Diagnostic and Interventional Radiology and Nuclear Medicine, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
Obstetrics and Fetal Medicine, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
Rofo. 2022 Aug;194(8):841-851. doi: 10.1055/a-1761-3500. Epub 2022 Jul 29.
Fetal magnetic resonance imaging (MRI) has become a valuable adjunct to ultrasound in the prenatal diagnosis of congenital pathologies of the central nervous system, thorax, and abdomen. Fetal cardiovascular magnetic resonance (CMR) was limited, mainly by the lack of cardiac gating, and has only recently evolved due to technical developments.
A literature search was performed on PubMed, focusing on technical advancements to perform fetal CMR. In total, 20 publications on cardiac gating techniques in the human fetus were analyzed.
Fetal MRI is a safe imaging method with no developmental impairments found to be associated with in utero exposure to MRI. Fetal CMR is challenging due to general drawbacks (e. g., fetal motion) and specific limitations such as the difficulty to generate a cardiac gating signal to achieve high spatiotemporal resolution. Promising technical advancements include new methods for fetal cardiac gating, based on novel post-processing approaches and an external hardware device, as well as motion compensation and acceleration techniques.
Newly developed direct and indirect gating approaches were successfully applied to achieve high-quality morphologic and functional imaging as well as quantitative assessment of fetal hemodynamics in research settings. In cases when prenatal echocardiography is limited, e. g., by an unfavorable fetal position in utero, or when its results are inconclusive, fetal CMR could potentially serve as a valuable adjunct in the prenatal assessment of congenital cardiovascular malformations. However, sufficient data on the diagnostic performance and clinical benefit of new fetal CMR techniques is still lacking.
· New fetal cardiac gating methods allow high-quality fetal CMR.. · Motion compensation and acceleration techniques allow for improvement of image quality.. · Fetal CMR could potentially serve as an adjunct to fetal echocardiography in the future..
· Knapp J, Tavares de Sousa M, Schönnagel BP. Fetal Cardiovascular MRI - A Systemic Review of the Literature: Challenges, New Technical Developments, and Perspectives. Fortschr Röntgenstr 2022; 194: 841 - 851.
胎儿磁共振成像(MRI)已成为产前诊断中枢神经系统、胸部和腹部先天性病变的超声辅助手段。由于心脏门控技术的缺乏,胎儿心血管磁共振(CMR)一直受到限制,直到最近才随着技术的发展而发展。
在 PubMed 上进行了文献检索,重点是进行胎儿 CMR 的技术进展。共分析了 20 篇关于人类胎儿心脏门控技术的出版物。
胎儿 MRI 是一种安全的成像方法,没有发现与宫内 MRI 暴露相关的发育损伤。由于一般缺陷(例如胎儿运动)和特定限制(例如难以产生心脏门控信号以实现高时空分辨率),胎儿 CMR 具有挑战性。有前途的技术进展包括基于新的后处理方法和外部硬件设备的新的胎儿心脏门控方法,以及运动补偿和加速技术。
新开发的直接和间接门控方法已成功应用于在研究环境中实现高质量的形态和功能成像以及胎儿血液动力学的定量评估。在产前超声检查受到限制的情况下,例如在宫内胎儿位置不利的情况下,或者其结果不确定的情况下,胎儿 CMR 可能作为先天性心血管畸形产前评估的有用辅助手段。然而,关于新的胎儿 CMR 技术的诊断性能和临床获益的充分数据仍然缺乏。
·新的胎儿心脏门控方法可实现高质量的胎儿 CMR。·运动补偿和加速技术可提高图像质量。·胎儿 CMR 将来可能作为胎儿超声心动图的辅助手段。
·Knapp J, Tavares de Sousa M, Schönnagel BP. Fetal Cardiovascular MRI - A Systemic Review of the Literature: Challenges, New Technical Developments, and Perspectives. Fortschr Röntgenstr 2022; 194: 841 - 851.