A reversible implantable memristor for health monitoring applications

Conventional implantable electronics based on von Neumann architectures encounter significant limitations in computing and processing vast biological information due to computational bottlenecks. The memristor with integrated memory-computing and low power consumption offer a promising solution to o...

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Veröffentlicht in:Materials today bio 2024-06, Vol.26, p.101096-101096, Article 101096
Hauptverfasser: Cao, Zelin, Xiang, Linbiao, Sun, Bai, Gao, Kaikai, Yu, Jiawei, Zhou, Guangdong, Duan, Xuegang, Yan, Wentao, Lin, Fulai, Li, Zhuoqun, Wang, Ruixin, Lv, Yi, Ren, Fenggang, Yao, Yingmin, Lu, Qiang
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Sprache:eng
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Zusammenfassung:Conventional implantable electronics based on von Neumann architectures encounter significant limitations in computing and processing vast biological information due to computational bottlenecks. The memristor with integrated memory-computing and low power consumption offer a promising solution to overcome the computational bottleneck and Moore's law limitations of traditional silicon-based implantable devices, making them the most promising candidates for next-generation implantable devices. In this work, a highly stable memristor with an Ag/BaTiO3/MnO2/FTO structure was fabricated, demonstrating retention characteristics exceeding 1200 cycles and endurance above 1000 s. The device successfully exhibited three-stage responses to biological signals after implantation in SD (Sprague-Dawley) rats. Importantly, the memristor perform remarkable reversibility, maintaining over 100 cycles of stable repetition even after extraction from the rat. This study provides a new perspective on the biomedical application of memristors, expanding the potential of implantable memristive devices in intelligent medical fields such as health monitoring and auxiliary diagnostics. [Display omitted]
ISSN:2590-0064
2590-0064
DOI:10.1016/j.mtbio.2024.101096