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基于光纤的磁共振兼容传感器在医疗中的应用:综述。

Optical fiber-based MR-compatible sensors for medical applications: an overview.

机构信息

Unit of Biomedical Robotics and Biomicrosystems, Center for Integrated Research, Università Campus Bio-Medico di Roma, Via Álvaro del Portillo, 21, Rome 00128, Italy.

出版信息

Sensors (Basel). 2013 Oct 18;13(10):14105-20. doi: 10.3390/s131014105.

Abstract

During last decades, Magnetic Resonance (MR)--compatible sensors based on different techniques have been developed due to growing demand for application in medicine. There are several technological solutions to design MR-compatible sensors, among them, the one based on optical fibers presents several attractive features. The high elasticity and small size allow designing miniaturized fiber optic sensors (FOS) with metrological characteristics (e.g., accuracy, sensitivity, zero drift, and frequency response) adequate for most common medical applications; the immunity from electromagnetic interference and the absence of electrical connection to the patient make FOS suitable to be used in high electromagnetic field and intrinsically safer than conventional technologies. These two features further heightened the potential role of FOS in medicine making them especially attractive for application in MRI. This paper provides an overview of MR-compatible FOS, focusing on the sensors employed for measuring physical parameters in medicine (i.e., temperature, force, torque, strain, and position). The working principles of the most promising FOS are reviewed in terms of their relevant advantages and disadvantages, together with their applications in medicine.

摘要

在过去的几十年中,由于在医学中应用的需求不断增长,基于不同技术的磁共振(MR)兼容传感器已经得到了发展。有几种设计磁共振兼容传感器的技术解决方案,其中基于光纤的方案具有几个吸引人的特点。高弹性和小尺寸允许设计具有足够的计量特性(例如准确性、灵敏度、零漂移和频率响应)的小型光纤传感器(FOS),适用于大多数常见的医学应用;光纤传感器对电磁干扰的免疫和与患者无电气连接使其适用于高电磁场,并且比传统技术更安全。这两个特点进一步提高了 FOS 在医学中的潜在作用,使它们特别有吸引力,可用于磁共振成像。本文综述了磁共振兼容光纤传感器,重点介绍了用于测量医学中物理参数(即温度、力、扭矩、应变和位置)的传感器。根据其相关的优缺点,以及在医学中的应用,回顾了最有前途的 FOS 的工作原理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69c9/3859111/7a73fda993e0/sensors-13-14105f1a.jpg

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