STED相关论文
光学显微镜是现代医学、分子学等众多生物应用中不可或缺的成像仪器。但光的衍射效应限制了普通共聚焦显微镜的分辨率在可见光范围......
To generate hundreds of basal bodies for multiciliation, several types of terminally-differentiated epithelial cells und......
Organic nanoparticles with ultrahigh stimulated emission depletion efficiency for low-power STED nan
Stimulated emission depletion(STED)nanoscopy with a high lateral spatial resolution(< 50 nm)has provided a powerful sub-......
Inorganic quantum dots (QDs) have excellent optical properties, such as high fluorescence intensity, excellent photostab......
A fiber-based source that can be exploited in a stimulated emission depletion (STED) inspired nanolithography setup is p......
A fiber-based source that can be exploited in a stimulated emission depletion[STED]inspired nanolithography setup is pre......
聚甲氧基二烷基醚(RO(CH_2O)_nR)具有高的十六烷值(CN)和含氧量,能显著改善柴油的燃烧特性,有效提高热效率,大幅减少碳烟和NO_x排......
随着计算机图形处理技术和互联网的飞速发展,三维静态模型及动态几何模型的应用和传播变得越来越便捷。与此同时,三维模型的非法传......
受激辐射损耗显微术(Stimulated emission depletion microscope,STED)是一种远场超分辨成像技术,能够在生物学,材料学等学科中为......
生物单分子研究是分子生物学向更深层次发展的自然趋势。从上世纪末开始,由于研究单分子技术的不断发展,这一领域已取得了许多重要成......
A versatile and inexpensive super-resolution fluorescent microscope that functions as easily as a conventional confocal ......
光学显微成像具有非接触、无损伤等优点,是长期以来生物医学领域研究的重要工具。因为光学衍射极限的存在,光学显微镜的分辨率极限......
光学显微镜的产生和进步一直促进着生物学和医学的发展,曾受200nm的光学衍射极限限制,无法观察尺寸更小更细微的结构,目前通过技术......
在生命科学领域,人们常常需要在细胞内精确定位特定的蛋白质以研究其位置与功能的关系.多年来,宽场/共聚焦荧光显微镜的分辨率受限......