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用于关节内压力传感的基于非吸湿性离子凝胶的湿度不敏感离子电子传感器阵列。

Non-hygroscopic ionogel-based humidity-insensitive iontronic sensor arrays for intra-articular pressure sensing.

作者信息

Shi Junli, Xie Sai, Liu Zhiguang, Cai Minkun, Guo Chuan Fei

机构信息

Department of Materials Science and Engineering, Southern University of Science and Technology, Shenzhen 518055, China.

Guangdong Provincial Key Laboratory of Functional Oxide Materials and Devices, Southern University of Science and Technology, Shenzhen 518055, China.

出版信息

Natl Sci Rev. 2024 Oct 3;11(11):nwae351. doi: 10.1093/nsr/nwae351. eCollection 2024 Nov.

Abstract

Implanted pressure sensors can provide pressure information to assess localized health conditions of specific tissues or organs, such as the intra-articular pressure within knee joints. However, the prerequisites for implanted sensors pose greater challenges than those for wearables or for robots: aside from biocompatibility and tissue-like softness, they must also exhibit humidity insensitivity and high-pressure resolution across a broad pressure spectrum. Iontronic sensors can provide superior sensing properties, but they undergo property degradation in wet environments due to the hygroscopic nature of their active component: ionogels. Herein, we introduce a humidity-insensitive iontronic sensor array based on a hydrophobic and tough ionogel polymerized in a hydrophobicity transition yielding two hydrophobic phases: a soft liquid-rich phase that enhances ionic conductivity and ductility, and a stiff polymer-rich phase that contributes to superior toughness. We demonstrate the implantation of these sensor arrays to monitor real-time intra-articular pressure distribution in a sheep model, while assessing knee flexion with an angular resolution of 0.1° and a pressure resolution of 0.1%. We anticipate that this sensor array will find applications in various orthopedic surgeries and implantable medical devices.

摘要

植入式压力传感器可以提供压力信息,以评估特定组织或器官的局部健康状况,例如膝关节内的关节内压力。然而,植入式传感器的先决条件比可穿戴设备或机器人带来的挑战更大:除了生物相容性和类似组织的柔软性之外,它们还必须在宽压力范围内表现出对湿度不敏感和高压分辨率。离子电子传感器可以提供优异的传感特性,但由于其活性成分离子凝胶的吸湿性,它们在潮湿环境中会发生性能退化。在此,我们介绍一种对湿度不敏感的离子电子传感器阵列,该阵列基于一种在疏水性转变过程中聚合的疏水性坚韧离子凝胶,产生两个疏水相:一个富含液体的软相,可增强离子导电性和延展性;一个富含聚合物的硬相,有助于提高韧性。我们展示了这些传感器阵列在绵羊模型中的植入,以监测实时关节内压力分布,同时以0.1°的角分辨率和0.1%的压力分辨率评估膝关节屈曲。我们预计这种传感器阵列将在各种骨科手术和可植入医疗设备中得到应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7965/11536762/2d032d55f857/nwae351fig1.jpg

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