Rayleigh instability of the inverted one-cell amphibian embryo.

Abstract:

:The one-cell amphibian embryo is modeled as a rigid spherical shell containing equal volumes of two immiscible fluids with different densities and viscosities and a surface tension between them. The fluids represent denser yolk in the bottom hemisphere and clearer cytoplasm and the germinal vesicle in the top hemisphere. The unstable equilibrium configuration of the inverted system (the heavier fluid on top) depends on the value of the contact angle. The theoretically calculated normal modes of perturbation and the instability of each mode are in agreement with the results from ComFlo computational fluid dynamic simulations of the same system. The two dominant types of modes of perturbation give rise to axisymmetric and asymmetric sloshing of the cytoplasm of the inverted embryos, respectively. This work quantifies our hypothesis that the axisymmetric mode corresponds to failure of development, and the asymmetric sloshing mode corresponds to development proceeding normally, but with reversed pigmentation, for inverted embryos.

journal_name

Phys Biol

journal_title

Physical biology

authors

Nouri C,Luppes R,Veldman AE,Tuszynski JA,Gordon R

doi

10.1088/1478-3975/5/1/015006

subject

Has Abstract

pub_date

2008-04-10 00:00:00

pages

015006

issue

1

eissn

1478-3967

issn

1478-3975

pii

S1478-3975(08)67783-2

journal_volume

5

pub_type

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