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Direct Digital Demultiplexing of Analog TDM Signals for Cable Reduction in Ultrasound Imaging Catheters.

机译:用于超声成像导管中电缆减少的模拟TDm信号的直接数字解复用。

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摘要

In real-time catheter based 3D ultrasound imaging applications, gathering data from the transducer arrays is difficult as there is a restriction on cable count due to the diameter of the catheter. Although area and power hungry multiplexing circuits integrated at the catheter tip are used in some applications, these are unsuitable for use in small sized catheters for applications like intracardiac imaging. Furthermore, the length requirement for catheters and limited power available to on-chip cable drivers leads to limited signal strength at the receiver end. In this paper an alternative approach using Analog Time Division Multiplexing (TDM) is presented which addresses the cable restrictions of ultrasound catheters. A novel digital demultiplexing technique is also described which allows for a reduction in the number of analog signal processing stages required. The TDM and digital demultiplexing schemes are demonstrated for an intracardiac imaging system that would operate in the 4 MHz to 11 MHz range. A TDM integrated circuit (IC) with 8:1 multiplexer is interfaced with a fast ADC through a micro-coaxial catheter cable bundle, and processed with an FPGA RTL simulation. Input signals to the TDM IC are recovered with -40 dB crosstalk between channels on the same micro-coax, showing the feasibility of this system for ultrasound imaging applications.
机译:在基于实时导管的3D超声成像应用中,很难从换能器阵列收集数据,因为导管的直径会限制电缆的数量。尽管在某些应用中使用了集成在导管末端的面积和功率消耗多路复用电路,但这些电路不适合在小型导管中使用,如心内成像。此外,导管的长度要求和片上电缆驱动器可用的功率有限,导致接收器端的信号强度受到限制。在本文中,提出了一种使用模拟时分复用(TDM)的替代方法,该方法解决了超声导管的电缆限制。还描述了一种新颖的数字多路分解技术,该技术可以减少所需的模拟信号处理级的数量。演示了针对将在4 MHz至11 MHz范围内运行的心脏内成像系统的TDM和数字多路分解方案。具有8:1多路复用器的TDM集成电路(IC)通过微同轴导管电缆束与快速ADC接口,并通过FPGA RTL仿真进行处理。到TDM IC的输入信号通过同一微同轴电缆上通道之间的-40 dB串扰恢复,这表明该系统在超声成像应用中的可行性。

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