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Showing 1 to 7 of 7 for “"Artificial Hair Cell"”.

  1. Development of Active Artificial Hair Cell Sensors

    … that can be detected. In this work, active artificial hair cells (AHC) are proposed and developed which mimic the nonlinear cochlear amplifier. Active AHCs can be used to transduce sound pressures, fluid flow, accelerations, or another form of dynamic input. These nonlinear sensors consist …

    vt Repository record for Development of Active Artificial Hair Cell Sensors (opens in a new tab)

  2. Developing Active Artificial Hair Cell Sensors Inspired by the Cochlear Amplifier

    … work, multi-channel and self-sensing active artificial hair cells (AHCs) made of piezoelectric cantilevers and controlled by a cubic damping feedback controller are developed numerically and experimentally. These novel AHCs function near a Hopf bifurcation and amplify or compress the output …

    vt Repository record for Developing Active Artificial Hair Cell Sensors Inspired by the Cochlear Amplifier (opens in a new tab)

  3. An Open Loop Feed-Forward Control Scheme for Bioinspired Artificial Hair Cell Sensors

    … DC potential across lipid bilayer membranes in artificial hair cell sensors. Inspired by the human cochlea's non-linear gain phenomenon, whereby the cochlea can increase or decrease the effective gain of the auditory system, this controller is the first step in developing more sophisticated …

    vt Repository record for An Open Loop Feed-Forward Control Scheme for Bioinspired Artificial Hair Cell Sensors (opens in a new tab)

  4. Novel Bio-inspired Aquatic Flow Sensors

    Inspired by the roles of hair cells in nature, this study aims to develop and characterize two new sets of novel flow sensors. One set of sensors developed and studied in this work are flow sensors fabricated using carbon nanomaterials. These sensors are made by embedding carbon nanotubes (CNT) and …

    vt Repository record for Novel Bio-inspired Aquatic Flow Sensors (opens in a new tab)

  5. Design, Fabrication, and Validation of Membrane-Based Sensors

    Hair cell structures are one of the most common forms of sensing elements found in nature. In humans, approximately 16,000 auditory hair cells can be found in the cochlea of the ear. Each hair cell contains a stereocilia, which is the primary structure for sound transduction. This study looks to …

    vt Repository record for Design, Fabrication, and Validation of Membrane-Based Sensors (opens in a new tab)

  6. Airflow sensing with arrays of hydrogel supported artificial hair cells

    Arrays of fully hydrogel-supported, artificial hair cell (AHC) sensors based on bilayer membrane mechanotransduction are designed and characterized to determine sensitivity to multiple stimuli. The work draws upon key engineering design principles inspired by the characteristics of biological hair

    vt Repository record for Airflow sensing with arrays of hydrogel supported artificial hair cells (opens in a new tab)

  7. Design and Characterization of Biomimetic Artificial Hair Cells in an Artificial Cochlear Environment

    … and characterization of a new biomimetic artificial inner hair cell sensor in an artificial cochlear environment. Designed to mimic the fluid flows around the inner hair cells of the human cochlea, the artificial cochlear environment produces controlled, linear sinusoidal fluid flows with …

    vt Repository record for Design and Characterization of Biomimetic Artificial Hair Cells in an Artificial Cochlear Environment (opens in a new tab)