CSU-X1

CSU-X1

Microscope • 37 papers

⭐ Foundational

C. elegans chromosomes connect to centrosomes by anchoring into the spindle network.

Nature communications 2017 📊 133

Abstract The mitotic spindle ensures the faithful segregation of chromosomes. Here we combine the first large-scale serial electron tomography of whole mitotic spindles in early...

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⭐ Foundational

Human telomeres are tethered to the nuclear envelope during postmitotic nuclear assembly.

Cell reports 2012 📊 131

Telomeres are essential for nuclear organization in yeast and during meiosis in mice. Exploring telomere dynamics in living human cells by advanced time-lapse confocal microscopy...

⭐ Foundational

Structural mechanism of the dynein power stroke.

Nature cell biology 2014 📊 136

Dyneins are large microtubule motor proteins required for mitosis, intracellular transport and ciliary and flagellar motility. They generate force through a power-stroke mechanism, which is...

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⭐ Foundational

Cryo-EM structure of the exocyst complex.

Nature structural & molecular biology 2018 📊 141

The exocyst is an evolutionarily conserved octameric protein complex that mediates the tethering of post-Golgi secretory vesicles to the plasma membrane during exocytosis and is...

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⭐ Foundational

Roles of AP-2 in clathrin-mediated endocytosis.

PloS one 2010 📊 160

BACKGROUND: The notion that AP-2 clathrin adaptor is an essential component of an endocytic clathrin coat appears to conflict with recent observations that substantial AP-2...

⭐ Foundational

Lgr5+ cells regenerate hair cells via proliferation and direct transdifferentiation in damaged neonatal mouse utricle.

Nature communications 2015 📊 166

Recruitment of endogenous progenitors is critical during tissue repair. The inner ear utricle requires mechanosensory hair cells (HCs) to detect linear acceleration. After damage, non-mammalian...

⭐ Foundational

Rationalized deep learning super-resolution microscopy for sustained live imaging of rapid subcellular processes.

Nature biotechnology 2023 📊 186

The goal when imaging bioprocesses with optical microscopy is to acquire the most spatiotemporal information with the least invasiveness. Deep neural networks have substantially improved...

Airyscan MicroscopyConfocal Laser Scanning MicroscopyDeconvolution MicroscopyExpansion MicroscopyLattice Light Sheet MicroscopyLight Sheet Fluorescence MicroscopySpinning Disk Confocal MicroscopyStimulated Emission Depletion MicroscopyStructured Illumination MicroscopySuper-Resolution MicroscopyZ-Stack ImagingCSU-X1Leica SP8Leica SP8 ConfocalLeica STED 3X Super-ResolutionLSM 880SP8STED 3XTiYokogawa CSU-X1Yokogawa CSU-X1 Spinning DiskZeiss LSM 880Zeiss LSM 880 ConfocalLAS XMetaMorphNIS-ElementsVolocity AcquisitionZENAlexa Fluor 488Alexa Fluor 555Alexa Fluor 568Alexa Fluor 594Alexa Fluor 647CellMaskDendra2EGFPGFPHoechst 33342MitoTrackerMitoTracker Deep RedMitoTracker RedmNeonGreenmScarletPA-GFPPhalloidinSiR-ActinTMRECell CultureExpansion MicroscopyFixationGlutaraldehydeImmunofluorescenceKnockdownLentiviralLipofectionLive ImagingMonolayerParaformaldehyde FixationPermeabilizationTransductionTransfectionAfrican Green Monkey Kidney COS-7HeLa (Henrietta Lacks)Human Breast Adenocarcinoma MDA-MB-231Human Embryonic Kidney 293THuman Lung Adenocarcinoma A549Human Osteosarcoma U2OSHuman Retinal Pigment Epithelium ARPE-19Induced Pluripotent Stem CellNIH 3T3 Mouse FibroblastPrimary KeratinocytesLeica SP8 ConfocalLeica STED 3X Super-ResolutionYokogawa CSU-X1 Spinning DiskZeiss LSM 880 ConfocalHuygensImageJLAS XMetaMorphNIS-ElementsVolocity AcquisitionZENLabVIEWBeijing Laboratory of Brain and Cognitive IntelligenceBeijing Municipal Education CommissionCASChinese Academy of SciencesHHMIHoward Hughes Medical InstituteJanelia Research CampusNational Laboratory of BiomacromoleculesShanghai Institute of Biochemistry and Cell BiologyState Key Laboratory of Cell BiologyState Key Laboratory of Molecular Developmental BiologyTsinghua UniversityUniversity of Chinese Academy of SciencesAbcamAddgeneBioLegendCell Signaling TechnologyCorningGibcoInvitrogenLife TechnologiesMatTekMerckMilliporePromegaSanta Cruz BiotechnologySigma-AldrichThermo Fisher ScientificDonkeyGoatAndor iXon Ultra 897CCDHamamatsu CCDHamamatsu Orca Flash 4.0sCMOSZeiss Airyscan100x/1.49 NA40x/1.2 NA60x/1.4 NA63x/1.4 NALeica HC PL APO 86x/1.2 NA waterUPlanSAPO 100x/1.4 NA oilUPlanSAPO 60x/1.2 NA water
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⭐ Foundational

Nanoscale imaging of clinical specimens using pathology-optimized expansion microscopy.

Nature biotechnology 2017 📊 203

Expansion microscopy (ExM), a method for improving the resolution of light microscopy by physically expanding a specimen, has not been applied to clinical tissue samples....

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⭐ Foundational

Asymmetric distribution and spatial switching of dynein activity generates ciliary motility.

Science (New York, N.Y.) 2018 📊 212

Switching how to make flagella beat Motile cilia and flagella are hairlike cellular appendages that power the movement of individual cells or liquid across tissues,...

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⭐ Foundational

Yolk sac macrophage progenitors traffic to the embryo during defined stages of development.

Nature communications 2018 📊 248

AbstractTissue macrophages in many adult organs originate from yolk sac (YS) progenitors, which invade the developing embryo and persist by means of local self-renewal. However,...

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