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荧光微丝在低速风洞试验中应用的关键技术研究 被引量:3
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作者 惠增宏 侯金玉 邓磊 《实验流体力学》 CAS CSCD 北大核心 2015年第1期92-96,共5页
荧光微丝法是将含有荧光物质的直径极小的丝线粘贴布置于模型表面,在紫外线照射下呈现出明显的荧光效果,以此来显示模型表面流场的试验方法,能减小丝线对流场的干扰进而更加真实地反映流场特征。基于在西北工业大学NF-3低速风洞中进行... 荧光微丝法是将含有荧光物质的直径极小的丝线粘贴布置于模型表面,在紫外线照射下呈现出明显的荧光效果,以此来显示模型表面流场的试验方法,能减小丝线对流场的干扰进而更加真实地反映流场特征。基于在西北工业大学NF-3低速风洞中进行的某大型民机增升装置风洞试验,完成了低速风洞中使用荧光微丝法进行表面流动显示的关键技术研究,包括荧光微丝的制成及粘贴方式、光源的选择及拍摄技术等。模型机翼上表面丝线在不同迎角下的流谱清晰直观、区别明显、易于判读,可较为精细地反映流经翼面的气流状态和范围,并可清晰反映表面流谱随模型姿态角的连续变化情况。同一工况下与荧光油流流谱相一致,说明可较准确地显示流场。与测力试验结果的对比可以看出,荧光微丝流谱结果与测力结果相对应,可以更好地用于流场分析。 展开更多
关键词 荧光微丝 流场 增升装置 低速风洞 流动显示
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F-Actin Visualization in Generative and Sperm Cells of Living Pollen of Rice Using a GFP-Mouse Talin Fusion Protein
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作者 徐是雄 叶秀麟 +2 位作者 王凌健 丘志平 叶永健 《Acta Botanica Sinica》 CSCD 2003年第8期949-958,共10页
Green fluorescent protein (GFP) fused to the F-actin binding domain of mouse talin labels the actin cytoskeleton in the living generative and sperm cells of a third generation transgenic rice (Oryza sativa L.) plant, ... Green fluorescent protein (GFP) fused to the F-actin binding domain of mouse talin labels the actin cytoskeleton in the living generative and sperm cells of a third generation transgenic rice (Oryza sativa L.) plant, A005-G-T-1-2. Observations were made on pollen at four major developmental stages, viz. I. uni-nucleate microspore stage; II. early bi-cellular pollen stage; III. late bi-cellular pollen stage; and IV. tri-cellular pollen stage. At each of these developmental stages vegetative nucleus, generative nucleus/ cell, and sperm cells were seen undergoing continuous and coordinated motion and migration. These movements seemed to be influenced by associated microfilament networks existing in the pollen. Based on these observations we propose that it is the interaction between the microfilament networks (usually one existing in the central cytoplasm and another in the cortex) that controls the dynamic movement of the vegetative nucleus, generative nucleus/cell and sperm cells. Furthermore, we have also observed that there is an array of microfilaments (oriented mostly parallel to the long axis of the cell) existing in the generative and sperm cells. As far as we are aware, this is the first report showing the existence of microfilaments in living generative and sperm cells of rice pollen. The implication and significance of the existence of microfilaments in generative and sperm cells in rendering self-propelled motion of these cells in relation to their passage and movement in the pollen tube and embryo sac for fertilization were discussed. 展开更多
关键词 Oryza sativa living pollen green fluorescent protein (GFP) actin microfilament generative cell sperm cells
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Actin Visualization in Living Immature Pollen of Rice Using a GFP-Mouse Talin Fusion Protein
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作者 徐是雄 王凌健 +2 位作者 丘志平 叶永健 余旭红 《Acta Botanica Sinica》 CSCD 2002年第6期642-648,共7页
Green fluorescent protein (GFP) fused to the F_actin binding domain of mouse talin labels the actin cytoskeleton in the immature pollen of stable transformed rice (Oryza sativa L.) plants. Actin microfilaments could b... Green fluorescent protein (GFP) fused to the F_actin binding domain of mouse talin labels the actin cytoskeleton in the immature pollen of stable transformed rice (Oryza sativa L.) plants. Actin microfilaments could be visualized only in the late_developmental stage of the immature pollen. During this developmental stage, microfilaments, initially composed of very short fibrils, develop into a very complex and novel network that sometimes totally and sometimes partially encloses the vegetative nucleus and the spherical shaped generative cell in the central cytoplasm of the immature pollen. The behavior of the actin microfilamentous structure throughout the late_developmental stage of the immature pollen is extremely dynamic, and the likelihood of this structure in generating forces for vegetative nucleus and generative cell movement in the immature pollen has been discussed. No actin filaments were visualized in the spherical generative cells. 展开更多
关键词 Oryza sativa POLLEN green fluorescent protein (GFP) mouse talin ACTIN MICROFILAMENT
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