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Ellen Kuhl

Professor
Mechanical Engineering
Stanford University
United States of America

Biography

I am a Professor of Mechanical Engineering, Bioengineering (courtesy), and Cardiothoracic Surgery (courtesy). My area of professional expertise is living matter physics, the creation of theoretical and computational models to predict the acute and chronic response of living structures to environmental changes during development and disease progression. My specific interest is the multiscale modeling of growth and remodeling, the study of how living matter adapts its form and function to changes in mechanical loading, and how this adaptation can be traced back to structural alterations on the cellular or molecular levels. Growth and remodeling might be induced naturally, e.g., through elevated pressure, stress, or strain, or interventionally, e.g., through prostheses, stents, tissue grafts, or stem cell injection. Combining theories of applied mathematics, biophysics, and continuum mechanics, my lab has specialized in predicting the evolution of form and function in living structures using patient-specific custom-designed finite element models. These models can serve as diagnostic and predictive tools to explain human brain development and malformations associated with neurological disorders such as lissencephaly, polymicrogyria, schizophrenia, and autism.

Research Interest

My area of professional expertise is living matter physics, the creation of theoretical and computational models to predict the acute and chronic response of living structures to environmental changes during development and disease progression. My specific interest is the multiscale modeling of growth and remodeling, the study of how living matter adapts its form and function to changes in mechanical loading, and how this adaptation can be traced back to structural alterations on the cellular or molecular levels.

Publications

  • van den BH, Kuhl E (2015) Tau-ism: The Yin and Yang of Microtubule Sliding, Detachment, and Rupture BIOPHYSICAL JOURNAL 109: 2215-2217.

  • Baillargeon B, Rebelo N, Fox DD, Taylor RL, Kuhl E (2014) The Living Heart Project: A robust and integrative simulator for human heart function EUROPEAN JOURNAL OF MECHANICS A-SOLIDS 48: 38-47.

  • Budday S, Sommer G, Birkl C, Langkammer C, Kuhl E, et al.(2017) Mechanical characterization of human brain tissue. ACTA BIOMATERIALIA 48: 319-340.

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