计算机科学
磁共振弥散成像
磁共振成像
脉冲场梯度
梯度回波
核磁共振
扩散
生物医学工程
物理
医学
放射科
热力学
作者
Natalia Gudino,Sebastian Littin
摘要
In magnetic resonance imaging (MRI), spatial field gradients are applied along each axis to encode the location of the nuclear spin in the frequency domain. During recent years, the development of new gradient technologies has been focused on the generation of stronger and faster gradient fields for imaging with higher spatial and temporal resolution. This benefits imaging methods, such as brain diffusion and functional MRI, and enables human imaging at ultra‐high field MRI. In addition to improving gradient performance, new technologies have been presented to minimize peripheral nerve stimulation and gradient‐related acoustic noise, both generated by the rapid switching of strong gradient fields. This review will provide a general background on the gradient system and update on the state‐of‐the‐art gradient technology. Evidence Level 5 Technical Efficacy Stage 1
科研通智能强力驱动
Strongly Powered by AbleSci AI