2、4和8 mhz中心静脉导管超声探头检测静脉空气栓塞的特性和比较。

GMS health innovation and technologies Pub Date : 2022-06-22 eCollection Date: 2022-01-01 DOI:10.3205/hta000135
Philipp Ch Stark, Christoph Kalkbrenner, Werner Klingler, Rainer Brucher
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引用次数: 0

摘要

本文提出了一种利用尖端装有集成多普勒超声换能器的中心静脉导管检测上腔静脉内静脉气栓的概念。几个多普勒探头,每个具有单个声波频率为2mhz, 4mhz或8mhz的特征和比较在这种情况下的实用性。在体外实验中,使用人造血液循环注入具有一定体积的模拟血液的液体气泡,并记录为气体栓塞事件。体外测得的栓血比值(EBR)与气泡体积的比值及其回声度与气泡球形截面散射模拟模型具有良好的相关性。结果表明,探头设计仍需要一些改进,使用4 MHz的超声频率,以获得在腔静脉优越的这种情况下可用的检测灵敏度。结果表明,使用这种导管探头可以估计出与EBR相对应的气泡体积。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Characterization and comparison of a 2-, 4- and 8-MHz central venous catheter ultrasound probe for venous air emboli detection.

Characterization and comparison of a 2-, 4- and 8-MHz central venous catheter ultrasound probe for venous air emboli detection.

Characterization and comparison of a 2-, 4- and 8-MHz central venous catheter ultrasound probe for venous air emboli detection.

Characterization and comparison of a 2-, 4- and 8-MHz central venous catheter ultrasound probe for venous air emboli detection.

This paper presents a concept for detection of venous air emboli inside the superior vena cava using a central venous catheter with integrated Doppler ultrasound transducer installed on the tip. Several Doppler probes each with a single insonation frequencies of 2 MHz, 4 MHz or 8 MHz are characterized and compared for usefulness in this scenario. During in vitro experiments using an artificial blood circulatory with blood mimicking fluid bubbles with defined volumes were injected and recorded as gaseous embolic events. The in vitro results of measured embolus-blood-ratio values (EBR) in respect to the air bubbles volumes and its echogenicity showed a good correlation with the simulation model of spherical cross section scattering of such air bubbles. It is shown that the probe design still needs some improvements using a 4 MHz insonation frequency to get a useable detection sensitivity in such scenario within vena cava superior. The results suggest that it is possible to estimate the air bubble volume corresponding to the EBR using such a catheter probe.

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