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A portable single-sided magnet system for remote NMR measurements of pulmonary function

机译:便携式单面磁体系统用于远程NMR测量肺功能

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摘要

In this work, we report initial results from a light-weight, low field magnetic resonance device designed to make relative pulmonary density measurements at the bedside. The development of this device necessarily involves special considerations for the magnet, RF and data acquisition schemes as well as a careful analysis of what is needed to provide useful information in the ICU. A homogeneous field region is created remotely from the surface of the magnet such that when the magnet is placed against the chest, an NMR signal is measured from a small volume in the lung. In order to achieve portability, one must trade off field strength and therefore spatial resolution. We report initial measurements from a ping-pong ball size region in the lung as a function of lung volume. As expected, we measured decreased signal at larger lung volumes since lung density decreases with increasing lung volume. Using a CPMG sequence with ΔTE=3.5 ms and a 20 echo train, a signal to noise ratio ~1100 was obtained from an 8.8mT planar magnet after signal averaging for 43 s. This is the first demonstration of NMR measurements made on a human lung with a light-weight planar NMR device. We argue that very low spatial resolution measurements of different lobar lung regions will provide useful diagnostic information for clinicians treating Acute Respiratory Distress Syndrome as clinicians want to avoid ventilator pressures that cause either lung over distension (too much pressure) or lung collapse (too little pressure).
机译:在这项工作中,我们报告了一种轻型低场磁共振设备的初步结果,该设备旨在在床旁进行相对肺密度测量。该设备的开发必然涉及磁体,RF和数据采集方案的特殊考虑,以及对在ICU中提供有用信息所需的仔细分析。远离磁体表面产生均匀的磁场区域,这样当将磁体放在胸部时,可以从肺中的一小部分测量NMR信号。为了实现便携性,必须权衡场强和空间分辨率。我们报告了肺中乒乓球大小区域的初始测量值与肺体积的关系。不出所料,由于肺密度随肺容积的增加而降低,因此在较大肺容积下测量的信号减少。使用ΔTE= 3.5 ms的CPMG序列和20个回波序列,在信号平均43 s后,从8.8mT平面磁体获得信噪比〜1100。这是使用轻型平面NMR装置在人肺上进行NMR测量的第一个演示。我们认为,不同肺叶肺区域的极低空间分辨率测量值将为治疗急性呼吸窘迫综合征的临床医生提供有用的诊断信息,因为临床医生希望避免呼吸机压力导致呼吸机过度膨胀(压力太大)或肺塌陷(压力太小) )。

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