...
首页> 外文期刊>Journal of magnetic resonance >Pure-Phase Selective Excitation in Fast-Relaxing Systems
【24h】

Pure-Phase Selective Excitation in Fast-Relaxing Systems

机译:快速放松系统中的纯相选择性励磁

获取原文
获取原文并翻译 | 示例
           

摘要

Selective pulses have been used frequently for small molecules. However, their application to proteins and other macromolecules has been limited. The long duration of shaped-selective pulses and the short T_2 relaxation times in proteins often prohibited the use of highly selective pulses especially on larger biomolecules. A very selective excitation can be obtained within a short time by using the selective excitation sequence presented in this paper. Instead of using a shaped low-intensity radiofrequency pulse, a cluster of hard 90°pulses, delays of free precession, and pulsed field gradients can be used to selectively excite a narrow chemical shift range within a relatively short time. Thereby, off-resonance magnetization, which is allowed to evolve freely during the free precession intervals, is destroyed by the gradient pulses. Off-resonance excitation artifacts can be removed by random variation of the interpulse delays. This leads to an excitation profile with selectivity as well as phase and relaxation behavior superior to that of commonly used shaped-selective pulses. Since the evolution of scalar coupling is inherently suppressed during the double-selective excitation of two different scalar-coupled nuclei, the presented pulse cluster is especially suited for simultaneous highly selective excitation of N-H and C-H fragments. Experimental examples are demonstrated on hen egg white lysozyme (14 kD) and the bacterial antidote ParD (19 kD).
机译:选择性脉冲经常用于小分子。但是,它们在蛋白质和其他大分子中的应用受到限制。形状选择脉冲的持续时间长,蛋白质中的T_2弛豫时间短,通常会禁止使用高选择性脉冲,尤其是在较大的生物分子上。通过使用本文介绍的选择性激发序列,可以在短时间内获得非常选择性的激发。代替使用成形的低强度射频脉冲,可以使用一簇硬90°脉冲,自由进动的延迟和脉冲场梯度来在相对较短的时间内选择性激发窄的化学位移范围。由此,允许在自由进动间隔期间自由发展的失谐磁化被梯度脉冲破坏。失谐激励伪影可以通过脉冲间延迟的随机变化来消除。这导致具有优于常用的定形选择脉冲的选择性,相位和弛豫特性的激励曲线。由于在两个不同的标量耦合核的双选择激发过程中固有地抑制了标量耦合的演化,因此提出的脉冲簇特别适用于同时选择性选择性激发N-H和C-H片段。在鸡蛋清溶菌酶(14 kD)和细菌解毒剂ParD(19 kD)上证明了实验示例。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号