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Miniaturized fiber-optic transmission system for MRI signals

机译:MRI信号的小型光纤传输系统

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摘要

Conventional MRI instruments transmit received MRI signals through electrical cables. Although this design has proved to be effective over the years, we report a fiber-optic system that addresses the needs of recent developments in MRI technology. One of these technologies is phased array coils with a high number of elements, where total size of interconnections is a primary problem, and other problem is internal MRI coils, where there is a need for improvements in safety. The Miniature Fiber-Optic Transmission (FOT) System was developed to address these issues. The system consists of a receiver coil with active detuning, a low-noise preamplifier, and a laser diode connected to a photodetector with fiber-optic cabling. The overall noise figure of the system is lower than 1 dB. Total power consumption is 50 mW, and the device is switchable with another fiber-optic line, which can also control active detuning. A prototype device was tested in a GE 1.5 Tesla MRI scanner, and several images were acquired with a signal to noise ratio similar to coaxial cabling. We believe that this design will reduce the cabling problems of arrays and enable placement of internal coils into body cavities with no safety hazard to the patient, such as electrical shock or burns. © 2007 Wiley-Liss, Inc.
机译:传统的MRI仪器通过电缆传输接收到的MRI信号。尽管多年来证明这种设计是有效的,但我们报告了一种满足MRI技术最新发展需求的光纤系统。这些技术之一是具有大量元件的相控阵线圈,其中互连的总尺寸是主要问题,而其他问题是内部MRI线圈,需要提高安全性。开发了微型光纤传输(FOT)系统来解决这些问题。该系统由具有主动失谐功能的接收器线圈,低噪声前置放大器和通过光纤布线连接至光电探测器的激光二极管组成。系统的总体噪声系数低于1 dB。总功耗为50 mW,该设备可通过另一条光纤线路进行切换,该线路还可以控制有源失谐。在GE 1.5 Tesla MRI扫描仪中测试了原型设备,并以类似于同轴电缆的信噪比获取了几张图像。我们相信,这种设计将减少阵列的布线问题,并能够将内部线圈放入体腔中,而不会对患者造成安全危害,例如电击或烧伤。 ©2007 Wiley-Liss,Inc.

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