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123 peer-reviewed articles • 17,664 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1A new statistical metric for robust target detection in cryo-EM using 2D template matching
IUCrJ, 2025, 12, 155-176
2.011Citations (PDF)
2InstaMap: instant-NGP for cryo-EM density maps2.97Citations (PDF)
3Virion-associated influenza hemagglutinin clusters upon sialic acid binding visualized by cryoelectron tomography5.310Citations (PDF)
4Amortized template matching of molecular conformations from cryoelectron microscopy images using simulation-based inference5.314Citations (PDF)
5In situ high-resolution cryo-EM reconstructions from CEMOVIS
IUCrJ, 2025, 12, 502-510
2.010Citations (PDF)
6CTFFIND5 provides improved insight into quality, tilt, and thickness of TEM samples
ELife, 2024, 13,
1.033Citations (PDF)
7From primordial clocks to circadian oscillators
Nature, 2023, 616, 183-189
31.336Citations (PDF)
8Quantification of gallium cryo-FIB milling damage in biological lamellae5.379Citations (PDF)
9Exploring the Limits of 2D Template Matching for Detecting Targets in Cellular Cryo-EM Images
Microscopy and Microanalysis, 2023, 29, 931-931
0.46Citations (PDF)
10Cryo-TEM simulations of amorphous radiation-sensitive samples using multislice wave propagation
IUCrJ, 2021, 8, 943-953
2.077Citations (PDF)
11Structure and assembly of calcium homeostasis modulator proteins5.988Citations (PDF)
12In situ Structure of Rotavirus VP1 RNA-Dependent RNA Polymerase
Journal of Molecular Biology, 2019, 431, 3124-3138
3.059Citations (PDF)
13High-resolution cryo-EM structures of outbreak strain human norovirus shells reveal size variations5.379Citations (PDF)
14Cryo-EM fibril structures from systemic AA amyloidosis reveal the species complementarity of pathological amyloids11.0144Citations (PDF)
15Analysis of discrete local variability and structural covariance in macromolecular assemblies using Cryo-EM and focused classification
Ultramicroscopy, 2019, 203, 170-180
1.744Citations (PDF)
16In situ structure determination at nanometer resolution using TYGRESS
Nature Methods, 2019, 17, 201-208
13.683Citations (PDF)
17Structural Mechanism of Functional Modulation by Gene Splicing in NMDA Receptors
Neuron, 2018, 98, 521-529.e3
8.678Citations (PDF)
18Physical basis of amyloid fibril polymorphism11.0191Citations (PDF)
19Atomic Resolution Cryo-EM Structure of β-Galactosidase
Structure, 2018, 26, 848-856.e3
2.5143Citations (PDF)
20Severing enzymes amplify microtubule arrays through lattice GTP-tubulin incorporation
Science, 2018, 361,
26.5239Citations (PDF)
21Conformational States of a Soluble, Uncleaved HIV-1 Envelope Trimer2.419Citations (PDF)
22CryoEM Structure of an Influenza Virus Receptor-Binding Site Antibody–Antigen Interface
Journal of Molecular Biology, 2017, 429, 1829-1839
3.029Citations (PDF)
23Ensemble cryo-EM elucidates the mechanism of translation fidelity
Nature, 2017, 546, 113-117
31.3190Citations (PDF)
24Expression, purification, and contaminant detection for structural studies of Ralstonia metallidurance ClC protein rm1
PLoS ONE, 2017, 12, e0180163
1.58Citations (PDF)
25Cryo-EM reveals the steric zipper structure of a light chain-derived amyloid fibril5.367Citations (PDF)
26Activation of NMDA receptors and the mechanism of inhibition by ifenprodil
Nature, 2016, 534, 63-68
31.3235Citations (PDF)
27Evaluation of super-resolution performance of the K2 electron-counting camera using 2D crystals of aquaporin-0
Journal of Structural Biology, 2015, 192, 163-173
1.530Citations (PDF)
28Structure of the L Protein of Vesicular Stomatitis Virus from Electron Cryomicroscopy
Cell, 2015, 162, 314-327
23.8277Citations (PDF)
29Peptide dimer structure in an Aβ(1–42) fibril visualized with cryo-EM5.3220Citations (PDF)
30Automatic estimation and correction of anisotropic magnification distortion in electron microscopes
Journal of Structural Biology, 2015, 192, 204-208
1.5131Citations (PDF)
31CTFFIND4: Fast and accurate defocus estimation from electron micrographs
Journal of Structural Biology, 2015, 192, 216-221
1.55,717Citations (PDF)
32Taura syndrome virus IRES initiates translation by binding its tRNA-mRNA–like structural element in the ribosomal decoding center5.369Citations (PDF)
33Structures of Yeast 80S Ribosome-tRNA Complexes in the Rotated and Nonrotated Conformations
Structure, 2014, 22, 1210-1218
2.5104Citations (PDF)
34Molecular Basis for Age-Dependent Microtubule Acetylation by Tubulin Acetyltransferase
Cell, 2014, 157, 1405-1415
23.8220Citations (PDF)
35Frealix: Model-based refinement of helical filament structures from electron micrographs
Journal of Structural Biology, 2014, 186, 234-244
1.526Citations (PDF)
36Structure of the ribosome with elongation factor G trapped in the pretranslocation state5.3136Citations (PDF)
37Location of the dsRNA-Dependent Polymerase, VP1, in Rotavirus Particles
Journal of Molecular Biology, 2013, 425, 124-132
3.074Citations (PDF)
38Likelihood-based classification of cryo-EM images using FREALIGN
Journal of Structural Biology, 2013, 183, 377-388
1.5271Citations (PDF)
39Quantitative characterization of electron detectors for transmission electron microscopy
Journal of Structural Biology, 2013, 184, 385-393
1.5211Citations (PDF)
40Nucleotide excision repair (NER) machinery recruitment by the transcription-repair coupling factor involves unmasking of a conserved intramolecular interface5.346Citations (PDF)
41Optimal noise reduction in 3D reconstructions of single particles using a volume-normalized filter1.538Citations (PDF)
42Maturation in Action: CryoEM Study of a Viral Capsid Caught during Expansion
Structure, 2012, 20, 1384-1390
2.522Citations (PDF)
43Beam-induced motion of vitrified specimen on holey carbon film
Journal of Structural Biology, 2012, 177, 630-637
1.5417Citations (PDF)
44Movies of Ice-Embedded Particles Enhance Resolution in Electron Cryo-Microscopy
Structure, 2012, 20, 1823-1828
2.5314Citations (PDF)
45Interplay of DNA repair with transcription: from structures to mechanisms7.413Citations (PDF)
46An adaptation of the Wiener filter suitable for analyzing images of isolated single particles1.540Citations (PDF)
47Tilt-Pair Analysis of Images from a Range of Different Specimens in Single-Particle Electron Cryomicroscopy
Journal of Molecular Biology, 2011, 413, 1028-1046
3.0149Citations (PDF)
48Atomic model of an infectious rotavirus particle
EMBO Journal, 2011, 30, 408-416
5.2294Citations (PDF)
49Recent progress in understanding Alzheimer's β-amyloid structures7.4167Citations (PDF)
50Near-atomic resolution reconstructions of icosahedral viruses from electron cryo-microscopy4.8161Citations (PDF)
51Structural Complexity of a Composite Amyloid Fibril12.192Citations (PDF)
52Kryoelektronenmikroskopische Bestimmung der nanoskaligen Flexibiliät von Amyloidfibrillen
Angewandte Chemie, 2010, 122, 1343-1345
0.96Citations (PDF)
53Nanoscale Flexibility Parameters of Alzheimer Amyloid Fibrils Determined by Electron Cryo‐Microscopy11.766Citations (PDF)
54Structure of clathrin coat with bound Hsc70 and auxilin: mechanism of Hsc70-facilitated disassembly
EMBO Journal, 2010, 29, 655-665
5.2124Citations (PDF)
55The Ndc80 kinetochore complex forms oligomeric arrays along microtubules
Nature, 2010, 467, 805-810
31.3326Citations (PDF)
56GPU-enabled FREALIGN: Accelerating single particle 3D reconstruction and refinement in Fourier space on graphics processors
Journal of Structural Biology, 2010, 172, 407-412
1.541Citations (PDF)
57Subunit interactions in bovine papillomavirus5.3140Citations (PDF)
58Molecular interactions in rotavirus assembly and uncoating seen by high-resolution cryo-EM5.3144Citations (PDF)
59Actin filament labels for localizing protein components in large complexes viewed by electron microscopy
Rna, 2009, 15, 244-248
2.513Citations (PDF)
60Aβ(1-40) Fibril Polymorphism Implies Diverse Interaction Patterns in Amyloid Fibrils
Journal of Molecular Biology, 2009, 386, 869-877
3.0301Citations (PDF)
61Pentameric Assembly of Potassium Channel Tetramerization Domain-Containing Protein 5
Journal of Molecular Biology, 2009, 387, 175-191
3.084Citations (PDF)
62Comparison of Alzheimer Aβ(1–40) and Aβ(1–42) amyloid fibrils reveals similar protofilament structures5.3270Citations (PDF)
63Increased sulfate uptake by E. coli overexpressing the SLC26-related SulP protein Rv1739c from Mycobacterium tuberculosis1.446Citations (PDF)
64A dose-rate effect in single-particle electron microscopy1.559Citations (PDF)
65Paired β-sheet structure of an Aβ(1-40) amyloid fibril revealed by electron microscopy5.3207Citations (PDF)
66Near-atomic resolution using electron cryomicroscopy and single-particle reconstruction5.3353Citations (PDF)
67FREALIGN: High-resolution refinement of single particle structures
Journal of Structural Biology, 2007, 157, 117-125
1.5492Citations (PDF)
68SIGNATURE: A single-particle selection system for molecular electron microscopy
Journal of Structural Biology, 2007, 157, 168-173
1.5155Citations (PDF)
69Ab initio resolution measurement for single particle structures
Journal of Structural Biology, 2007, 157, 201-210
1.5107Citations (PDF)
70A maximum likelihood approach to two-dimensional crystals
Journal of Structural Biology, 2007, 160, 362-374
1.537Citations (PDF)
71High-resolution Electron Microscopy of Helical Specimens: A Fresh Look at Tobacco Mosaic Virus
Journal of Molecular Biology, 2007, 371, 812-835
3.0243Citations (PDF)
72Single Particle Reconstructions of the Transferrin–Transferrin Receptor Complex Obtained with Different Specimen Preparation Techniques
Journal of Molecular Biology, 2006, 355, 1048-1065
3.060Citations (PDF)
73The Three-dimensional Arcitecture of the EJC Core
Journal of Molecular Biology, 2006, 360, 743-749
3.032Citations (PDF)
74Quaternary Structure of a Mature Amyloid Fibril from Alzheimer’s Aβ(1-40) Peptide
Journal of Molecular Biology, 2006, 362, 347-354
3.073Citations (PDF)
75Structure determination of clathrin coats to subnanometer resolution by single particle cryo-electron microscopy
Journal of Structural Biology, 2006, 156, 453-460
1.537Citations (PDF)
76Ewald sphere correction for single-particle electron microscopy
Ultramicroscopy, 2006, 106, 376-382
1.780Citations (PDF)
77Ito Channels Are Octomeric Complexes with Four Subunits of Each Kv4.2 and K+ Channel-interacting Protein 2
Journal of Biological Chemistry, 2004, 279, 5549-5554
1.353Citations (PDF)
78Three-dimensional structure of C complex spliceosomes by electron microscopy5.974Citations (PDF)
79Structure of an auxilin-bound clathrin coat and its implications for the mechanism of uncoating
Nature, 2004, 432, 649-653
31.3165Citations (PDF)
80Molecular model for a complete clathrin lattice from electron cryomicroscopy
Nature, 2004, 432, 573-579
31.3508Citations (PDF)
81Noise bias in the refinement of structures derived from single particles
Ultramicroscopy, 2004, 102, 67-84
1.7132Citations (PDF)
82Conformational changes in the Arp2/3 complex leading to actin nucleation5.9165Citations (PDF)
83Electron cryomicroscopy structure of N-ethyl maleimide sensitive factor at 11 A resolution
EMBO Journal, 2003, 22, 4365-4374
5.254Citations (PDF)
84Low-resolution structure refinement in electron microscopy
Journal of Structural Biology, 2003, 144, 144-151
1.549Citations (PDF)
85Visualization of the Domain Structure of an L-type Ca2+ Channel Using Electron Cryo-microscopy
Journal of Molecular Biology, 2003, 332, 171-182
3.0105Citations (PDF)
86Accurate determination of local defocus and specimen tilt in electron microscopy
Journal of Structural Biology, 2003, 142, 334-347
1.51,432Citations (PDF)
87Conformational changes in the C terminus of Shaker K+ channel bound to the rat Kv 2-subunit5.354Citations (PDF)
88A Common Mechanism Underlying Promiscuous Inhibitors from Virtual and High-Throughput Screening
Journal of Medicinal Chemistry, 2002, 45, 1712-1722
4.71,053Citations (PDF)
89Projection structure of a ClC-type chloride channel at 6.5 Å resolution
Nature, 2001, 409, 219-223
31.3123Citations (PDF)
90Three-Dimensional Structure of a Voltage-Gated Potassium Channel at 2.5 nm Resolution
Structure, 2001, 9, 215-220
2.5147Citations (PDF)
91Molecular Machines
Journal of Cell Biology, 2001, 152, F1-F10
3.657Citations (PDF)
92Resolution measurement in structures derived from single particles3.2122Citations (PDF)
93Structure of the respiratory NADH:ubiquinone oxidoreductase (complex I)4.894Citations (PDF)
94Direct visualisation of micelles of Pluronic block copolymers in aqueous solution by cryo-TEM2.198Citations (PDF)
95Clathrin coats at 21Aresolution: a cellular assembly designed to recycle multiple membrane receptors
EMBO Journal, 1998, 17, 4943-4953
5.2141Citations (PDF)
96Three-dimensional structure of bovine NADH:ubiquinone oxidoreductase (complex I) at 22 å in ice
Journal of Molecular Biology, 1998, 277, 1033-1046
3.0338Citations (PDF)
97Electron Crystallography of Two-Dimensional Crystals of Membrane Proteins
Journal of Structural Biology, 1998, 121, 142-161
1.588Citations (PDF)
98Electron-crystallographic Refinement of the Structure of Bacteriorhodopsin
Journal of Molecular Biology, 1996, 259, 393-421
3.0966Citations (PDF)
99Comparison of calculated and observed dynamical diffraction from purple membrane: implications
Ultramicroscopy, 1996, 65, 101-107
1.711Citations (PDF)
100Diffuse scattering in electron diffraction data from protein crystals
Ultramicroscopy, 1995, 60, 295-309
1.712Citations (PDF)
101Lipid Location in Deoxycholate-treated Purple Membrane at 2.6 Å
Journal of Molecular Biology, 1995, 254, 404-415
3.054Citations (PDF)
102Electron microscopy of ultra-thin buried layers in InP and InGaAs0.811Citations (PDF)
103Direct detection pays off for electron cryo-microscopy
ELife, 0, 2,
1.066Citations (PDF)
104Structure and conformational states of the bovine mitochondrial ATP synthase by cryo-EM
ELife, 0, 4,
1.0298Citations (PDF)
105Measuring the optimal exposure for single particle cryo-EM using a 2.6 Å reconstruction of rotavirus VP6
ELife, 0, 4,
1.0950Citations (PDF)
106Ribosome•RelA structures reveal the mechanism of stringent response activation
ELife, 0, 5,
1.0176Citations (PDF)
107Structure of RNA polymerase bound to ribosomal 30S subunit
ELife, 0, 6,
1.098Citations (PDF)
108cisTEM, user-friendly software for single-particle image processing
ELife, 0, 7,
1.0991Citations (PDF)
109Locating macromolecular assemblies in cells by 2D template matching with cisTEM
ELife, 0, 10,
1.0155Citations (PDF)
110Structure of a Holliday junction complex reveals mechanisms governing a highly regulated DNA transaction
ELife, 0, 5,
1.027Citations (PDF)
111Ensemble cryo-EM uncovers inchworm-like translocation of a viral IRES through the ribosome
ELife, 0, 5,
1.0146Citations (PDF)
112Structure of the transporter associated with antigen processing trapped by herpes simplex virus
ELife, 0, 5,
1.0100Citations (PDF)
113Mechanism of ribosome rescue by ArfA and RF2
ELife, 0, 6,
1.054Citations (PDF)
114Single-protein detection in crowded molecular environments in cryo-EM images
ELife, 0, 6,
1.0124Citations (PDF)
115mRNA stem-loops can pause the ribosome by hindering A-site tRNA binding
ELife, 0, 9,
1.068Citations (PDF)
116In situ single particle classification reveals distinct 60S maturation intermediates in cells
ELife, 0, 11,
1.057Citations (PDF)
117Defocus Corrected Large Area Cryo-EM (DeCo-LACE) for label-free detection of molecules across entire cell sections
ELife, 0, 11,
1.029Citations (PDF)
118Baited reconstruction with 2D template matching for high-resolution structure determination in vitro and in vivo without template bias
ELife, 0, 12,
1.015Citations (PDF)
119Baited reconstruction with 2D template matching for high-resolution structure determination in vitro and in vivo without template bias
ELife, 0, 12,
1.028Citations (PDF)
120CTFFIND5 provides improved insight into quality, tilt, and thickness of TEM samples
ELife, 0, 13,
1.05Citations (PDF)
121Unbend, correction of local beam-induced sample motion in cryo-EM images using a 3D spline model
ELife, 0, 14,
1.00Citations (PDF)
122Unbend, correction of local beam-induced sample motion in cryo-EM images using a 3D spline model
ELife, 0, 14,
1.00Citations (PDF)
123In extracto cryo-EM reveals eEF2 as a major hibernation factor on 60S and 80S particles
ELife, 0, 15,
1.00Citations (PDF)