相关实验视频
Updated: Jun 26, 2025

08:51
Magnetic Resonance Imaging of Multiple Sclerosis at 7.0 Tesla
Published on: February 19, 2021
9.0K
全身磁共振成像在0.05特斯拉
Yujiao Zhao1,2, Ye Ding1,2, Vick Lau1,2
1Laboratory of Biomedical Imaging and Signal Processing, The University of Hong Kong, Pokfulam, Hong Kong SAR, China.
概括
一个新的超低场磁共振成像 (MRI) 扫描仪使用深度学习和永久磁铁. 这种经济实惠的MRI技术可以在任何地方运行,
科学领域:
- 医学成像
- 生物医学工程
- 医疗保健中的人工智能
背景情况:
- 全球磁共振成像 (MRI) 的可用性有限且不均,尽管数十年的进步.
- 早期的MRI专注于低电场,但在1983年之后,进展转向高电场超导磁体.
- 现有的MRI技术面临成本,基础设施和在不同医疗机构的可访问性方面的挑战.
研究的目的:
- 研发一种可负担的全身核磁共振扫描仪.
- 克服传统高场MRI系统的局限性.
- 通过深度学习提高超低场MRI图像质量.
主要方法:
- 开发了一种使用0.05特斯拉磁铁的全身扫描仪.
- 使用深度学习来消除电磁干扰.
- 实现了3D深度学习重建,利用高场MRI数据进行图像增强.
主要成果:
- 在没有特殊屏蔽的情况下使用标准功率的功能全身MRI扫描仪.
- 展示了扫描仪用于各种解剖结构的可用性.
- 通过深度学习重建技术实现了更好的图像质量.
结论:
- 开发的超低场MRI扫描仪为提高全球MRI可访问性提供了潜在的解决方案.
- 深度学习的整合显著提高了图像质量,使得低场MRI在临床上可行.
- 这项技术为全球缺乏医疗服务的地区提供了实惠,强大的核磁共振系统.
相关概念视频
Magnetic Resonance Imaging
5.1K
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...
5.1K
Atomic Nuclei: Magnetic Resonance
647
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...
647

