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基于 CT 的气道模型与 SPECT/CT 的计算流体动力学验证。

Validation of computational fluid dynamics in CT-based airway models with SPECT/CT.

机构信息

FluidDA, Groeningenlei 132, 2550 Kontich, Belgium.

出版信息

Radiology. 2010 Dec;257(3):854-62. doi: 10.1148/radiol.10100322.

Abstract

PURPOSE

To compare the results obtained by using numerical flow simulations with the results of combined single photon emission computed tomography (SPECT) and computed tomography (CT) and to demonstrate the importance of correct boundary conditions for the numerical methods to account for the large amount of interpatient variability in airway geometry.

MATERIALS AND METHODS

This study was approved by all relevant institutional review boards. All patients gave their signed informed consent. In this study, six patients with mild asthma (three men; three women; overall mean age, 46 years ± 17 [standard deviation]) underwent CT at functional residual capacity and total lung capacity, as well as SPECT/CT. CT data were used for segmentation and computational fluid dynamics (CFD) simulations. A comparison was made between airflow distribution, as derived with (a) SPECT/CT through tracer concentration analysis, (b) CT through lobar expansion measurement, and (c) CFD through flow computer simulation. Also, the heterogeneity of the ventilation was examined.

RESULTS

Good agreement was found between SPECT/CT, CT, and CFD in terms of airflow distribution and hot spot detection. The average difference for the internal airflow distribution was less than 3% for CFD and CT versus SPECT/CT. Heterogeneity in ventilation patterns could be detected with SPECT/CT and CFD.

CONCLUSION

This results of this study show that patient-specific computer simulations with appropriate boundary conditions yield information that is similar to that obtained with functional imaging tools, such as SPECT/CT.

SUPPLEMENTAL MATERIAL

http://radiology.rsna.org/lookup/suppl/doi:10.1148/radiol.10100322/-/DC1.

摘要

目的

比较数值流动模拟的结果与单光子发射计算机断层扫描(SPECT)和计算机断层扫描(CT)联合的结果,并证明正确的边界条件对于数值方法的重要性,以便解释气道几何形状的大量个体间差异。

材料与方法

本研究获得了所有相关机构审查委员会的批准。所有患者均签署了知情同意书。在本研究中,6 例轻度哮喘患者(3 名男性,3 名女性;平均年龄 46 岁±17 岁[标准差])在功能残气位和肺总量时进行 CT 扫描,以及 SPECT/CT。CT 数据用于分割和计算流体动力学(CFD)模拟。通过(a)SPECT/CT 通过示踪剂浓度分析、(b)CT 通过肺叶扩张测量和(c)CFD 通过流量计算机模拟,比较气流分布。还检查了通气的异质性。

结果

在气流分布和热点检测方面,SPECT/CT、CT 和 CFD 之间具有良好的一致性。CFD 和 CT 与 SPECT/CT 相比,内部气流分布的平均差异小于 3%。SPECT/CT 和 CFD 可检测到通气模式的异质性。

结论

本研究结果表明,具有适当边界条件的患者特异性计算机模拟可提供与 SPECT/CT 等功能成像工具相似的信息。

补充材料

http://radiology.rsna.org/lookup/suppl/doi:10.1148/radiol.10100322/-/DC1.

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