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可生物吸收的无线无源传感器作为监测局部体温的临时植入物。

Bioresorbable, Wireless, Passive Sensors as Temporary Implants for Monitoring Regional Body Temperature.

作者信息

Lu Di, Yan Ying, Avila Raudel, Kandela Irawati, Stepien Iwona, Seo Min-Ho, Bai Wubin, Yang Quansan, Li Chenhang, Haney Chad R, Waters Emily A, MacEwan Matthew R, Huang Yonggang, Ray Wilson Z, Rogers John A

机构信息

Center for Bio-Integrated Electronics, Northwestern University, Evanston, IL, 60208, USA.

Department of Neurological Surgery, Washington University School of Medicine, St Louis, MO, 63110, USA.

出版信息

Adv Healthc Mater. 2020 Aug;9(16):e2000942. doi: 10.1002/adhm.202000942. Epub 2020 Jun 29.

Abstract

Measurements of regional internal body temperatures can yield important information in the diagnosis of immune response-related anomalies, for precisely managing the effects of hyperthermia and hypothermia therapies and monitoring other transient body processes such as those associated with wound healing. Current approaches rely on permanent implants that require extraction surgeries after the measurements are no longer needed. Emerging classes of bioresorbable sensors eliminate the requirements for extraction, but their use of percutaneous wires for data acquisition leads to risks for infection at the suture site. As an alternative, a battery-free, wireless implantable device is reported here, which is constructed entirely with bioresorbable materials for monitoring regional internal body temperatures over clinically relevant timeframes. Ultimately, these devices disappear completely in the body through natural processes. In vivo demonstrations indicate stable operation as subcutaneous and intracranial implants in rat models for up to 4 days. Potential applications include monitoring of healing cascades associated with surgical wounds, recovery processes following internal injuries, and the progression of thermal therapies for various conditions.

摘要

测量区域体内温度可为免疫反应相关异常的诊断提供重要信息,有助于精确控制热疗和低温疗法的效果,并监测其他短暂的身体过程,如与伤口愈合相关的过程。目前的方法依赖于永久性植入物,在测量不再需要后需要进行取出手术。新兴的可生物吸收传感器类别消除了取出的要求,但其使用经皮导线进行数据采集会导致缝合部位感染的风险。作为一种替代方案,本文报道了一种无电池、可无线植入的设备,该设备完全由可生物吸收材料构建,用于在临床相关时间范围内监测区域体内温度。最终,这些设备通过自然过程在体内完全消失。体内演示表明,作为大鼠模型中的皮下和颅内植入物,该设备可稳定运行长达4天。潜在应用包括监测与手术伤口相关的愈合过程、内伤后的恢复过程以及各种病症热疗的进展情况。

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