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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Fast Hartley transforms for spectral analysis of ultrasound Doppler signals
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Fast Hartley transforms for spectral analysis of ultrasound Doppler signals

机译:快速Hartley变换用于超声多普勒信号的频谱分析

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摘要

Spectral analysis of Doppler ultrasound is known to yield valuable information to assess the state of circulation in the peripheral blood vessels. In the past, the raw Doppler data have been directly input into a dedicated spectrum analyzer or transformed on a microcomputer using the fast Fourier transform (FFT) technique. In the present study, the first Hartley technique is used to transform on a microcomputer to the digitized Doppler data obtained from a normal common carotid artery is presented and the resulting spectra are compared to those obtained by using the Cooley-Tukey FFT algorithm. The Hartley transform has the advantages of being a purely real-numbered transform; therefore, for real Doppler data, it is not only more conceptually straightforward, but also requires less computer memory, is simpler to calculate, and is better suited to large-scale integration implementation. The raw Doppler data were input into a digital oscilloscope from the analog Doppler unit, digitized in real time with 12-b resolution, and displayed on the computer monitor. These data were then stored in a file, on floppy or hard disk, using software provided with the digitizing oscilloscope, and then transformed to the spectral domain using either transform technique. In this application, the transforms were performed using a compiled BASIC language.
机译:已知多普勒超声的频谱分析会产生有价值的信息,以评估外周血管的循环状态。过去,原始多普勒数据已直接输入到专用频谱分析仪中,或使用快速傅里叶变换(FFT)技术在微型计算机上进行了变换。在本研究中,第一种Hartley技术用于在微型计算机上转换为从正常颈总动脉获得的数字化多普勒数据,并将所得光谱与使用Cooley-Tukey FFT算法获得的光谱进行比较。 Hartley变换的优点是它是纯实数变换;因此,对于真正的多普勒数据,它不仅在概念上更简单明了,而且需要更少的计算机内存,更易于计算,并且更适合大规模集成实施。多普勒原始数据从模拟多普勒单元输入到数字示波器,以12-b分辨率实时数字化,并显示在计算机监视器上。然后,使用数字示波器随附的软件将这些数据存储在软盘或硬盘上的文件中,然后使用任意一种转换技术将其转换到光谱域。在此应用程序中,使用已编译的BASIC语言执行了转换。

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