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October 16, 2009Physical Review Letters238 citations

Noise and Synchronization in Pairs of Beating Eukaryotic Flagella

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RGRaymond E. GoldsteinMPMarco PolinITIdán Tuval

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Abstract

It has long been conjectured that hydrodynamic interactions between beating eukaryotic flagella underlie their ubiquitous forms of synchronization; yet there has been no experimental test of this connection. The biflagellate alga Chlamydomonas is a simple model for such studies, as its two flagella are representative of those most commonly found in eukaryotes. Using micromanipulation and high-speed imaging, we show that the flagella of a C. reinhardtii cell present periods of synchronization interrupted by phase slips. The dynamics of slips and the statistics of phase-locked intervals are consistent with a low-dimensional stochastic model of hydrodynamically coupled oscillators, with a noise amplitude set by the intrinsic fluctuations of single flagellar beats.

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Cite This Study

Goldstein et al. (2009) studied this question.

synapsesocial.com/papers/6a165a1f86504b844dd97269https://doi.org/10.1103/physrevlett.103.168103
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