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      Area-Power Efficient VLSI Implementation of Multichannel DWT for Data Compression in Implantable Neuroprosthetics.

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          Abstract

          Time-frequency domain signal processing of neural recordings, from high-density microelectrode arrays implanted in the cortex, is highly desired to ease the bandwidth bottleneck associated with data transfer to extra-cranial processing units. Because of its energy compactness features, discrete wavelet transform (DWT) has been shown to provide efficient data compression for neural records without compromising the information content. This paper describes an area-power minimized hardware implementation of the lifting scheme for multilevel, multichannel DWT with quantized filter coefficients and integer computation. Performance tradeoffs and key design decisions for implantable neuroprosthetics are presented. A 32-channel 4-level version of the circuit has been custom designed in 0.18-mum CMOS and occupies only 0.22 mm(2) area and consumes 76 muW of power, making it highly suitable for implantable neural interface applications requiring wireless data transfer.

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          Author and article information

          Journal
          IEEE Trans Biomed Circuits Syst
          IEEE transactions on biomedical circuits and systems
          Institute of Electrical and Electronics Engineers (IEEE)
          1932-4545
          1932-4545
          Jun 2007
          : 1
          : 2
          Article
          10.1109/TBCAS.2007.907557
          23851667
          9a93e296-f56f-471c-ab3f-474951e03258
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