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Global Cardiology Science & Practice
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April 2, 2014
Three-dimensional structure of the human myosin thick filament: clinical implications
Hind A Al-Khayat
Journal of Structural Biology
|
August 4, 2006
Refined structure of bony fish muscle myosin filaments from low-angle X-ray diffraction data
Hind A Al-Khayat, John M Squire
Journal of Muscle Research and Cell Motility
|
March 8, 2005
Single particle analysis: a new approach to solving the 3D structure of myosin filaments
Hind A Al-Khayat, Edward P Morris, John M Squire
Journal of Structural Biology
|
March 3, 2009
The 7-stranded structure of relaxed scallop muscle myosin filaments: support for a common head configuration in myosin-regulated muscles
Hind A Al-Khayat, Edward P Morris, John M Squire
Journal of Molecular Biology
|
November 10, 2004
A measure for the angle between projections based on the extent of correlation between corresponding central sections
Ardan Patwardhan, Danielle Paul, Hind A Al-Khayat, et al.
Biophysical Journal
|
April 18, 2014
Zebrafish cardiac muscle thick filaments: isolation technique and three-dimensional structure
Maryví González-Solá, Hind A Al-Khayat, Martine Behra, et al.
Advances in Protein Chemistry
|
October 19, 2005
Molecular architecture in muscle contractile assemblies
John M Squire, Hind A Al-Khayat, Carlo Knupp, et al.
Journal of Structural Biology
|
May 30, 2006
3D structure of relaxed fish muscle myosin filaments by single particle analysis
Hind A Al-Khayat, Edward P Morris, Robert W Kensler, et al.
Journal of Applied Crystallography
|
May 23, 2009
The CCP13 FibreFix program suite: semi-automated analysis of diffraction patterns from non-crystalline materials
Ganeshalingam Rajkumar, Hind A Al-Khayat, Felicity Eakins, et al.
Journal of Molecular Biology
|
September 21, 2010
Three-dimensional structure of the M-region (bare zone) of vertebrate striated muscle myosin filaments by single-particle analysis
Hind A Al-Khayat, Robert W Kensler, Edward P Morris, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 16) with videos related to
Sort By:
Page
of 2
Global Cardiology Science & Practice
|
April 2, 2014
Three-dimensional structure of the human myosin thick filament: clinical implications
Hind A Al-Khayat
Journal of Structural Biology
|
August 4, 2006
Refined structure of bony fish muscle myosin filaments from low-angle X-ray diffraction data
Hind A Al-Khayat, John M Squire
Journal of Muscle Research and Cell Motility
|
March 8, 2005
Single particle analysis: a new approach to solving the 3D structure of myosin filaments
Hind A Al-Khayat, Edward P Morris, John M Squire
Journal of Structural Biology
|
March 3, 2009
The 7-stranded structure of relaxed scallop muscle myosin filaments: support for a common head configuration in myosin-regulated muscles
Hind A Al-Khayat, Edward P Morris, John M Squire
Journal of Molecular Biology
|
November 10, 2004
A measure for the angle between projections based on the extent of correlation between corresponding central sections
Ardan Patwardhan, Danielle Paul, Hind A Al-Khayat, et al.
Biophysical Journal
|
April 18, 2014
Zebrafish cardiac muscle thick filaments: isolation technique and three-dimensional structure
Maryví González-Solá, Hind A Al-Khayat, Martine Behra, et al.
Advances in Protein Chemistry
|
October 19, 2005
Molecular architecture in muscle contractile assemblies
John M Squire, Hind A Al-Khayat, Carlo Knupp, et al.
Journal of Structural Biology
|
May 30, 2006
3D structure of relaxed fish muscle myosin filaments by single particle analysis
Hind A Al-Khayat, Edward P Morris, Robert W Kensler, et al.
Journal of Applied Crystallography
|
May 23, 2009
The CCP13 FibreFix program suite: semi-automated analysis of diffraction patterns from non-crystalline materials
Ganeshalingam Rajkumar, Hind A Al-Khayat, Felicity Eakins, et al.
Journal of Molecular Biology
|
September 21, 2010
Three-dimensional structure of the M-region (bare zone) of vertebrate striated muscle myosin filaments by single-particle analysis
Hind A Al-Khayat, Robert W Kensler, Edward P Morris, et al.
Page
of 2