MICROSCOPY

作品数:720被引量:1074H指数:14
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相关作者:刘晓灵梁毅陈杰程晓庆王宪刚更多>>
相关机构:中国科学院武汉大学中国医科大学同济大学附属东方医院更多>>
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相关基金:国家自然科学基金国家重点基础研究发展计划中国博士后科学基金北京市自然科学基金更多>>
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Serological markers for enhanced malaria surveillance from an elimination point of view:A narrative review
《Asian Pacific Journal of Tropical Medicine》2025年第3期102-112,I0001-I0004,共15页Vinita Mamnani Kanika Verma Praveen Kumar Bharti Nitika Nitika 
Malaria continues to pose a significant global health challenge despite a significant achievement in control and elimination in certain areas.Accurate and timely diagnosis is crucial for effective disease management a...
关键词:MICROSCOPY Rapid diagnostic tests Serosurveillance Serological markers Sensitivity SPECIFICITY 
Suppression of Cell Traction Force and Enhanced Force Polarity are Key Factors in Vascular Smooth Muscle Cell Differentiation Induced by Low Serum Culture
《Journal of Biosciences and Medicines》2025年第2期243-255,共13页Kazuaki Nagayama Harunobu Tatsuno 
Vascular smooth muscle cells (VSMCs) in the arterial walls play important roles in regulating vascular contraction and dilation. VSMCs actively remodel the arterial walls and dedifferentiate from the contractile to th...
关键词:Cell Biomechanics MECHANOBIOLOGY PHENOTYPE CYTOSKELETON Traction Force Microscopy 
Carrier Recombination and Diffusion Dynamics in LiBr Passivated CsPbBr_(3) Perovskite Film with Poly(9-vinylcarbazole)Film Underneath
《Chinese Journal of Chemical Physics》2025年第1期17-24,I0006-I0018,I0055,共22页Jianchang Lv Ao Liu Yan Wan 
supported by the National Natural Science Foundation of China(No.22273006)。
The performance of cesium lead halide per-ovskite devices is seriously affected by grain boundaries and other charge traps in the poly-crystalline perovskite thin films.LiBr doping could effectively passivate defects ...
关键词:PEROVSKITE Carrier diffusion Transient absorption microscopy 
Quantitative evaluation of intensity fidelity of superresolution reconstruction for structured illumination microscopy
《Journal of Innovative Optical Health Sciences》2025年第1期153-163,共11页Yujun Tang Linbo Wang Gang Wen Hui Li 
supported by the National Natural Science Foundation of China[Grant Nos.62205367 and 62141506];Suzhou Basic Research Pilot Project[Grant Nos.SSD2023006 and SJC2021013];Jiangsu Provincial Key Research and Development Program[Grant No.BE2020664].
Super-resolution structured illumination microscopy(SR-SIM)relies heavily on post-processing reconstruction to obtain high-quality SR images from raw data.Although many SIM reconstruction algorithms have been develope...
关键词:Structured illumination microscopy super-resolution image reconstruction intensity fidelity spectrum optimization 
Random Illumination Microscopy:faster,thicker,and aberration-insensitive
《Light(Science & Applications)》2025年第1期15-17,共3页Boya Jin Peng Xi 
The Extended Depth of Field(EDF)approach has been combined with Random Illumination Microscopy(RIM)to realize aberration-insensitive,fast super-resolution imaging with extended depth,which is a promising tool for dyna...
关键词:THICK FASTER insensitive 
Dark-vacuole Bodies Studying by High-resolution Label-free Microscopy Assisted with Fluorescence Technology
《Chemical Research in Chinese Universities》2024年第6期978-986,共9页LIU Xiangyu ZHANG Jinrui XU Haijiao SHAO Lina WANG Hongda 
supported by the Scientific Instrument Developing Project of the Chinese Academy of Sciences(No.ZDKYYQ20220005);the National Natural Science Foundation of China(Nos.22150003,21727816,and 21721003).
The intracellular logistics system,consisting of vesicles,plays a crucial role in cellular transport.However,there is a lack of research on the types and functions of intracellular vesicles,and new technologies are ne...
关键词:Dark-vacuole body Subcellular Organelle LABEL-FREE Fourier ptychographic microscopy(FPM) Living cell imaging 
Brillouin microscopy monitors rapid responses in subcellular compartments
《PhotoniX》2024年第1期569-586,共18页Zachary N.Coker Maria Troyanova-Wood Zachary A.Steelman Bennett L.Ibey Joel N.Bixler Marlan O.Scully Vladislav V.Yakovlev 
received partial funding from the Air Force Office of Scientific Research(AFOSR)Award No.FA9550-20-1-0366;Office of Naval Research Award No.N00014-20-1-2184;Robert A.Welch Foundation Grant No.A-1261;received partial funding from the Air Force Office of Scientific Research(AFOSR)(FA9550-20-1-0366,FA9550-20-1-0367,FA9550-23-1-0599);the National Institutes of Health(NIH)(1R01GM127696,1R21GM142107,and 1R21CA269099);supported by the NASA,BARDA,NIH,and USFDA,under Contract/Agreement No.80ARC023CA002;support from the Consortium Research Fellows Program;performed under United States Air Force Contract No.FA8650-19-C-6024;received funding from AFOSR(17RHCOR483 and 20RHCOR051).
Measurements and imaging of the mechanical response of biological cells are critical for understanding the mechanisms of many diseases,and for fundamental studies of energy,signal and force transduction.The recent eme...
关键词:MICROSCOPY IMAGING Brillouin scattering Raman scattering FLUORESCENCE 
Extended-depth of field random illumination microscopy,EDF-RIM,provides super-resolved projective imaging
《Light(Science & Applications)》2024年第12期3052-3063,共12页Lorry Mazzella Thomas Mangeat Guillaume Giroussens Benoit Rogez Hao Li Justine Creff Mehdi Saadaoui Carla Martins Ronan Bouzignac Simon Labouesse Jérome Idier Frédéric Galland Marc Allain Anne Sentenac Loïc LeGoff 
support and fruitful discussions on the project.Figure S3A was created with BioRender.com;funded by the following agencies:Agence Nationale de la Recherche(ANR-18-CE13-028,ANR-20-CE45-0024,ANR-22-CE13-0039,ANR-22-CE42-0010,ANR-22-CE42-0026);Institut Carnot star(3D-RIM);funded by the《France 2030》investment plan managed by the French National Research Agency(ANR-16-CONV-0001,ANR-21-ESRE-0002);from Excellence Initiative of Aix-Marseille University-A*MIDEX.
The ultimate aim of fluorescence microscopy is to achieve high-resolution imaging of increasingly larger biological samples.Extended depth of field presents a potential solution to accelerate imaging of large samples ...
关键词:ILLUMINATION PROJECTIVE RESOLVED 
Cross-modality transformations in biological microscopy enabled by deep learning
《Advanced Photonics》2024年第6期13-33,共21页Dana Hassan Jesús Domínguez Benjamin Midtvedt Henrik Klein Moberg Jesús Pineda Christoph Langhammer Giovanni Volpe Antoni Homs Corber Caroline B.Adiels 
support from the MSCA-ITN-ETN project ActiveMatter sponsored by the European Commission(Horizon 2020,Project No.812780);support from the ERC-CoG project MAPEI sponsored by the European Commission(Horizon 2020,Project No.101001267);from the Knut and AliceWallenberg Foundation(Grant No.2019.0079);aroline Beck Adiels and Giovanni Volpe acknowledge the Swedish Foundation for Strategic Research(Grant No.ITM17-0384).
Recent advancements in deep learning(DL)have propelled the virtual transformation of microscopy images across optical modalities,enabling unprecedented multimodal imaging analysis hitherto impossible.Despite these str...
关键词:cross-modality transformations virtual staining SUPERRESOLUTION deep learning fluorescence bright-field phase contrast 
Self-supervised denoising for multimodal structured illumination microscopy enables long-term super-resolution live-cell imaging
《PhotoniX》2024年第1期654-675,共22页Xingye Chen Chang Qiao Tao Jiang Jiahao Liu Quan Meng Yunmin Zeng Haoyu Chen Hui Qiao Dong Li Jiamin Wu 
supported by the National Natural Science Foundation of China(31827802,32125024,62071271,62088102,and 62222508);Shuimu Tsinghua Scholar Program(2021SM039,2022SM035);China Postdoctoral Science Foundation(BX2021159,2022M721842);Beijing Natural Science Foundation(JQ21012);the Tencent Foundation through the XPLORER PRIZE;the Youth Innovation Promotion Association of the Chinese Academy of Sciences(2020094);the New Cornerstone Science Foundation.
Detection noise significantly degrades the quality of structured illumination microscopy(SIM)images,especially under low-light conditions.Although supervised learning based denoising methods have shown prominent advan...
关键词:Super-resolution microscopy Structured illumination microscopy Deep learning Self-supervised learning Live-cell imaging 
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