hakhoe chi 2005, Vol.45 (4), p.469-475
Hauptverfasser: 이해준, 김창모, 김세라, 이진희, 김중선, 김종춘, 김일화, 김태환, 류시윤, 조성기, 최수용, 김성호, Lee, Hae-June, Kang, Chang-Mo, Kim, Se-Ra, Lee, Jin-Hee, Kim, Joong-Sun, Kim, Jong-Choon, Kim, Ill-Hwa, Kim, Tae-Hwan, Ryu, Si-Yun, Jo, Sung-Kee, Choi, Soo-Yong, Kim, Sung-Ho
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Sprache:kor
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Zusammenfassung:Cytogenetic and hematological analysis was performed in peripheral blood obtained from pigs bred in the high background radiation areas (HBRA) (Cheongwon-gun and Boeun-gun) and a control area. The frequencies of gamma-ray induced micronuclei (MN) in the cytokinesis-blocked (CB) lymphocytes at several doses were measured in three pigs. An estimated dose of radiation was calculated by a best fitting linear-quadratic model based on the radiation-induced MN formation from the swine lymphocytes exposed in vitro to radiation over the range from 0 mGy to 1,969 mGy. The measurements performed after irradiation showed dose-related increases in the MN frequency in each donors. The results were analyzed using a linear-quadratic model with a line of best fit of $y=0.0005404D^2+0.04237D+0.00833$ [y = number of MN/cytokinesis-blocked (CB) cells and D = irradiation dose in Gy]. MN rates per 1,000 CB lymphocytes of pig from the HBRA (Cheongwon-gun, Boeun-gun) and the control area were $6.70{\pm}2.36$, $9.00{\pm}3.50$ and $11.00{\pm}2.98$, respectively. The MN frequencies of CB lymphocytes from pigs bred in three areas means that the values are within the background variation in this experiment. The MN frequencies and hematological values were similar regardless of whether the pigs were bred in the HBRA or the control area.
ISSN:1225-0198
2234-134X