Hoenninger John C, Crooks Lawrence E, Arakawa Mitsuaki
Toshiba America MRI, Inc, RIL Division, South San Francisco, CA 94080, USA.
IEEE Trans Biomed Eng. 2002 Jul;49(7):689-93. doi: 10.1109/TBME.2002.1010852.
A magnetic resonance imaging (MRI) system requires the highest possible signal fidelity and stability for clinical applications. Quadrature analog receivers have problems with channel matching, dc offset and analog-to-digital linearity. Fixed-point digital receivers (DRs) reduce all of these problems. We have demonstrated that a floating-point DR using large (order 124 to 512) FIR low-pass filters also overcomes these problems, automatically provides long word length and has low latency between signals. A preloaded table of finite impuls response (FIR) filter coefficients provides fast switching between one of 129 different one-stage and two-stage multrate FIR low-pass filters with bandwidths between 4 KHz and 125 KHz. This design has been implemented on a dual channel circuit board for a commercial MRI system.
磁共振成像(MRI)系统在临床应用中需要尽可能高的信号保真度和稳定性。正交模拟接收器存在通道匹配、直流偏移和模数线性等问题。定点数字接收器(DR)减少了所有这些问题。我们已经证明,使用大型(阶数为124至512)FIR低通滤波器的浮点DR也能克服这些问题,自动提供长字长,并且信号之间的延迟较低。预加载的有限脉冲响应(FIR)滤波器系数表可在129种不同的单级和两级多速率FIR低通滤波器之一之间快速切换,带宽在4 kHz至125 kHz之间。这种设计已在用于商业MRI系统的双通道电路板上实现。