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The Journal of General Physiology|November 9, 2019
Lattice arrangement of myosin filaments correlates with fiber type in rat skeletal muscleWeikang Ma, Kyoung Hwan Lee, Shixin Yang, et al.Journal of Visualized Experiments : Jove|August 6, 2019
X-ray Diffraction of Intact Murine Skeletal Muscle as a Tool for Studying the Structural Basis of Muscle DiseaseWeikang Ma, Thomas C IrvingInternational Journal of Molecular Sciences|March 25, 2022
Small Angle X-ray Diffraction as a Tool for Structural Characterization of Muscle DiseaseWeikang Ma, Thomas C IrvingMethods (San Diego, Calif.)|December 14, 2011
Isolation, electron microscopy and 3D reconstruction of invertebrate muscle myofilamentsRoger CraigApplied Microscopy|April 24, 2018
Molecular structure of muscle filaments determined by electron microscopyRoger CraigBiophysical Journal|October 9, 2014
Hugh E. Huxley: the compleat biophysicistSarah E Hitchcock-DeGregori, Thomas C IrvingJournal of Muscle Research and Cell Motility|January 5, 2005
The structure of the vertebrate striated muscle thin filament: a tribute to the contributions of Jean HansonWilliam Lehman, Roger CraigAdvances in Experimental Medicine and Biology|February 13, 2009
Tropomyosin and the steric mechanism of muscle regulationWilliam Lehman, Roger CraigThe Journal of General Physiology|December 10, 2021
Structural basis of the super- and hyper-relaxed states of myosin IIRoger Craig, Raúl PadrónJournal of Applied Crystallography|June 9, 2016
X-ray diffraction from nonuniformly stretched helical moleculesMomcilo Prodanovic, Thomas C Irving, Srboljub M MijailovichPageof 21