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Denoising embolic doppler signals using modified complex discrete wavelet transform

机译:使用改进的复数离散小波变换对栓塞多普勒信号进行去噪

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Stroke is the rapidly developing loss of brain functions, due to a disturbance in the blood vessels supplying blood to the brain. The particles in circulation system, bigger than red blood cells, are accepted as the main reason of emboli. Early and accurate detection of asymptomatic emboli is important in monitoring stroke-prone patients. The main problem in detection of emboli is the identification of embolic signals caused by very small emboli. The amplitude of embolic signals can be very small and advanced signal processing techniques are needed to distinguish these signals from Doppler signals arising from red blood cells. In this study instead of conventional discrete wavelet transform, which is used frequently in processing embolic signals, a modified complex discrete wavelet transform with same computational complexity and better phase shift-invariance property was used for de-noising embolic signals. Results demonstrates that approximately 8 dB improvement is obtained by using modified complex discrete wavelet transform compared to the improvement provided by the conventional discrete wavelet transform, approximately 5 dB.
机译:中风是由于向大脑供血的血管紊乱引起的大脑功能的迅速发展丧失。循环系统中比红细胞大的颗粒被认为是栓子的主要原因。对无症状栓子的早期和准确检测对于监测易发中风的患者很重要。检测栓子的主要问题是识别由很小栓子引起的栓子信号。栓塞信号的幅度可能非常小,需要先进的信号处理技术将这些信号与红细胞产生的多普勒信号区分开。在这项研究中,代替了在处理栓塞信号中经常使用的常规离散小波变换,将具有相同计算复杂度和更好的相移不变性的改进型复杂离散小波变换用于对栓塞信号进行去噪。结果表明,与传统的离散小波变换提供的大约5 dB的改进相比,使用改进的复数离散小波变换可获得大约8 dB的改进。

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