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一种带有集成生理监测功能的便携式呼吸机,用于啮齿动物的极化氙 MRI 成像。

A portable ventilator with integrated physiologic monitoring for hyperpolarized Xe MRI in rodents.

机构信息

Biomedical Engineering, Duke University, Durham, NC, USA.

Radiology, Duke University Medical Center, Durham, NC, USA.

出版信息

J Magn Reson. 2018 Oct;295:63-71. doi: 10.1016/j.jmr.2018.07.017. Epub 2018 Jul 23.

Abstract

Hyperpolarized (HP) Xe MRI is emerging as a powerful, non-invasive method to image lung function and is beginning to find clinical application across a range of conditions. As clinical implementation progresses, it becomes important to translate back to well-defined animal models, where novel disease signatures can be characterized longitudinally and validated against histology. To date, preclinical Xe MRI has been limited to only a few sites worldwide with 2D imaging that is not generally sufficient to fully capture the heterogeneity of lung disease. To address these limitations and facilitate broader dissemination, we report on a compact and portable HP gas ventilator that integrates all the gas-delivery and physiologic monitoring capabilities required for high-resolution 3D hyperpolarized Xe imaging. This ventilator is MR- and HP-gas compatible, driven by inexpensive microcontrollers and open source code, and allows for precise control of the tidal volume and breathing cycle in perorally intubated mice and rats. We use the system to demonstrate data acquisition over multiple breath-holds, during which lung motion is suspended to enable high-resolution 3D imaging of gas-phase and dissolved-phase Xe in the lungs. We demonstrate the portability and versatility of the ventilator by imaging a mouse model of lung cancer longitudinally at 2 Tesla, and a healthy rat at 7 Tesla. We also report the detection of subtle spectroscopic fluctuations in phase with the heart rate, superimposed onto larger variations stemming from the respiratory cycle. This ventilator was developed to facilitate duplication and gain broad adoption to accelerate preclinical Xe MRI research.

摘要

极化氙气(HP)MRI 正成为一种强大的、非侵入性的肺部功能成像方法,并开始在一系列疾病中得到临床应用。随着临床应用的推进,将其转化为定义明确的动物模型变得非常重要,这样就可以对新型疾病特征进行长期跟踪,并与组织学进行验证。迄今为止,临床前 Xe MRI 仅在全球少数几个地点进行了二维成像,这种方法通常不足以完全捕获肺部疾病的异质性。为了解决这些限制并促进更广泛的传播,我们报告了一种紧凑、便携式的 HP 气体呼吸机,它集成了所有气体输送和生理监测功能,可实现高分辨率 3D 极化氙气成像。该呼吸机与磁共振和 HP 气体兼容,由价格低廉的微控制器和开源代码驱动,可实现经口插管的小鼠和大鼠的潮气量和呼吸周期的精确控制。我们使用该系统演示了在多次屏气过程中的数据采集,在此过程中,肺部运动被暂停,从而能够对肺部的气相和溶解相 Xe 进行高分辨率 3D 成像。我们通过在 2T 下对肺癌小鼠模型进行长期成像,以及在 7T 下对健康大鼠进行成像,展示了该呼吸机的便携性和多功能性。我们还报告了在与心率相位同步的情况下检测到细微的光谱波动,这些波动叠加在源自呼吸周期的较大变化上。该呼吸机的开发旨在促进复制和广泛采用,以加速临床前 Xe MRI 研究。

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