Abstract
The bullfrog sacculus contains mechanically sensitive hair cells whose stereociliary bundles oscillate spontaneously when decoupled from the overlying membrane. Steady-state offsets on the resting position of a hair bundle can suppress or modulate this native motility. To probe the dynamics of spontaneous oscillation in the proximity of the critical point, we describe here a method for mechanical actuation that avoids loading the bundles or contributing to the viscous drag. Magnetite beads were attached to the tips of the stereocilia, and a magnetic probe was used to impose deflections. This technique allowed us to observe the transition from multi-mode to single-mode state in freely oscillating bundles, as well as the crossover from the oscillatory to the quiescent state. © 2011 American Institute of Physics.
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CITATION STYLE
Rowland, D., Roongthumskul, Y., Lee, J. H., Cheon, J., & Bozovic, D. (2011). Magnetic actuation of hair cells. Applied Physics Letters, 99(19). https://doi.org/10.1063/1.3659299
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