首页> 外文会议>2010 4th International Conference on Bioinformatics and Biomedical Engineering >The Circuit Design for a Transient Elastography System and Its Improvement Design
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The Circuit Design for a Transient Elastography System and Its Improvement Design

机译:瞬态弹性成像系统的电路设计及其改进设计

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Elastography is an emerging ultrasonic imaging technique; it has a broad clinical application for tissue parameter estimation. We designed a real-time system to measure tissue stiffness information non-invasively based on transient elastography. The system performance mainly depends on the circuit design before the Analog-to-Digital Converter (A/D), especially the preamplifier part which is very sensitive to the noise. How to improve the signal-to-noise (SNR) is the key factor for the system design. In this paper, the Time Gain Control (TGC) design is discussed as an example of the circuit design. Displacement tracking algorithm based on correlation techniques and differentiation are applied to Radio frequency (RF) signals from tissues mimicking phantom and in vivo experiments; the young's modulus of the tissue is estimated from the strain images. The influences of the SNR to the strain image quality are discussed. At the end, an improvement based on the AD9272 is proposed.
机译:弹性成像是一种新兴的超声成像技术。它在组织参数估计方面具有广泛的临床应用。我们设计了一种实时系统,可基于瞬态弹性成像技术无创地测量组织硬度信息。系统性能主要取决于模数转换器(A / D)之前的电路设计,尤其是对噪声非常敏感的前置放大器部分。如何改善信噪比(SNR)是系统设计的关键因素。在本文中,以时间增益控制(TGC)设计为例讨论了电路设计。将基于相关技术和微分的位移跟踪算法应用于模拟体模和体内实验的组织的射频(RF)信号;从应变图像估计组织的杨氏模量。讨论了SNR对应变图像质量的影响。最后,提出了基于AD9272的改进。

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