Implantable image sensors have several biomedical applications due to their miniature size, light weight, and low power consumption achieved through sub-micron standard CMOS (Complementary Metal Oxide Semiconductor) technologies.
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implantable CMOS image sensors
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Implantable CMOS image sensors have biomedical applications including specific cell labeling, neural activity detection, and biomedical imaging.
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The main applications are in specific cell labeling, neural activity detection, and biomedical imaging.
Suitable implantable image sensors for brain neural monitoring should have signal-to-noise ratio above 60 dB, dynamic range near 88 dB, and power consumption below the safety threshold of 4 W/cm^2.
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Based on the results, the suitable implantable image sensors for brain neural monitoring should have high signal to noise ratio of above 60 dB, high dynamic range of near 88 dB and low power consumption than the safety threshold of 4W/cm<sup>2</sup>.
Next-generation implantable CMOS imaging devices should reduce pixel size and power consumption to increase spatial resolution.
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Moreover, it is found out that the next generation of implantable imaging device trend should reduce the pixel size and power consumption of CMOS image sensors to increase spatial resolution of sample images.