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相关概念视频

Double Resonance Techniques: Overview01:12

Double Resonance Techniques: Overview

191
Double resonance techniques in Nuclear Magnetic Resonance (NMR) spectroscopy involve the simultaneous application of two different frequencies or radiofrequency pulses to manipulate and observe two distinct nuclear spins. One important application of double resonance is spin decoupling, which selectively suppresses coupling with one type of nucleus while observing the NMR signal from another nucleus, simplifying the spectrum and enhancing resolution.
Spin decoupling is usually achieved by...
191
NMR Spectrometers: Radiofrequency Pulses and Pulse Sequences01:17

NMR Spectrometers: Radiofrequency Pulses and Pulse Sequences

772
A pulse is a short burst of radio waves distributed over a range of frequencies that simultaneously excites all the nuclei in the sample. Upon passing a radio frequency pulse along the x-axis, the nuclei absorb energy corresponding to their Larmor frequencies and achieve resonance. This shifts the net magnetization vector from the z-axis toward the transverse plane. This angle of rotation of the magnetization vector, or the flip angle, is proportional to the duration and intensity of the pulse.
772
Magnetic Resonance Imaging01:24

Magnetic Resonance Imaging

5.0K
Magnetic resonance imaging (MRI) is a noninvasive medical imaging technique based on a phenomenon of nuclear physics discovered in the 1930s, in which matter exposed to magnetic fields and radio waves was found to emit radio signals. In 1970, a physician and researcher named Raymond Damadian noticed that malignant (cancerous) tissue gave off different signals than normal body tissue. He applied for a patent for the first MRI scanning device in clinical use by the early 1980s. The early MRI...
5.0K
Atomic Nuclei: Magnetic Resonance01:05

Atomic Nuclei: Magnetic Resonance

636
The number of nuclear spins aligned in the lower energy state is slightly greater than those in the higher energy state. In the presence of an external magnetic field, as the spins precess at the Larmor frequency, the excess population results in a net magnetization oriented along the z axis. When a pulse or a short burst of radio waves at the Larmor frequency is applied along the x axis, the coupling of frequencies causes resonance and flips the nuclear spins of the excess population from the...
636
Two-Dimensional (2D) NMR: Overview01:12

Two-Dimensional (2D) NMR: Overview

628
The 1D NMR spectrum of large and complex molecules like natural products has complicated splitting patterns and overlapping signals, which can be easily interpreted using 2-dimensional (2D) NMR. Unlike 1D NMR, 2D NMR has two frequency axes that provide the coupling information between the nucleus A and nucleus B in a molecule. The process from which 2D spectra are obtained has four steps.
The first step is the preparation period, during which nucleus A is excited with a radiofrequency pulse....
628
¹H NMR Signal Multiplicity: Splitting Patterns01:13

¹H NMR Signal Multiplicity: Splitting Patterns

5.0K
When protons A and X are coupled, their nuclear spin energy levels are slightly modified. This is because the energy required to excite proton A to a spin state parallel to proton X is slightly different from the energy required for it to become anti-parallel to spin X. Consequently, there are two possible excitation frequencies for A (A1 and A2), depending on the spin state of X, and vice versa. The mutual nature of coupling implies that the difference between frequencies A1 and A2, indicated...
5.0K

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相关实验视频

Updated: Jun 10, 2025

Multiple-mouse Neuroanatomical Magnetic Resonance Imaging
09:08

Multiple-mouse Neuroanatomical Magnetic Resonance Imaging

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通过单个射频频道同时进行多核核磁共振成像.

Mohammad Rasool Vaezi K1, Jan G Korvink1, Mazin Jouda1

  • 1Karlsruhe Institute of Technology (KIT), Institute of Microstructure Technology, Karlsruhe 76131, Germany.

Journal of magnetic resonance (San Diego, Calif. : 1997)
|October 16, 2024
PubMed
概括

本研究介绍了一种新的数字锁定放大器,用于使用单个射频通道进行同时的多核磁共振成像 (MRI). 这项创新大大减少了扫描时间,系统复杂性和硬件成本,而不会影响图像质量.

科学领域:

  • 医疗成像医学成像
  • 物理 物理学 物理
  • 工程 工程师 工程师 工程师

背景情况:

  • 磁共振成像 (MRI) 是一种强大的非侵入性成像技术,具有广泛的应用.
  • 目前的多核核磁共振扫描需要每个核的专用硬件,增加复杂性和成本.
  • 从多个核中获取多维数据集可以增强MRI的能力.

研究的目的:

  • 开发一种同时使用单个射频 (RF) 通道进行多核核磁共振成像的方法.
  • 为此目的展示使用数字锁定放大器的可行性.
  • 评估对成像质量,扫描时间和系统成本的影响.

主要方法:

  • 实现用于信号检测的数字锁定放大器.
  • 同时采集1H和19FMRI图像,使用单个射频频道.
  • 为了增强数据采集,采用了并行成像技术.

主要成果:

  • 成功演示了使用单个射频频道同时进行多核核核磁共振 (1H和19F).
  • 实现了与商业单通道系统 (SNR 43) 相同的图像质量 (SNR 54).
  • 拟议的方法显示了可扩展到更多核的可扩展性,而无需增加硬件或扫描时间.
关键词:
宽带射频线圈 宽带射频线圈数字锁定式放大器的数字放大器平行多核核核磁共振成像一个RF频道的MRI.

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Last Updated: Jun 10, 2025

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结论:

  • 一个数字锁定放大器可以同时使用单个射频通道进行多核核核磁共振.
  • 这种方法显著减少了扫描时间,系统复杂性和硬件成本.
  • 该技术为先进的MRI应用提供了可扩展和成本有效的解决方案.