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可拉伸传感器材料在磁共振成像射频线圈设计中的应用:综述。

Stretchable Sensor Materials Applicable to Radiofrequency Coil Design in Magnetic Resonance Imaging: A Review.

机构信息

Department of Biomedical Engineering, Cornell University, Ithaca, NY 10065, USA.

Department of Radiology, Weill Cornell Medicine, New York, NY 10065, USA.

出版信息

Sensors (Basel). 2024 May 24;24(11):3390. doi: 10.3390/s24113390.

Abstract

Wearable sensors are rapidly gaining influence in the diagnostics, monitoring, and treatment of disease, thereby improving patient outcomes. In this review, we aim to explore how these advances can be applied to magnetic resonance imaging (MRI). We begin by (i) introducing limitations in current flexible/stretchable RF coils and then move to the broader field of flexible sensor technology to identify translatable technologies. To this goal, we discuss (ii) emerging materials currently used for sensor substrates, (iii) stretchable conductive materials, (iv) pairing and matching of conductors with substrates, and (v) implementation of lumped elements such as capacitors. Applicable (vi) fabrication methods are presented, and the review concludes with a brief commentary on (vii) the implementation of the discussed sensor technologies in MRI coil applications. The main takeaway of our research is that a large body of work has led to exciting new sensor innovations allowing for stretchable wearables, but further exploration of materials and manufacturing techniques remains necessary, especially when applied to MRI diagnostics.

摘要

可穿戴传感器在疾病的诊断、监测和治疗方面迅速发挥作用,从而改善了患者的预后。在这篇综述中,我们旨在探讨如何将这些进展应用于磁共振成像 (MRI)。我们首先介绍了当前柔性/可拉伸射频线圈的局限性,然后将研究范围扩大到更广泛的柔性传感器技术领域,以确定可转化的技术。为此,我们讨论了 (ii) 当前用于传感器基底的新兴材料,(iii) 可拉伸导电材料,(iv) 导体与基底的配对和匹配,以及 (v) 集总元件(如电容器)的实现。介绍了适用的 (vi) 制造方法,最后简要讨论了 (vii) 所讨论的传感器技术在 MRI 线圈应用中的实现。我们研究的主要收获是,大量的工作已经带来了令人兴奋的新型传感器创新,使可拉伸可穿戴设备成为可能,但仍需要进一步探索材料和制造技术,特别是在应用于 MRI 诊断时。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b85/11174967/e6e94204e9db/sensors-24-03390-g001.jpg

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