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使用自门控并行成像策略加速小鼠心脏心血管磁共振成像不会影响结构和功能测量的准确性。

Accelerated cardiovascular magnetic resonance of the mouse heart using self-gated parallel imaging strategies does not compromise accuracy of structural and functional measures.

机构信息

Institute for Biomedical Engineering, University and ETH Zurich, Wolfgang-Pauli-Strasse 10, Zurich, 8093, Switzerland.

出版信息

J Cardiovasc Magn Reson. 2010 Jul 21;12(1):43. doi: 10.1186/1532-429X-12-43.

Abstract

BACKGROUND

Self-gated dynamic cardiovascular magnetic resonance (CMR) enables non-invasive visualization of the heart and accurate assessment of cardiac function in mouse models of human disease. However, self-gated CMR requires the acquisition of large datasets to ensure accurate and artifact-free reconstruction of cardiac cines and is therefore hampered by long acquisition times putting high demands on the physiological stability of the animal. For this reason, we evaluated the feasibility of accelerating the data collection using the parallel imaging technique SENSE with respect to both anatomical definition and cardiac function quantification.

RESULTS

Findings obtained from accelerated data sets were compared to fully sampled reference data. Our results revealed only minor differences in image quality of short- and long-axis cardiac cines: small anatomical structures (papillary muscles and the aortic valve) and left-ventricular (LV) remodeling after myocardial infarction (MI) were accurately detected even for 3-fold accelerated data acquisition using a four-element phased array coil. Quantitative analysis of LV cardiac function (end-diastolic volume (EDV), end-systolic volume (ESV), stroke volume (SV), ejection fraction (EF) and LV mass) in healthy and infarcted animals revealed no substantial deviations from reference (fully sampled) data for all investigated acceleration factors with deviations ranging from 2% to 6% in healthy animals and from 2% to 8% in infarcted mice for the highest acceleration factor of 3.0. CNR calculations performed between LV myocardial wall and LV cavity revealed a maximum CNR decrease of 50% for the 3-fold accelerated data acquisition when compared to the fully-sampled acquisition.

CONCLUSIONS

We have demonstrated the feasibility of accelerated self-gated retrospective CMR in mice using the parallel imaging technique SENSE. The proposed method led to considerably reduced acquisition times, while preserving high spatial resolution at sufficiently high CNR. The accuracy of measurements of both structural and functional parameters of the mouse heart was not compromised by the application of the proposed accelerated data acquisition method.

摘要

背景

自门控动态心血管磁共振(CMR)可实现对人体疾病小鼠模型中心脏的无创可视化和心脏功能的精确评估。然而,自门控 CMR 需要采集大量数据集,以确保心脏电影的准确、无伪影重建,因此采集时间较长,对动物的生理稳定性要求较高。出于这个原因,我们评估了使用并行成像技术 SENSE 加速数据采集的可行性,以提高解剖定义和心脏功能定量的准确性。

结果

将加速数据集的结果与完全采样参考数据进行比较。我们的结果显示,短轴和长轴心脏电影的图像质量仅略有差异:即使使用四元相控阵线圈进行 3 倍加速数据采集,也能准确检测到小的解剖结构(乳头肌和主动脉瓣)和心肌梗死后的左心室(LV)重构。对健康和梗死动物的 LV 心脏功能(舒张末期容积(EDV)、收缩末期容积(ESV)、stroke volume(SV)、射血分数(EF)和 LV 质量)进行定量分析,发现所有研究的加速因子均未与参考(完全采样)数据有明显偏差,健康动物的偏差范围为 2%至 6%,梗死小鼠的偏差范围为 2%至 8%,最高加速因子为 3.0。在 LV 心肌壁和 LV 腔之间进行的 CNR 计算显示,与完全采样采集相比,3 倍加速采集的 CNR 最大下降 50%。

结论

我们已经证明了使用并行成像技术 SENSE 在小鼠中加速自门控回顾性 CMR 的可行性。该方法显著减少了采集时间,同时在足够高的 CNR 下保持了高空间分辨率。所提出的加速数据采集方法的应用并未影响对小鼠心脏结构和功能参数的测量精度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d407/2918602/49d6cd89fbeb/1532-429X-12-43-1.jpg

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