CMOS microelectrode array for the monitoring of electrogenic cells.

نویسندگان

  • F Heer
  • W Franks
  • A Blau
  • S Taschini
  • C Ziegler
  • A Hierlemann
  • H Baltes
چکیده

Signal degradation and an array size dictated by the number of available interconnects are the two main limitations inherent to standalone microelectrode arrays (MEAs). A new biochip consisting of an array of microelectrodes with fully-integrated analog and digital circuitry realized in an industrial CMOS process addresses these issues. The device is capable of on-chip signal filtering for improved signal-to-noise ratio (SNR), on-chip analog and digital conversion, and multiplexing, thereby facilitating simultaneous stimulation and recording of electrogenic cell activity. The designed electrode pitch of 250 microm significantly limits the space available for circuitry: a repeated unit of circuitry associated with each electrode comprises a stimulation buffer and a bandpass filter for readout. The bandpass filter has corner frequencies of 100 Hz and 50 kHz, and a gain of 1000. Stimulation voltages are generated from an 8-bit digital signal and converted to an analog signal at a frequency of 120 kHz. Functionality of the read-out circuitry is demonstrated by the measurement of cardiomyocyte activity. The microelectrode is realized in a shifted design for flexibility and biocompatibility. Several microelectrode materials (platinum, platinum black and titanium nitride) have been electrically characterized. An equivalent circuit model, where each parameter represents a macroscopic physical quantity contributing to the interface impedance, has been successfully fitted to experimental results.

منابع مشابه

Fully integrated 128-electrode CMOS chip for bidirectional interaction with electrogenic cells

A monolithic CMOS microelectrode array (MEA) for stimulation and recording of electrogenic cells is presented. The chip features addressability of an arbitrary electrode subset for stimulation, complete on-chip signal conditioning and A/D conversion. The array has been fabricated using an industrial 0.6-μm, 5-V CMOS technology with a 2-mask post-CMOS processing. Measurements from neuronal and c...

متن کامل

Cmos Neurochip for Stimulation and Recording of Electrogenic Cells

An array of platinum electrodes [Fig. 1] has been integrated in standard CMOS technology that allows each electrode to be simultaneously used for stimulation and recording. The microelectrode array exhibits a shifted-electrode design for improved electrode stability. The system architecture includes A/D converters for each row and a digital control unit that scans the array and provides a digit...

متن کامل

Multi-electrode arrays technology for the non-invasive recording of neural signals: a review article

The recording of electrophysiological activities of brain neurons in the last half-century has been considered as one of the effective tools for the development of neuroscience. One of the techniques for recording the activity of nerve cells is the multi-electrode arrays (MEAs). Microelectrode arrays (MEAs) are usually employed to record electrical signals from electrogenic cells like neurons o...

متن کامل

Alternative Post-Processing on a CMOS Chip to Fabricate a Planar Microelectrode Array

We present an alternative post-processing on a CMOS chip to release a planar microelectrode array (pMEA) integrated with its signal readout circuit, which can be used for monitoring the neuronal activity of vestibular ganglion neurons in newborn Wistar strain rats. This chip is fabricated through a 0.6 μm CMOS standard process and it has 12 pMEA through a 4 × 3 electrodes matrix. The alternativ...

متن کامل

A Miniaturized Cmos Microelectrode Array System for Single Droplet Electrochemistry Applications

This paper presents an individually addressable 32x32 microelectrode array (MEA) system with built-in CMOS potentiostat for analyzing single droplets and ultra-small volume samples. The proposed system has advantages of smaller sample requirement, higher density, small form factor, low power and higher sensitivity and advanced functionality over the conventional electrode array. Each electrode ...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

متن کامل
عنوان ژورنال:
  • Biosensors & bioelectronics

دوره 20 2  شماره 

صفحات  -

تاریخ انتشار 2004