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低温电镜技术制备的树脂道细胞的超微结构
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作者 吴鸿 陈月琴 +1 位作者 杨秉耀 martin müller 《中山大学学报(自然科学版)》 CAS CSCD 北大核心 2000年第5期82-86,共5页
应用高压冷冻 冷冻替代技术研究欧洲赤松 (Pinussylvestris)树脂道细胞的超微结构并与传统方法进行比较 ,结果证明高压冷冻 冷冻替代技术不仅可提高树脂道细胞超微结构的保存 ,同时可减少树脂成分的损失 .具体表现为 ,细胞膜光滑平直 ... 应用高压冷冻 冷冻替代技术研究欧洲赤松 (Pinussylvestris)树脂道细胞的超微结构并与传统方法进行比较 ,结果证明高压冷冻 冷冻替代技术不仅可提高树脂道细胞超微结构的保存 ,同时可减少树脂成分的损失 .具体表现为 ,细胞膜光滑平直 ,紧贴细胞壁 ,细胞器饱满 ,细胞质和细胞器基质更加浓厚均匀 ,高尔基体具有明显极性分化 ,潴泡间膜清晰 .树脂道细胞中树脂未形成浓密的黑色嗜锇滴 ,而是以浅灰色绒毛状结构存在 .上述特征表明经高压冷冻 冷冻替代制备的样品 ,其超微结构和组成成分的保存更接近于细胞的自然状态 . 展开更多
关键词 超微结构 植物细胞 低温电镜技术 树脂道细胞
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Addressing materials’microstructure diversity using transfer learning
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作者 Aurèle Goetz Ali Riza Durmaz +4 位作者 martin müller Akhil Thomas Dominik Britz Pierre Kerfriden Chris Eberl 《npj Computational Materials》 SCIE EI CSCD 2022年第1期223-235,共13页
Materials’microstructures are signatures of their alloying composition and processing history.Automated,quantitative analyses of microstructural constituents were lately accomplished through deep learning approaches.... Materials’microstructures are signatures of their alloying composition and processing history.Automated,quantitative analyses of microstructural constituents were lately accomplished through deep learning approaches.However,their shortcomings are poor data efficiency and domain generalizability across data sets,inherently conflicting the expenses associated with annotating data through experts,and extensive materials diversity.To tackle both,we propose to apply a sub-class of transfer learning methods called unsupervised domain adaptation(UDA).UDA addresses the task of finding domain-invariant features when supplied with annotated source data and unannotated target data,such that performance on the latter is optimized.Exemplarily,this study is conducted on a lath-shaped bainite segmentation task in complex phase steel micrographs.Domains to bridge are selected to be different metallographic specimen preparations and distinct imaging modalities.We show that a state-of-the-art UDA approach substantially fosters the transfer between the investigated domains,underlining this technique’s potential to cope with materials variance. 展开更多
关键词 MICROSTRUCTURE ALLOYING BAINITE
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