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用于无创血流测量的平板计算机断层扫描:体外研究的初步结果

Flat panel computed tomography for non-invasive flow measurement: initial results in in-vitro studies.

作者信息

Mahnken Andreas H, Grasruck Michael, Schmidt Bernhard, Günther Rolf W, Wildberger Joachim E

机构信息

Department of Diagnostic Radiology, RWTH-Aachen University, Aachen, Germany.

出版信息

Eur Radiol. 2008 Apr;18(4):747-52. doi: 10.1007/s00330-007-0819-3. Epub 2007 Dec 4.

Abstract

The purpose was to evaluate the feasibility of flat panel computed tomography (FPCT) for quantifying flow by analyzing contrast changes along the z-axis in an in-vitro setting. Contrast material was injected in a 3-mm silicone tube at flow rates of 0.1, 0.2, 0.5 and 1.0 ml/s using a commercially available injector pump. FPCT scans of this phantom were performed with a gantry rotation time of 3 s. From this data 41 phases were reconstructed at different points in time using a full and a partial gantry rotation. The differences in the contrast material arrival time and the contrast enhancement along the z-axis were recorded. Flow was calculated from this data and compared to the injector settings. There was a good agreement between the injector settings and the calculated flow rates, but agreement decreased with increasing flow rates. Absolute (percent) mean deviation between the injector settings and calculated flow values was 0.0230 +/- 0.0489ml/s (3.7243 +/- 4.7817%) using the full gantry rotation. Repeated-measurement ANOVA failed to show significant differences between the various techniques (p = 0.9726). FPCT allows for computing flow. While preliminary results indicate a good agreement at low flow rates, further studies are needed to assess this technique for higher flow rates.

摘要

目的是通过在体外环境中分析沿z轴的造影剂变化来评估平板计算机断层扫描(FPCT)定量血流的可行性。使用市售注射泵以0.1、0.2、0.5和1.0 ml/s的流速将造影剂注入3毫米硅胶管中。使用机架旋转时间为3秒对该模型进行FPCT扫描。根据这些数据,使用完整和部分机架旋转在不同时间点重建41个相位。记录造影剂到达时间和沿z轴的造影剂增强的差异。根据这些数据计算血流并与注射设置进行比较。注射设置与计算出的流速之间具有良好的一致性,但随着流速增加一致性降低。使用完整机架旋转时,注射设置与计算出的血流值之间的绝对(百分比)平均偏差为0.0230±0.0489ml/s(3.7243±4.7817%)。重复测量方差分析未显示各种技术之间存在显著差异(p = 0.9726)。FPCT能够计算血流。虽然初步结果表明在低流速下具有良好的一致性,但需要进一步研究以评估该技术在更高流速下的情况。

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