A Biologically Inspired Sensor Mechanism for Amplification of Tactile Signals Based on Parametric Resonance

Author:

Volkova T.,Zeidis I.,Zimmermann K.

Publisher

Springer International Publishing

Reference29 articles.

1. Andermann M, Moore C (2008) Mechanical resonance enhances the sensitivity of the vibrissa sensory system to near-threshold stimuli. Brain Res 1235:74–81

2. Behn C (2013) Mathematical modeling and control of biologically inspired uncertain motion systems with adaptive features. Habilitation thesis, TU Ilmenau

3. Berg R, Kleinfeld D (2003) Rhythmic whisking by rat: retraction as well as protraction of the vibrissae is under active muscular control. J Neurophysiol 89:104–117

4. Bogolyubov N, Mitropoliskii Y (1961) Asymptotic methods in the theory of nonlinear oscillations. Gordon and Breach Science Publishers, New York

5. Dehnhardt G, Kaminski A (1995) Sensitivity of the mystacial vibrissae of harbour seals (Phoca vitulina) for size differences of actively touched objects. J Exp Biol 198:2317–2323

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