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一种完全集成的可穿戴超声系统,用于监测运动中的深部组织。

A fully integrated wearable ultrasound system to monitor deep tissues in moving subjects.

机构信息

Department of Nanoengineering, University of California San Diego, La Jolla, CA, USA.

Department of Computer Science Engineering, University of California San Diego, La Jolla, CA, USA.

出版信息

Nat Biotechnol. 2024 Mar;42(3):448-457. doi: 10.1038/s41587-023-01800-0. Epub 2023 May 22.

Abstract

Recent advances in wearable ultrasound technologies have demonstrated the potential for hands-free data acquisition, but technical barriers remain as these probes require wire connections, can lose track of moving targets and create data-interpretation challenges. Here we report a fully integrated autonomous wearable ultrasonic-system-on-patch (USoP). A miniaturized flexible control circuit is designed to interface with an ultrasound transducer array for signal pre-conditioning and wireless data communication. Machine learning is used to track moving tissue targets and assist the data interpretation. We demonstrate that the USoP allows continuous tracking of physiological signals from tissues as deep as 164 mm. On mobile subjects, the USoP can continuously monitor physiological signals, including central blood pressure, heart rate and cardiac output, for as long as 12 h. This result enables continuous autonomous surveillance of deep tissue signals toward the internet-of-medical-things.

摘要

可穿戴式超声技术的最新进展表明,该技术有可能实现免手持数据采集,但仍存在技术障碍,因为这些探头需要有线连接,可能会跟丢移动目标,并造成数据解释方面的挑战。在这里,我们报告了一种完全集成的自主式可穿戴超声系统贴片(USoP)。一个小型化的柔性控制电路被设计用来与超声换能器阵列进行接口,以进行信号预处理和无线数据通信。机器学习被用来跟踪移动的组织目标并协助数据解释。我们证明,USoP 可以从深达 164mm 的组织中连续跟踪生理信号。在移动的实验对象上,USoP 可以连续监测生理信号,包括中心血压、心率和心输出量,最长可达 12 小时。这一结果使我们能够朝着医疗物联网的方向,对深层组织信号进行持续的自主监测。

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