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无线植入式光学探头,用于连续监测皮瓣和器官移植物中的氧饱和度。

Wireless implantable optical probe for continuous monitoring of oxygen saturation in flaps and organ grafts.

机构信息

Department of Materials Science and Engineering, Northwestern University, Evanston, IL, 60208, USA.

Querrey Simpson Institute for Bioelectronics, Northwestern University, Evanston, IL, 60208, USA.

出版信息

Nat Commun. 2022 May 30;13(1):3009. doi: 10.1038/s41467-022-30594-z.

Abstract

Continuous, real-time monitoring of perfusion after microsurgical free tissue transfer or solid organ allotransplantation procedures can facilitate early diagnosis of and intervention for anastomotic thrombosis. Current technologies including Doppler systems, cutaneous O-sensing probes, and fluorine magnetic resonance imaging methods are limited by their intermittent measurements, requirements for skilled personnel, indirect interfaces, and/or their tethered connections. This paper reports a wireless, miniaturized, minimally invasive near-infrared spectroscopic system designed for uninterrupted monitoring of local-tissue oxygenation. A bioresorbable barbed structure anchors the probe stably at implantation sites for a time period matched to the clinical need, with the ability for facile removal afterward. The probe connects to a skin-interfaced electronic module for wireless access to essential physiological parameters, including local tissue oxygenation, pulse oxygenation, and heart rate. In vitro tests and in vivo studies in porcine flap and kidney models demonstrate the ability of the system to continuously measure oxygenation with high accuracy and sensitivity.

摘要

连续实时监测显微外科游离组织移植或实体器官同种异体移植手术后的灌注情况,可以有助于早期诊断和干预吻合口血栓形成。目前的技术包括多普勒系统、皮肤 O 感应探头和氟磁共振成像方法,这些技术受到间歇性测量、对熟练人员的要求、间接接口和/或其有线连接的限制。本文报告了一种无线、微型化、微创近红外光谱系统,该系统专为不间断监测局部组织氧合而设计。一个可生物吸收的带倒刺的结构将探头稳定地固定在植入部位,固定时间与临床需要相匹配,之后可以方便地移除。探头连接到一个与皮肤接口的电子模块,用于无线访问基本生理参数,包括局部组织氧合、脉冲氧合和心率。在猪皮瓣和肾脏模型中的体外测试和体内研究表明,该系统具有高精度和高灵敏度的连续测量氧合能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59c6/9151749/75d40aaec007/41467_2022_30594_Fig1_HTML.jpg

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