SPECT气溶胶沉积数据与人体呼吸道模型的比较。

John S Fleming, Ben P Epps, Joy H Conway, Ted B Martonen
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引用次数: 42

摘要

三维(3D)放射性核素成像提供了吸入气溶胶物质在体内分布的详细信息。对数据的分析可以提供每一代气道沉积的估计。在这项研究中,两种不同的雾化器被用于向12名人类受试者输送不同粒径的放射性标记气溶胶。医学成像已被用于评估在体内的沉积。利用国际放射防护委员会(ICRP)的经验模型估计了沉积模式,并与实验得到的值进行了比较。结果表明,模型和实验结果基本一致,表明气溶胶在胸外气道和传导气道中的沉积情况良好。然而,在肺泡区沉积的数量和呼出的数量之间的气溶胶的剩余命运有显著差异。对于身体的所有区域,该模型预测的受试者间沉积变异性明显小于测量值。该模型较好地预测了两种气溶胶在沉积分布模式上的差异。总之,本研究表明,吸入气溶胶沉积的ICPR模型与实验结果有很好的一致性。然而,也有不同的领域,这可能是由于吸湿颗粒生长和气道解剖的个体差异。
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Comparison of SPECT aerosol deposition data with a human respiratory tract model.

Three-dimensional (3D) radionuclide imaging provides detailed information on the distribution of inhaled aerosol material within the body. Analysis of the data can provide estimates of the deposition per airway generation. In this study, two different nebulizers have been used to deliver radiolabeled aerosols of different particle size to 12 human subjects. Medical imaging has been used to assess the deposition in the body. The deposition pattern has also been estimated using the International Commission on Radiological Protection (ICRP) empirical model and compared to values obtained by experiment. The results showed generally good agreement between model and experiment for both aerosols for the deposition in the extrathoracic and conducting airways. However, there were significant differences in the fate of the remainder of the aerosol between the amount deposited in the alveolar region and that exhaled. The inter-subject variability of deposition predicted by the model was significantly less than that measured, for all regions of the body. The model predicted quite well the differences in deposition distribution pattern between the two aerosols. In conclusion, this study has shown that the ICPR model of inhaled aerosol deposition shows areas of good agreement with results from experiment. However, there are also areas of disagreement, which may be explained by hygroscopic particle growth and individual variation in airway anatomy.

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