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Super-resolution dipole orientation mapping via polarization demodulation 被引量:13
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作者 Karl Zhanghao Long Chen +7 位作者 Xu-San Yang Miao-Yan Wang Zhen-Li Jing Hong-Bin Han Michael Q Zhang Dayong Jin Jun-Tao Gao Peng Xi 《Light(Science & Applications)》 SCIE EI CAS CSCD 2016年第1期112-119,共8页
Fluorescence polarization microscopy(FPM)aims to detect the dipole orientation of fluorophores and to resolve structural information for labeled organelles via wide-field or confocal microscopy.Conventional FPM often ... Fluorescence polarization microscopy(FPM)aims to detect the dipole orientation of fluorophores and to resolve structural information for labeled organelles via wide-field or confocal microscopy.Conventional FPM often suffers from the presence of a large number of molecules within the diffraction-limited volume,with averaged fluorescence polarization collected from a group of dipoles with different orientations.Here,we apply sparse deconvolution and least-squares estimation to fluorescence polarization modulation data and demonstrate a super-resolution dipole orientation mapping(SDOM)method that resolves the effective dipole orientation from a much smaller number of fluorescent molecules within a sub-diffraction focal area.We further apply this method to resolve structural details in both fixed and live cells.For the first time,we show that different borders of a dendritic spine neck exhibit a heterogeneous distribution of dipole orientation.Furthermore,we illustrate that the dipole is always perpendicular to the direction of actin filaments in mammalian kidney cells and radially distributed in the hourglass structure of the septin protein under specific labelling.The accuracy of the dipole orientation can be further mapped using the orientation uniform factor,which shows the superiority of SDOM compared with its wide-field counterpart as the number of molecules is decreased within the smaller focal area.Using the inherent feature of the orientation dipole,the SDOM technique,with its fast imaging speed(at sub-second scale),can be applied to a broad range of fluorescently labeled biological systems to simultaneously resolve the valuable dipole orientation information with super-resolution imaging. 展开更多
关键词 DIPOLE fluorescence polarization microscopy orientation mapping polarization modulation SUPER-RESOLUTION
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Imaging the crystal orientation of 2D transition metal dichalcogenides using polarization-resolved second-harmonic generation 被引量:2
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作者 George Miltos Maragkakis Sotiris Psilodimitrakopoulos +4 位作者 Leonidas Mouchliadis Ioannis Paradisanos Andreas Lemonis George Kioseoglou Emmanuel Stratakis 《Opto-Electronic Advances》 2019年第11期12-19,共8页
We use laser-scanning nonlinear imaging microscopy in atomically thin transition metal dichalcogenides(TMDs)to reveal information on the crystalline orientation distribution,within the 2D lattice.In particular,we perf... We use laser-scanning nonlinear imaging microscopy in atomically thin transition metal dichalcogenides(TMDs)to reveal information on the crystalline orientation distribution,within the 2D lattice.In particular,we perform polarization-resolved second-harmonic generation(PSHG)imaging in a stationary,raster-scanned chemical vapor deposition(CVD)-grown WS2 flake,in order to obtain with high precision a spatially resolved map of the orientation of its main crystallographic axis(armchair orientation).By fitting the experimental PSHG images of sub-micron resolution into a generalized nonlinear model,we are able to determine the armchair orientation for every pixel of the image of the 2D material,with further improved resolution.This pixel-wise mapping of the armchair orientation of 2D WS2 allows us to distinguish between different domains,reveal fine structure,and estimate the crystal orientation variability,which can be used as a unique crystal quality marker over large areas.The necessity and superiority of a polarization-resolved analysis over intensity-only measurements is experimentally demonstrated,while the advantages of PSHG over other techniques are analysed and discussed. 展开更多
关键词 nonlinear imaging of 2D materials crystal orientation mapping crystal quality marker polarization-resolved second-harmonic generation atomically thin transition metal dichalcogenides graphene-related materials
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Textures of high-strength and low-expansion Fe-Ni alloy wires during cold-drawing processes 被引量:2
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作者 Leng Chen Jian-fu Zhang +1 位作者 Li Zhang Li Meng 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2009年第6期667-671,共5页
Textures of high-strength and low-expansion Fe-Ni alloy wires during cold-drawing processes were investigated using X-ray diffraction (XRD) and electron back scatter diffraction (EBSD) techniques. The experimental... Textures of high-strength and low-expansion Fe-Ni alloy wires during cold-drawing processes were investigated using X-ray diffraction (XRD) and electron back scatter diffraction (EBSD) techniques. The experimental results show that the 〈111〉 and 〈100〉 fibre textures are the main texture components, and crystalline grains in the surface are more fine and uniform than those in the center of Fe-Ni alloy wires during cold-drawing processes. It is found that the volume fraction of the 〈111〉 fibre texture component determined by quantitative regression calculation of the Gaussian distribution function reaches more than 60% and the strong 〈111〉 fibre texture component favors the torsional property of Fe-Ni alloy wires. 展开更多
关键词 Fe-Ni alloy COLD-DRAWING TEXTURE pole figure orientation mapping
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Ultrahigh-resolution nonlinear optical imaging of the armchair orientation in 2D transition metal dichalcogenides 被引量:3
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作者 Sotiris Psilodimitrakopoulos Leonidas Mouchliadis +3 位作者 Ioannis Paradisanos Andreas Lemonis George Kioseoglou Emmanuel Stratakis 《Light(Science & Applications)》 SCIE EI CAS CSCD 2018年第1期1072-1080,共9页
We used nonlinear laser scanning optical microscopy to study atomically thin transition metal dichalcogenides(TMDs)and revealed,with unprecedented resolution,the orientational distribution of armchair directions and t... We used nonlinear laser scanning optical microscopy to study atomically thin transition metal dichalcogenides(TMDs)and revealed,with unprecedented resolution,the orientational distribution of armchair directions and their degree of organization in the two-dimensional(2D)crystal lattice.In particular,we carried out polarization-resolved second-harmonic generation(PSHG)imaging for monolayer WS2 and obtained,with high-precision,the orientation of the main crystallographic axis(armchair orientation)for each individual 120×120 nm^(2) pixel of the 2D crystal area.Such nanoscale resolution was realized by fitting the experimental PSHG images,obtained with sub-micron precision,to a new generalized theoretical model that accounts for the nonlinear optical properties of TMDs.This enabled us to distinguish between different crystallographic domains,locate boundaries and reveal fine structure.As a consequence,we can calculate the mean orientational average of armchair angle distributions in specific regions of interest and define the corresponding standard deviation as a figure-of-merit for the 2D crystal quality. 展开更多
关键词 armchair orientation mapping atomically thin transition metal dichalcogenides crystal quality marker graphene-related materials polarization-resolved second-harmonic generation
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Prior-Free Dependent Motion Segmentation Using Helmholtz-Hodge Decomposition Based Object-Motion Oriented Map 被引量:2
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作者 Cui-Cui Zhang Zhi-Lei Liu 《Journal of Computer Science & Technology》 SCIE EI CSCD 2017年第3期520-535,共16页
Motion segmentation in moving camera videos is a very challenging task because of the motion dependence between the camera and moving objects. Camera motion compensation is recognized as an effective approach. However... Motion segmentation in moving camera videos is a very challenging task because of the motion dependence between the camera and moving objects. Camera motion compensation is recognized as an effective approach. However, existing work depends on prior-knowledge on the camera motion and scene structure for model selection. This is not always available in practice. Moreover, the image plane motion suffers from depth variations, which leads to depth-dependent motion segmentation in 3D scenes. To solve these problems, this paper develops a prior-free dependent motion segmentation algorithm by introducing a modified Helmholtz-Hodge decomposition (HHD) based object-motion oriented map (OOM). By decomposing the image motion (optical flow) into a curl-free and a divergence-free component, all kinds of camera-induced image motions can be represented by these two components in an invariant way. HHD identifies the camera-induced image motion as one segment irrespective of depth variations with the help of OOM. To segment object motions from the scene, we deploy a novel spatio-temporal constrained quadtree labeling. Extensive experimental results on benchmarks demonstrate that our method improves the performance of the state-of-the-art by 10%-20% even over challenging scenes with complex background. 展开更多
关键词 prior-free dependent motion segmentation Helmholtz-Hodge decomposition (HHD) object-motion oriented map (OOM) quadtree labeling
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上海光源微束劳厄技术的发展及其在材料科学研究中的应用 被引量:1
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作者 任晨宇 蒋力 +9 位作者 寇嘉伟 闫帅 李丽 刘孟廷 董晓浩 陈凯 李中亮 李志军 黄晓旭 邰仁忠 《Science China Materials》 SCIE EI CAS CSCD 2021年第9期2348-2358,共11页
同步辐射微束劳厄技术以其超高的晶体取向和晶格应力/应变分辨率而在材料科学研究中显示出重要的应用潜力.本文报道了我国上海光源在微束劳厄技术方面的最新进展.目前已获得40×50μm2的X射线束斑尺寸,在我国(不含台湾省)首次实现... 同步辐射微束劳厄技术以其超高的晶体取向和晶格应力/应变分辨率而在材料科学研究中显示出重要的应用潜力.本文报道了我国上海光源在微束劳厄技术方面的最新进展.目前已获得40×50μm2的X射线束斑尺寸,在我国(不含台湾省)首次实现了白光微束劳厄二维扫描实验,利用我国首套完全独立研发、具有自主知识产权的数据分析软件系统,成功定量研究了镍基高温合金GH3535母材与焊缝区域晶体取向、应变和显微缺陷等微观组织结构特征,并提出了后续线站优化设计方案.在未来工作中,将进一步提高空间分辨率,加入X射线荧光分析与原位测试装置.上海光源微束劳厄射线站将为材料科学研究提供更高的分辨率和更多的测试表征功能与能力. 展开更多
关键词 synchrotron light source micro-Laue diffraction orientation/strain mapping peak profile analysis Ni-based superalloy
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