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An Optically Powered CMOS Tracking System for 3 T Magnetic Resonance Environment

机译:用于3 T磁共振环境的光功率CMOS跟踪系统

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摘要

In this work, a fully optical Complementary Metal Oxide Semiconductor (CMOS) based catheter tracking system designed for 3 T Magnetic Resonance Imaging (MRI) environment is presented. The system aims to solve the Radio Frequency (RF) induced heating problem present in conventional wired catheter tracking systems used in MRI. It is based on an integrated circuit, consisting of a receiver and an optical power supply unit. The optical power supply unit includes a single on-chip photodiode and a DC-DC converter that boosts the low photodiode voltage output to voltages greater than 1.5 V. Through an optically driven switch, the accumulated charge on an a storage capacitor is transferred to the rest of the system. This operation is novel in the way that it is fully optical and the switch control is done through modulation of the applied light. An on-chip local oscillator signal for the receiver is avoided by application of an RF signal that is generated by the MRI machine at the receiving period. The signals received by a micro-coil antenna are processed by the on-chip direct conversion receiver. The processed signal is then transferred, also optically, to the outside world for tracking purposes. The frequency encoding method is used for MRI tracking. Operation with various levels of external optical power does not generate noticeble temperature increase in the system. The overall system is successfully tested in a 3 T MRI machine to demonstrate its full operation.
机译:在这项工作中,提出了一种针对3 T磁共振成像(MRI)环境设计的基于全光学互补金属氧化物半导体(CMOS)的导管跟踪系统。该系统旨在解决在MRI中使用的常规有线导管跟踪系统中存在的射频(RF)引起的加热问题。它基于一个集成电路,由一个接收器和一个光电源单元组成。光学电源单元包括一个片上光电二极管和一个DC-DC转换器,该转换器将低光电二极管的输出电压升压至大于1.5 V的电压。通过光驱动开关,存储电容器上累积的电荷被传输到LED上。系统的其余部分。该操作是新颖的,因为它是全光学的,并且通过调制所施加的光来完成开关控制。通过应用由MRI机器在接收周期生成的RF信号,可以避免接收器的片上本地振荡器信号。微线圈天线接收的信号由片上直接转换接收器处理。然后,经过处理的信号也通过光学方式传输到外界,以进行跟踪。频率编码方法用于MRI跟踪。在各种级别的外部光功率下运行不会在系统中产生明显的温度升高。整个系统已在3 T MRI机器中成功测试,以证明其完整的操作。

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