Thus, we propose a method to quantify the physical and material properties of devices in order to produce the dynamic properties of neurons that are necessary for a specific computational scheme. In the first method the variable retarder was rotated between two polarizers with their transmission axes parallel, and the retardance was calculated from the Fourier series coefficients for each applied voltage. In the optimized geometry, the OECT-based impedance sensor allows to record single cell adhesion and detachment transients, showing a maximum gain of On the Fringe 4. Optical Engineering Plenary Session.
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