Division of Natural Science, Mathematics, and Nursing, Berea College, Berea, Kentucky 40403, USA.
J Chem Phys. 2012 Jun 7;136(21):211104. doi: 10.1063/1.4728105.
We present an improved and general approach for implementing echo train acquisition (ETA) in magnetic resonance spectroscopy, particularly where the conventional approach of Carr-Purcell-Meiboom-Gill (CPMG) acquisition would produce numerous artifacts. Generally, adding ETA to any N-dimensional experiment creates an N + 1 dimensional experiment, with an additional dimension associated with the echo count, n, or an evolution time that is an integer multiple of the spacing between echo maxima. Here we present a modified approach, called phase incremented echo train acquisition (PIETA), where the phase of the mixing pulse and every other refocusing pulse, φ(P), is incremented as a single variable, creating an additional phase dimension in what becomes an N + 2 dimensional experiment. A Fourier transform with respect to the PIETA phase, φ(P), converts the φ(P) dimension into a Δp dimension where desired signals can be easily separated from undesired coherence transfer pathway signals, thereby avoiding cumbersome or intractable phase cycling schemes where the receiver phase must follow a master equation. This simple modification eliminates numerous artifacts present in NMR experiments employing CPMG acquisition and allows "single-scan" measurements of transverse relaxation and J-couplings. Additionally, unlike CPMG, we show how PIETA can be appended to experiments with phase modulated signals after the mixing pulse.
我们提出了一种改进的、通用的方法来实现磁共振波谱中的回波串采集(ETA),特别是在传统的 Carr-Purcell-Meiboom-Gill(CPMG)采集方法会产生大量伪影的情况下。通常,在任何 N 维实验中添加 ETA 会创建一个 N + 1 维实验,其中额外的维度与回波计数 n 或与回波最大值之间的间隔的整数倍的演化时间相关联。在这里,我们提出了一种改进的方法,称为相位递增回波串采集(PIETA),其中混合脉冲和每个其他重聚焦脉冲的相位φ(P)作为单个变量递增,从而在成为 N + 2 维实验的过程中创建了一个附加的相位维度。关于 PIETA 相位的傅里叶变换将 φ(P)维度转换为 Δp 维度,其中可以轻松地将期望信号与不期望的相干转移途径信号分离,从而避免了接收器相位必须遵循主方程的繁琐或难以处理的相循环方案。这种简单的修改消除了在使用 CPMG 采集的 NMR 实验中存在的许多伪影,并允许对横向弛豫和 J 耦合进行“单扫描”测量。此外,与 CPMG 不同,我们展示了如何在混合脉冲之后将 PIETA 附加到具有相位调制信号的实验中。