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Rupture Dynamics and Chromatin Herniation in Deformed Nuclei
Dan Deviri
, Dennis E. Discher
,
Sam A. Safran
Department of Molecular Chemistry and Materials Science
Weizmann Institute of Science
Research output
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Contribution to journal
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Article
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peer-review
Overview
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Dive into the research topics of 'Rupture Dynamics and Chromatin Herniation in Deformed Nuclei'. Together they form a unique fingerprint.
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Keyphrases
Chromatin
100%
Lamin
100%
Herniation
100%
Nuclear Envelope
100%
Rupture Dynamics
100%
Deformed nuclei
100%
Pathological Process
33%
Expression Level
33%
Cancer Metastasis
33%
Cell Death
33%
Viscosity
33%
Induced Strain
33%
Lipid Bilayer
33%
Nuclear Lamina
33%
Viscoelastic Model
33%
Interstitial Space
33%
Internal Fluid
33%
Mechanically Induced
33%
Self-healing Mechanism
33%
Immune Cell Migration
33%
Viscoelastic Gel
33%
Medicine and Dentistry
Hernia
100%
Nuclear Pore
100%
Nuclear Membrane
100%
Lamin
66%
Pathological Process
33%
Metastatic Carcinoma
33%
Immunocompetent Cell
33%
Cell Migration
33%
Cell Death
33%
Lipid Bilayer
33%
Nuclear Lamina
33%
Self-Healing
33%
Veterinary Science and Veterinary Medicine
Hernia
100%
Cancer
50%