An Ultrasonically-Powered System for 1.06 mm3 Implantable Optogenetics and Drug Delivery Dust

This brief presents an ultrasonically powered micro-system for deep tissue optogenetic stimulation. The developed system is composed of a Base for Powering and Controlling (BPC) and an implantable Dust for optogenetics and drug delivery. The Dust consists of a piezoelectric crystal, a rectifier chip...

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Veröffentlicht in:IEEE transactions on circuits and systems. II, Express briefs Express briefs, 2023-10, Vol.70 (10), p.3937
Hauptverfasser: Laursen, Kjeld, Zamani, Milad, Rezaeiyan, Yasser, Hosseini, Seyedsina, Mondal, Tanmay, Corbett, Brian, Ouagazzal, Abdel Mouttalib, Amalric, Marianne, Moradi, Farshad
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Sprache:eng
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Zusammenfassung:This brief presents an ultrasonically powered micro-system for deep tissue optogenetic stimulation. The developed system is composed of a Base for Powering and Controlling (BPC) and an implantable Dust for optogenetics and drug delivery. The Dust consists of a piezoelectric crystal, a rectifier chip, and a micro-scale custom-designed light-emitting-diode [Formula Omitted]LED) integrated, miniaturized, and envisioned to be used for freely moving animal studies. The proposed Dust operates in frequencies up to 5 MHz, power levels in the 0–10 mW range, achieves start-up within [Formula Omitted] at 2.9 MHz operating frequency at 14.4 mW/mm2 ultrasound power density, and 98.1% chip efficiency at 2 mW input power. With the BPC implemented and attached to ([Formula Omitted])3 PZT4 crystals, set to 60 V at 2.8 MHz operating frequency at 3 mm distance in demineralized water, the dust delivered up to 6 mW to its load [Formula Omitted]LED for optogenetics), which translates to 0.11% total system efficiency.
ISSN:1549-7747
1558-3791
DOI:10.1109/TCSII.2023.3289028