Pediatric magnetic resonance imaging: faster is better

被引:0
作者
Sebastian Gallo-Bernal
M. Alejandra Bedoya
Michael S. Gee
Camilo Jaimes
机构
[1] Massachusetts General Hospital,Department of Radiology
[2] Harvard Medical School,Department of Radiology
[3] Boston Children’s Hospital,Department of Radiology
来源
Pediatric Radiology | 2023年 / 53卷
关键词
Acceleration; Acquisition time; Children; Magnetic resonance imaging; Protocols; Pulse sequences;
D O I
暂无
中图分类号
学科分类号
摘要
Magnetic resonance imaging (MRI) has emerged as the preferred imaging modality for evaluating a wide range of pediatric medical conditions. Nevertheless, the long acquisition times associated with this technique can limit its widespread use in young children, resulting in motion-degraded or non-diagnostic studies. As a result, sedation or general anesthesia is often necessary to obtain diagnostic images, which has implications for the safety profile of MRI, the cost of the exam and the radiology department’s clinical workflow. Over the last decade, several techniques have been developed to increase the speed of MRI, including parallel imaging, single-shot acquisition, controlled aliasing techniques, compressed sensing and artificial-intelligence-based reconstructions. These are advantageous because shorter examinations decrease the need for sedation and the severity of motion artifacts, increase scanner throughput, and improve system efficiency. In this review we discuss a framework for image acceleration in children that includes the synergistic use of state-of-the-art MRI hardware and optimized pulse sequences. The discussion is framed within the context of pediatric radiology and incorporates the authors’ experience in deploying these techniques in routine clinical practice.
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页码:1270 / 1284
页数:14
相关论文
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