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一种用于估计微血管中血流速度的扫描模式。

A swept-scanning mode for estimation of blood velocity in the microvasculature.

作者信息

Kruse D E, Silverman R H, Fornaris R J, Coleman D J, Ferrara K W

机构信息

Dept. of Biomed. Eng., Virginia Univ., Charlottesville, VA.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 1998;45(6):1437-40. doi: 10.1109/58.738282.

Abstract

In contrast to previous systems in which an ultrasonic pulse was repeatedly directed to a discrete line of sight, a new method has been developed to continuously scan over a region in order to rapidly assess blood velocities in superficial small blood vessels. Using this technique, which we call swept-scan, a high frequency transducer can rapidly translate across a region of interest, and sensitive maps of blood velocity in small blood vessels can be constructed. This system has been applied to flow mapping in the anterior segment of the eye, which is clinically significant in cases of trauma and glaucoma. No previous imaging technique has been capable of estimating blood velocities within this region in a clinically useful manner. With this new technique, each 2-D scan of the eye can be obtained in an interval on the order of 1 second, and blood flow through the iris and ciliary body can be detected in vessels as small as 40 microns. A major implication of this new technique is that a wall filter can be applied continuously to the return from all regions, thus eliminating the transient response that occurs along each line of sight in traditional Doppler systems.

摘要

与先前将超声脉冲反复指向离散视线的系统不同,已开发出一种新方法,可对一个区域进行连续扫描,以便快速评估浅表小血管中的血流速度。使用我们称为扫掠扫描的这项技术,高频换能器可在感兴趣区域快速平移,从而构建小血管血流速度的敏感图谱。该系统已应用于眼前节的血流成像,这在创伤和青光眼病例中具有临床意义。以前没有成像技术能够以临床有用的方式估计该区域内的血流速度。采用这项新技术,每次对眼睛的二维扫描可在大约1秒的时间间隔内完成,并且能够在小至40微米的血管中检测到通过虹膜和睫状体的血流。这项新技术的一个主要意义在于,可以对来自所有区域的回波连续应用壁滤波器,从而消除传统多普勒系统中沿每条视线出现的瞬态响应。

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