基于50 MHz微电脑的超声组织表征数据采集与分析系统

N. Botros, K. Xu
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引用次数: 2

摘要

作者提出了一种超高速微机数据采集与分析系统,该系统与超声扫描机相结合。该系统的主要应用是测量人体肝组织的后向散射超声能量,并利用该测量来区分正常和异常的肝组织。该系统以50兆样本/秒的采样率对超声信号进行数字化处理,并将数字化后的数据存储在中间存储器中。当存储空间满时,将数据传输到IBM-PC中,在IBM-PC中应用快速傅里叶变换算法计算超声信号的功率谱。功率谱的测量用于估计组织的声衰减和后向散射系数随频率的变化。通过研究这些系数,可以确定组织的生物学状态(正常或异常)。详细描述了系统的六个主要部件:调理电路、模拟/数字转换器单元、锁存电路单元、中间存储单元、通信单元和控制延迟电路单元。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A 50 MHz microcomputer-based data acquisition and analysis system for ultrasound tissue characterization
The authors present an ultra-high-speed microcomputer-based data acquisition and analysis system to be coupled to an ultrasound scanner machine. The primary application of the system described is to measure the backscattered ultrasound energy from human liver tissue and use this measurement to differentiate between normal and abnormal liver tissue. The system digitizes the ultrasound signal with a sample rate of 50 megasamples/second and stores the digitized data in an intermediate storage. When the storage is full, the data are transferred to an IBM-PC where a fast Fourier transform algorithm is applied to calculate the power spectrum of the ultrasound signal. The measurement of the power spectrum is used to estimate the acoustic attenuation and backscattering coefficients of the tissue as function of the frequency. By investigating these coefficients, the biological status of the tissue (normal or abnormal) can be determined. The six main system components are described in some detail: the conditioning circuit, the analog/digital converter unit, the latching circuit unit, the intermediate storage unit, the communication unit, and the control-delay circuit unit.<>
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