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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Strategies for improved temporal and spectral resolution in in vivo oximetric imaging using time-domain EPR.
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Strategies for improved temporal and spectral resolution in in vivo oximetric imaging using time-domain EPR.

机译:使用时域EPR改善体内血氧成像中时间和光谱分辨率的策略。

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A radiofrequency (RF) time-domain electron paramagnetic resonance (EPR) instrument operating at 300, 600, and 750 MHz was used to image tumor hypoxia with high spatial and temporal resolution. A high-speed signal-averaging Peripheral Component Interconnect (PCI) board with flexibility in the input signal level and the number of digitized samples per free induction decay (FID) was incorporated into the receive arm of the spectrometer. This enabled effective and fast averaging of FIDs. Modification of the phase-encoding protocol, and replacement of the General Purpose Interface Bus (GPIB)-based handshake with a PCI-based D/A board for direct control of the gradient amplifier decreased the gradient settling and communication overhead times by nearly two orders of magnitude. Cyclically-ordered phase sequence (CYCLOPS) phase cycling was implemented to correct for pulse imperfections and cancel out unwanted constant signals. These upgrades considerably enhanced the performance of the imager in terms of imagecollection time, sensitivity, and temporal resolution. We demonstrated this by collecting a large number of 2D images successively and rapidly. The results show that it is feasible to achieve accurate, 2D pO(2) maps of tumor hypoxia with 1-mm(2) resolution and minimal artifacts using a set of multigradient images within an acceptable measuring time of about 3 s, and 3D maps can be obtained in less than 1 min.
机译:使用在300、600和750 MHz下运行的射频(RF)时域电子顺磁共振(EPR)仪器以高时空分辨率对肿瘤缺氧进行成像。在输入信号电平和每自由感应衰减(FID)的数字化样本数量上具有灵活性的高速信号平均外围组件互连(PCI)板已合并到光谱仪的接收臂中。这可以实现FID的有效和快速平均。修改相位编码协议,并用基于PCI的D / A板替换基于通用接口总线(GPIB)的握手来直接控制梯度放大器,将梯度建立和通信开销时间减少了近两个数量级数量级。实施了循环有序的相序(CYCLOPS)相循环以校正脉冲缺陷并消除不需要的恒定信号。这些升级在图像采集时间,灵敏度和时间分辨率方面大大提高了成像仪的性能。我们通过连续快速地收集大量2D图像来证明这一点。结果表明,在大约3 s的可接受测量时间内,使用一组多梯度图像在1mm(2)分辨率和最少伪影下获得精确的2D pO(2)肿瘤缺氧图和3D映射是可行的不到1分钟即可获得。

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