RGV
- 网络蛙虹彩病毒;有轨小车;穿梭车;有轨制导车辆;运输小车
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No data are available to support a correlation between RGV and adverse event rates .
目前尚无数据说明RGV与不良事件率之间的联系。
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Applying Teaching and Playback Technology to RGV Positioning in FMS
应用示教再现技术实现柔性制造系统有轨小车的准确定位
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We evaluated whether not measuring RGV affected EN delivery , vomiting , or risk of nosocomial pneumonia .
我们评估了不测量RGV是否会影响EN输注、呕吐或医源性肺炎。
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This study is attempting to explore the functional genes from RGV , and then provide some fundamental knowledge for the control of RGV infection .
本文试图在分子水平对RGV的功能基因进行探索性研究,为病毒的防治提供理论基础。
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Replication of Frog Iridovirus ( RGV ) and the Changes of Cytoskeleton , Ultrastructural Organelles in the Host Cells
蛙虹彩病毒(RGV)的复制与宿主细胞骨架及超微组织变化
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CONCLUSION : Early EN without RGV monitoring in mechanically ventilated patients improves the delivery of enteral feeding and may not increase vomiting or ventilator-associated pneumonia .
结论:机械通气患者接受早期EN不测量RGV可提高肠内喂养输注量,且不增加呕吐或呼吸机相关性肺炎发生率。
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Ultrastructural observations showed that RGV assembles in the viromatrix which is a factory for viral genome replication and particle assembly .
超微观察表明,RGV装配是在胞质内的病毒装配区(viromatrix)中进行的。
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The issue of factory is how can we choose one command from several transport commands in the area to improve transport efficiency since RGV only handles one command at a time .
此工厂的特性是每个区域同一时间会有许多的搬送命令,而RGV一次执行一个搬送命令来完成区域内的搬送工作。
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Hence , we hope to find an appropriate transport strategy to reorder transport commands for RGV in an Area of TFT-LCD Array Fab to increase throughput .
因此,本研究希望针对阵列制程工厂的单一特定区域,导入一适用于RGV特性的搬送策略来选择搬送命令,进而提升区域的产能。
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BACKGROUND : Monitoring of residual gastric volume ( RGV ) to prevent aspiration is standard practice in mechanically ventilated patients receiving early enteral nutrition ( EN ) .
背景:监测残留胃容量(RGV)以预防误吸是机械通气患者早期肠内营养(EN)的常规操作。
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The deduced amino acid sequence of RGV PCNA shows poor identity with eukaryotic PCNA , and has the highest identity of only 18 % with frog ( Xenopus laevis ) PCNA .
氨基酸序列同源搜索显示,RGVPCNA的氨基酸序列和真核生物PCNA的同源性很低,与蛙(XenopusLaevis)PCNA同源性最高仅为18%。
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Our works focused on replication of frog RGV and the changes of cytoskeleton and ultrastructural organelles in the host cells by a series of technique methods , such as electron microscopic observation , immunofluorescent microscopic observation , and flow cytometry .
我们利用电镜技术、免疫学技术、流式细胞技术及分子生物学等技术方法,对RGV的复制与宿主细胞骨架及超微组织变化等进行了研究。
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Moreover , using immunofluorescence assay on RGV-infected FHM cells , it was showed that the PCNA expressed by RGV is exclusively distributed with the viral nuclei at viral assembly sites . Therefore , the result suggests that RGV PCNA might be a viral protein interacting with viral nuclei .
进一步采用免疫荧光细胞化学显示,在病毒感染后的细胞中,RGV表达的PCNA特异性的与病毒装配位点的病毒核酸共定位,表明RGVPCNA可能是一个与病毒核酸相互作用的蛋白。