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MN系统卫星抗原MiⅢ的相关抗体引起配血不合1例 被引量:5
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作者 梁昭清 庞德 黄伟贞 《中国输血杂志》 CAS CSCD 2001年第3期172-173,共2页
关键词 卫星抗原 MN系统 抗体 配血不合
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红细胞MNS血型系统卫星抗原MiⅢ相关抗体2例 被引量:3
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作者 柯梅贞 徐文皓 李志强 《中国输血杂志》 CAS CSCD 2003年第3期203-204,共2页
1 病例简介 患者1,女,64岁.因急性早幼粒细胞白血病(M3)曾于1998年9月住院进步诱导缓解治疗,且输注红细胞和单采血小板.1999年2月5日又住院予以强化巩固治疗,在第4次输血时,行常规输血前红细胞不规则抗体筛查发现疑有MNS系统抗体;患者2,... 1 病例简介 患者1,女,64岁.因急性早幼粒细胞白血病(M3)曾于1998年9月住院进步诱导缓解治疗,且输注红细胞和单采血小板.1999年2月5日又住院予以强化巩固治疗,在第4次输血时,行常规输血前红细胞不规则抗体筛查发现疑有MNS系统抗体;患者2,女,22岁,未婚. 展开更多
关键词 红细胞血型/MNS 卫星抗原 抗-MUR
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2例无偿献血者抗-mur阳性报道 被引量:2
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作者 李雪群 严凤好 《国际检验医学杂志》 CAS 2015年第10期1478-1479,共2页
M NS血型系统存在许多变异型和卫星抗原,抗原复杂程度仅次于Rh血型系统。M iltenberger血型系统是与 M NS血型系统有关的相对较稀有的血型系统,二者间存在可特异性重叠的低频同种抗原,所识别的位点相互覆盖,相应的血型抗体存在交叉... M NS血型系统存在许多变异型和卫星抗原,抗原复杂程度仅次于Rh血型系统。M iltenberger血型系统是与 M NS血型系统有关的相对较稀有的血型系统,二者间存在可特异性重叠的低频同种抗原,所识别的位点相互覆盖,相应的血型抗体存在交叉反应,很难分离[1]。与欧美人群比相比,亚洲人群发生M iltenberger血型系统的抗原、抗体反应的可能性更高,尤其是中国南方地区人群。M iltenberger血型系统抗原、抗体反应能引起严重的新生儿溶血和溶血性输血反应。M ur抗原是M iltenberger血型系统抗原之一,含有M ur抗原的细胞又称为M iⅢ细胞。本血站在15000例无偿献血者标本连续发现2例抗‐M ur抗体阳性者,现报道如下。 展开更多
关键词 无偿献血者 阳性者 RH血型系统 抗-M 卫星抗原 溶血性输血反应 血型抗体 抗体反应
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Evaluation of Latest TMPA and CMORPH Precipitation Products with Independent Rain Gauge Observation Networks over High-latitude and Low-latitude Basins in China 被引量:11
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作者 JIANG Shanhu REN Liliang +3 位作者 YONG Bin HONG Yang YANG Xiaoli YUAN Fei 《Chinese Geographical Science》 SCIE CSCD 2016年第4期439-455,共17页
The Tropical Rainfall Measuring Mission (TRMM) Multi-satellite Precipitation Analysis (TMPA) and National Oceanic and Atmospheric Administration (NOAA) Climate Prediction Center (CPC) morphing technique (CMO... The Tropical Rainfall Measuring Mission (TRMM) Multi-satellite Precipitation Analysis (TMPA) and National Oceanic and Atmospheric Administration (NOAA) Climate Prediction Center (CPC) morphing technique (CMORPH) are two important multi-satellite precipitation products in TRMM-era and perform important functions in GPM-era. Both TMPA and CMORPH systems simultaneously upgraded their retrieval algorithms and released their latest version of precipitation data in 2013. In this study, the latest TMPA and CMORPH products (i.e., Version-7 real-time TMPA (T-rt) and gauge-adjusted TMPA (T-adj), and Version- 1.0 real-time CMORPH (C-rt) and Version-l.0 gauge-adjusted CMORPH (C-adj)) are evaluated and intercompared by using independent rain gauge observations for a 12-year (2000--2011) period over two typical basins in China with different geographical and climate conditions. Results indicate that all TMPA and CMORPH products tend to overestimate precipitation for the high-latitude semiarid Laoha River Basin and underestimate it for the low-latitude humid Mishui Basin. Overall, the satellite precipitation products exhibit superior performance over Mishui Basin than that over Laoha River Basin. The C-adj presents the best performance over the high-latitude Laoha River Basin, whereas T-adj showed the best performance over the low-latitude Mishui Basin. The two gauge-adjusted products demonstrate potential in water resource management. However, the accuracy of two real-time satellite precipitation products demonstrates large variability in the two validation basins. The C-rt reaches a similar accuracy level with the gauge-adjusted satellite precipitation products in the high-latitude Laoha River Basin, and T-rt performs well in the low-latitude Mishui Basin. The study also reveals that all satellite precipitation products obviously overestimate light rain amounts and events over Laoha River Basin, whereas they underestimate the amount and events over Mishui Basin. The findings of the precision characteristics associated with the latest TMPA and CMORPH precipitation products at different basins will offer satellite pre- cipitation users an enhanced understanding of the applicability of the latest TMPA and CMORPH for water resource management, hydrologic process simulation, and hydrometeorological disaster prediction in other similar regions in China. The findings will also be useful for IMERG algorithm development and update in GPM-era. 展开更多
关键词 satellite precipitation Tropical Rainfall Measuring Mission (TRMM) Multi-satellite Precipitation Analysis (TMPA) Cli-mate Prediction Center morphing technique (CMORPH) precision evaluation
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