Publication | Open Access
High-density CMOS microelectrode array system for impedance spectroscopy and imaging of biological cells
32
Citations
6
References
2016
Year
Unknown Venue
Biological CellsMedical ElectronicsEngineeringMicroscopyAnalytical MicrosystemsMicroelectromechanical SystemsMonolithic Measurement PlatformBiomedical EngineeringIntegrated CircuitsMedical InstrumentationMicro-electromechanical SystemBiosensing SystemsBiomedical DevicesInstrumentationBiophysicsElectrical EngineeringMicroelectronicsBiomedical SensorsPlatinum MicroelectrodesImpedance SensingMicrofabricationBiomedical DiagnosticsBioelectronicsNano Electro Mechanical SystemBiomedical InstrumentationElectrophysiologyElectroanalytical SensorImpedance SpectroscopyMedicine
A monolithic measurement platform was implemented to enable label-free in-vitro electrical impedance spectroscopy measurements of cells on multi-functional CMOS microelectrode array. The array includes 59,760 platinum microelectrodes, densely packed within a 4.5 mm × 2.5 mm sensing region at a pitch of 13.5 μm. The 32 on-chip lock-in amplifiers can be used to measure the impedance of any arbitrarily chosen electrodes on the array by applying a sinusoidal voltage, generated by an on-chip waveform generator with a frequency range from 1 Hz to 1 MHz, and measuring the respective current. Proof-of-concept measurements of impedance sensing and imaging are shown in this paper. Correlations between cell detection through optical microscopy and electrochemical impedance scanning were established.
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