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纳米材料打印技术在植入式无线系统健康监测与诊断中的最新进展。

Recent Advances in Printing Technologies of Nanomaterials for Implantable Wireless Systems in Health Monitoring and Diagnosis.

机构信息

George W. Woodruff School of Mechanical Engineering, Center for Human-Centric Interfaces and Engineering, Georgia Institute of Technology, Atlanta, GA, 30332, USA.

School of Engineering and Computer Science, Washington State University, Vancouver, WA, 98686, USA.

出版信息

Adv Healthc Mater. 2021 Sep;10(17):e2100158. doi: 10.1002/adhm.202100158. Epub 2021 May 21.

Abstract

The development of wireless implantable sensors and integrated systems, enabled by advances in flexible and stretchable electronics technologies, is emerging to advance human health monitoring, diagnosis, and treatment. Progress in material and fabrication strategies allows for implantable electronics for unobtrusive monitoring via seamlessly interfacing with tissues and wirelessly communicating. Combining new nanomaterials and customizable printing processes offers unique possibilities for high-performance implantable electronics. Here, this report summarizes the recent progress and advances in nanomaterials and printing technologies to develop wireless implantable sensors and electronics. Advances in materials and printing processes are reviewed with a focus on challenges in implantable applications. Demonstrations of wireless implantable electronics and advantages based on these technologies are discussed. Lastly, existing challenges and future directions of nanomaterials and printing are described.

摘要

无线植入式传感器和集成系统的发展得益于柔性和可拉伸电子产品技术的进步,正在涌现出来以促进人体健康监测、诊断和治疗。材料和制造策略的进步使得通过与组织无缝接口和无线通信进行无干扰监测的植入式电子设备成为可能。将新型纳米材料与可定制的打印工艺相结合,为高性能植入式电子产品提供了独特的可能性。在这里,本报告总结了开发无线植入式传感器和电子设备的纳米材料和打印技术的最新进展和进步。重点介绍了植入应用中的挑战,对材料和打印工艺的进展进行了回顾。讨论了基于这些技术的无线植入式电子产品的优势。最后,描述了纳米材料和印刷技术现存的挑战和未来的发展方向。

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