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John E Smith

Showing results (21-30 of 33) with videos related to

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Cardiovascular Research|October 17, 2025
Rbm20 antisense oligonucleotides alleviate diastolic dysfunction in a mouse model of cardiometabolic heart failure (HFpEF)Mei Methawasin, Stefan Meinke, Michael H Radke, et al.
Biophysical Journal|December 20, 2015
Phosphorylating Titin's Cardiac N2B Element by ERK2 or CaMKIIδ Lowers the Single Molecule and Cardiac Muscle ForceJohn Perkin, Rebecca Slater, Giorgia Del Favero, et al.
Circulation Research|April 17, 2025
Reducing Granules Without Splicing Restoration Alleviates RBM20 CardiomyopathyMei Methawasin, Yanghai Zhang, Zachery R Gregorich, et al.
Circulation|March 7, 2014
Experimentally increasing titin compliance in a novel mouse model attenuates the Frank-Starling mechanism but has a beneficial effect on diastoleMei Methawasin, Kirk R Hutchinson, Eun-Jeong Lee, et al.
Science Advances|November 12, 2020
Nebulin and Lmod2 are critical for specifying thin-filament length in skeletal muscleBalázs Kiss, Jochen Gohlke, Paola Tonino, et al.
Circulation|May 28, 2013
Shortening of the elastic tandem immunoglobulin segment of titin leads to diastolic dysfunctionCharles S Chung, Kirk R Hutchinson, Mei Methawasin, et al.
The Journal of General Physiology|March 12, 2026
Titin's P-zone domains A164-167 are essential for thick filament structural arrangementCatherine Hoover Browne, Seong-Won Han, Gerrie P Farman, et al.
Proceedings of the National Academy of Sciences of the United States of America|September 24, 2014
Deleting titin's I-band/A-band junction reveals critical roles for titin in biomechanical sensing and cardiac functionHenk L Granzier, Kirk R Hutchinson, Paola Tonino, et al.
Circulation. Heart Failure|February 11, 2025
Importance of N2BA Titin in Maintaining Cardiac Homeostasis and Its Role in Dilated CardiomyopathyRobbert van der Pijl, Eyad Nusayr, Joshua Strom, et al.
Human Molecular Genetics|July 1, 2015
Nebulin deficiency in adult muscle causes sarcomere defects and muscle-type-dependent changes in trophicity: novel insights in nemaline myopathyFrank Li, Danielle Buck, Josine De Winter, et al.
Pageof 4

Showing results (21-30 of 33) with videos related to

Sort By:
Pageof 4
Cardiovascular Research|October 17, 2025
Rbm20 antisense oligonucleotides alleviate diastolic dysfunction in a mouse model of cardiometabolic heart failure (HFpEF)Mei Methawasin, Stefan Meinke, Michael H Radke, et al.
Biophysical Journal|December 20, 2015
Phosphorylating Titin's Cardiac N2B Element by ERK2 or CaMKIIδ Lowers the Single Molecule and Cardiac Muscle ForceJohn Perkin, Rebecca Slater, Giorgia Del Favero, et al.
Circulation Research|April 17, 2025
Reducing Granules Without Splicing Restoration Alleviates RBM20 CardiomyopathyMei Methawasin, Yanghai Zhang, Zachery R Gregorich, et al.
Circulation|March 7, 2014
Experimentally increasing titin compliance in a novel mouse model attenuates the Frank-Starling mechanism but has a beneficial effect on diastoleMei Methawasin, Kirk R Hutchinson, Eun-Jeong Lee, et al.
Science Advances|November 12, 2020
Nebulin and Lmod2 are critical for specifying thin-filament length in skeletal muscleBalázs Kiss, Jochen Gohlke, Paola Tonino, et al.
Circulation|May 28, 2013
Shortening of the elastic tandem immunoglobulin segment of titin leads to diastolic dysfunctionCharles S Chung, Kirk R Hutchinson, Mei Methawasin, et al.
The Journal of General Physiology|March 12, 2026
Titin's P-zone domains A164-167 are essential for thick filament structural arrangementCatherine Hoover Browne, Seong-Won Han, Gerrie P Farman, et al.
Proceedings of the National Academy of Sciences of the United States of America|September 24, 2014
Deleting titin's I-band/A-band junction reveals critical roles for titin in biomechanical sensing and cardiac functionHenk L Granzier, Kirk R Hutchinson, Paola Tonino, et al.
Circulation. Heart Failure|February 11, 2025
Importance of N2BA Titin in Maintaining Cardiac Homeostasis and Its Role in Dilated CardiomyopathyRobbert van der Pijl, Eyad Nusayr, Joshua Strom, et al.
Human Molecular Genetics|July 1, 2015
Nebulin deficiency in adult muscle causes sarcomere defects and muscle-type-dependent changes in trophicity: novel insights in nemaline myopathyFrank Li, Danielle Buck, Josine De Winter, et al.
Pageof 4