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克氏锥虫的超微结构
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作者 徐麟鹤 潘家栋 俞永富 《复旦学报(医学版)》 CAS CSCD 1989年第4期298-300,324,共4页
从感染克氏锥虫的小鼠切取病变心肌组织,同时取培养的锥虫作电镜观察。结果显示:无鞭毛体圆或椭圆形。鞭毛袋内藏鞭毛。无鞭毛体的鞭毛较短,大都藏于袋内。在鞭毛横切面上,周围有9对微管,中央有2根微管。质膜下有排列整齐的膜下微管,约... 从感染克氏锥虫的小鼠切取病变心肌组织,同时取培养的锥虫作电镜观察。结果显示:无鞭毛体圆或椭圆形。鞭毛袋内藏鞭毛。无鞭毛体的鞭毛较短,大都藏于袋内。在鞭毛横切面上,周围有9对微管,中央有2根微管。质膜下有排列整齐的膜下微管,约143根。动基体腊肠状,内腔中含有呈“8”字形紧密排列的DNA纤丝。高尔基复合体呈囊状。在小鼠心肌纤维中,常可见簇状排列的无鞭毛体。锥鞭毛体的动基体在核后方,动基体的DNA由平行而疏松排列的纤丝组成。动基体DNA纤丝在无鞭毛体及锥鞭毛体内形态显著不同。阐明这种形态变化的本质,对揭示动基体功能将起重要作用。 展开更多
关键词 克氏锥虫 无鞭毛体 维鞭毛体 翅微结构 动基体
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仿生超黑涂层的制备与性能表征 被引量:1
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作者 潘磊 李娜 +2 位作者 张大勇 孙运勇 李垚 《科技导报》 CAS CSCD 北大核心 2016年第18期66-69,共4页
对几种国产黑色蝴蝶蝶翅的光学性能和微观结构进行了表征,发现在黑色蝶翅中微结构带来的吸收增强现象普遍存在,分析了蝶翅微结构吸收增强的一般性机理。基于这一机理,采用碳包覆二氧化硅微球吸收剂制备了仿蝶翅结构超黑涂层;经过优化涂... 对几种国产黑色蝴蝶蝶翅的光学性能和微观结构进行了表征,发现在黑色蝶翅中微结构带来的吸收增强现象普遍存在,分析了蝶翅微结构吸收增强的一般性机理。基于这一机理,采用碳包覆二氧化硅微球吸收剂制备了仿蝶翅结构超黑涂层;经过优化涂层配方,其太阳吸收比达到0.9773,明显高于使用类似化学成分配方的传统黑漆。 展开更多
关键词 翅微结构 超黑涂层 仿生
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Beetle wing folding facilitated by micro-protrusions on the body surface: a case of Allomyrina dichotoma
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作者 Zelin Linghu Chenjia Zhao +1 位作者 Heng Yang Xinqian Zheng 《Science Bulletin》 SCIE EI CAS CSCD 2015年第16期1457-1460,共4页
Biological world always provides inspirations for engineering designs, and insects are important targets to mimic. For the Coleoptera, its flight has been emphasized for long. However, the invisible folding procedure ... Biological world always provides inspirations for engineering designs, and insects are important targets to mimic. For the Coleoptera, its flight has been emphasized for long. However, the invisible folding procedure of hind wings, which occurs under the stiff elytra after flight, still remains unknown. In this paper, the wing folding process and the surficial microstructures of elytra, hind wing and abdomen are investigated by video recording and scanning electron microscopy. The results show that there are hooklike protrusions approximately 15 μm in length distributing on the inner side of elytra, and bump-like protrusions on the hind wings. The 'hooks' may anchor the 'bumps' on the main wing to prevent corrugation during folding. The horizontal protrusions observed on the abdomen shape a hairy cuticle, which is conducive to a better wing-abdomen interaction. Thus, the ratcheting mechanism that wing folding facilitated by micro-protrusions on the body surface is revealed. This new finding helps us to further understand the functions of diversely shaped protrusions in the physiology of insects. More importantly, the ratcheting mechanism could serve as a cuticle interaction model and inspire new engineering applications, such as microsystems. 展开更多
关键词 Beetle - Brushing movement Wing folding - Bio-surface Microstructure
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