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用于研究彩色多普勒血流成像系统速度测定准确性和空间分辨率的体外方法。

In vitro methods for studying the accuracy of velocity determination and spatial resolution of a color Doppler flow mapping system.

作者信息

Tamura T, Yoganathan A, Sahn D J

出版信息

Am Heart J. 1987 Jul;114(1 Pt 1):152-8. doi: 10.1016/0002-8703(87)90319-x.

Abstract

We tested a color Doppler flow mapping system (Aloka 880, 3.5 mHz) to image the steady flow of a suspension of cornstarch (0.1% to 1.75%) in water, flowing at known velocities through a series of Tygon tubing with internal diameters of 1.6 to 4.8 mm and latex rubber tubing (7.9 to 15.9 mm) in a water tank. Flow through the tubes was imaged at 2 to 12 cm and 2 to 18 cm distances from the transducer, by the use of the near and far focus settings of the instrument. First, the color flow diameters were compared to the known internal diameters of the tubing oriented at a 30- to 70-degree flow angle to the direction of interrogation to test axial resolution as well as lateral resolution. For the near transmit focus setting, the color diameters increasingly overestimated the actual flow diameters as the distance from the transducer increased progressively beyond 6 cm (i.e., overestimation of up to 25 mm or 500% for the 4.8 mm tubing and 250% for the 9.5 mm tubing at 16 cm from the transducer). For the far transmit focus setting and for distances within 10 cm, the color diameters did not differ significantly (i.e., more than 1 mm) from the actual diameter. The lowest velocity color encoded by the instrument was 3 cm/sec for a pulse repetition frequency of 4 kHz. At a flow velocity of about 50 cm/sec, 6 cm distance from the transducer and mid gain settings, flow through the 1.6 mm tube barely color coded, while flow through 2.4, 3.2, and 4.8 mm tubes was easily imaged.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

我们测试了一种彩色多普勒血流成像系统(Aloka 880,3.5兆赫兹),以对玉米淀粉(0.1%至1.75%)在水中的悬浮液的稳定流动进行成像,该悬浮液以已知速度通过一系列内径为1.6至4.8毫米的泰贡管和水箱中的乳胶橡胶管(7.9至15.9毫米)。通过使用仪器的近焦和远焦设置,在距换能器2至12厘米和2至18厘米的距离处对通过管子的流动进行成像。首先,将彩色血流直径与已知内径的管子进行比较,这些管子的流动角度与询问方向成30至70度,以测试轴向分辨率和横向分辨率。对于近发射聚焦设置,随着距换能器的距离逐渐超过6厘米,彩色直径越来越高估实际血流直径(即,对于4.8毫米的管子,在距换能器16厘米处高估高达25毫米或500%,对于9.5毫米的管子高估250%)。对于远发射聚焦设置以及10厘米以内的距离,彩色直径与实际直径没有显著差异(即,相差超过1毫米)。仪器编码的最低速度颜色为4千赫兹脉冲重复频率下的3厘米/秒。在流速约为50厘米/秒、距换能器6厘米和中等增益设置下,通过1.6毫米管子的流动几乎没有颜色编码,而通过2.4、3.2和4.8毫米管子的流动很容易成像。(摘要截断于250字)

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