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Eri Motoyama

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Scientific Reports|April 27, 2026
Structural and transcriptomic alterations underlying the progression of aortic dissection in Fbn1<sup>G234D/G234D</sup> miceMd Al Amin Sheikh, Kenichi Kimura, Eri Motoyama, et al.
Matrix Biology : Journal of the International Society for Matrix Biology|November 30, 2024
Fibrillin-1 G234D mutation in the hybrid1 domain causes tight skin associated with dysregulated elastogenesis and increased collagen cross-linking in miceAsm Sakhawat Hossain, Maria Thea Rane Dela Cruz Clarin, Kenichi Kimura, et al.
Circulation Research|May 14, 2025
Novel Aortic Dissection Model Links Endothelial Dysfunction and Immune InfiltrationKenichi Kimura, Eri Motoyama, Sachiko Kanki, et al.
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Showing results (1-10 of 3) with videos related to

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Pageof 1
Scientific Reports|April 27, 2026
Structural and transcriptomic alterations underlying the progression of aortic dissection in Fbn1<sup>G234D/G234D</sup> miceMd Al Amin Sheikh, Kenichi Kimura, Eri Motoyama, et al.
Matrix Biology : Journal of the International Society for Matrix Biology|November 30, 2024
Fibrillin-1 G234D mutation in the hybrid1 domain causes tight skin associated with dysregulated elastogenesis and increased collagen cross-linking in miceAsm Sakhawat Hossain, Maria Thea Rane Dela Cruz Clarin, Kenichi Kimura, et al.
Circulation Research|May 14, 2025
Novel Aortic Dissection Model Links Endothelial Dysfunction and Immune InfiltrationKenichi Kimura, Eri Motoyama, Sachiko Kanki, et al.
Pageof 1