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Micropatterns with living cells were rapidly formed on glass substrates using negative dielectrophoretic force induced at a template microarray electrode consisting of assembly of microband electrodes.
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The central electrode consists of several sections, each at a different fixed electric potential.
The electrode consisted of 0.728 mg/cm2 of active material.
The electrode consists of two half cells, a reference electrode (inLab Reference Pro) and the electrode for the Na+-ions.
The working electrode consisted of a 50 μm diameter platinum disc electrode.
Inside the cell, the working electrode consisted of AcPhos SAMMS/carbon paste material.
The electrode consisted of 0.5-mm stainless steel wires used for acupoint (or nonacupoint) stimulation.
The monkeys were implanted with ECoG grid electrodes, consisting of 252 subdural electrodes distributed across several superficial areas (Rubehn et al. 2009; Bosman et al. 2012).
Results showed microarray electrode behavior, greatly improving the signal-to-noise ratio.
Within the whole current density range, the VO2-N microarray electrode yielded high specific capacitances.
The considerably depressed semicircle and low inside resistance suggested rapid ion transport within the VO2-N microarray electrode.
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