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Topic: Elastohydrodynamics

Seminar
2 seminars
Seminar · Biophysics

Coordinated motion of active filaments on spherical surfaces

Eric Keaveny · Imperial College London

Wed, Jul 7, 2021 · 15:00 UTC

Filaments (slender, microscopic elastic bodies) are prevalent in biological and industrial settings. In the biological case, the filaments are often active, in that they are driven internally by motor proteins, with the prime examples being cilia and flagella. For cilia in particular, which can appear in dense arrays, their resulting motions are coupled through the surrounding fluid, as well as through surfaces to which they are attached. In this talk, I present numerical simulations exploring the coordinated motion of active filaments and how it depends on the driving force, density of fil

Seminar · Biophysics

Sperm have got the bends

Meurig Gallagher · University of Birmingham

Wed, Apr 28, 2021 · 15:00 UTC

The journey of development begins with sperm swimming through the female reproductive tract en-route to the egg. In order to successfully complete this journey sperm must beat a single flagellum, propelling themselves through a wide range of fluids, from liquified semen to viscous cervical mucus. It is well-known that the beating tail is driven by an array of 9 microtubule doublets surrounding a central pair, with interconnecting dynein motors generating shear forces and driving elastic wave propagation. Despite this knowledge, the exact mechanism by which coordination of these motors drives

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