Mašková Barbora, Rožánek Martin, Gajdoš Ondřej, Karnoub Evgeniia, Kamenský Vojtěch, Donin Gleb
Department of Biomedical Technology, Czech Technical University in Prague, 272 01 Kladno, Czech Republic.
Diagnostics (Basel). 2024 Jul 19;14(14):1564. doi: 10.3390/diagnostics14141564.
In recent years, there has been an increasing effort to take advantage of the potential use of low magnetic induction devices with less than 1 T, referred to as Low-Field MRI (LF MRI). LF MRI systems were used, especially in the early days of magnetic resonance technology. Over time, magnetic induction values of 1.5 and 3 T have become the standard for clinical devices, mainly because LF MRI systems were suffering from significantly lower quality of the images, e.g., signal-noise ratio. In recent years, due to advances in image processing with artificial intelligence, there has been an increasing effort to take advantage of the potential use of LF MRI with induction of less than 1 T. This overview article focuses on the analysis of the evidence concerning the diagnostic efficacy of modern LF MRI systems and the clinical comparison of LF MRI with 1.5 T systems in imaging the nervous system, musculoskeletal system, and organs of the chest, abdomen, and pelvis.
A systematic literature review of MEDLINE, PubMed, Scopus, Web of Science, and CENTRAL databases for the period 2018-2023 was performed according to the recommended PRISMA protocol. Data were analysed to identify studies comparing the accuracy, reliability and diagnostic performance of LF MRI technology compared to available 1.5 T MRI.
A total of 1275 publications were retrieved from the selected databases. Only two articles meeting all predefined inclusion criteria were selected for detailed assessment.
A limited number of robust studies on the accuracy and diagnostic performance of LF MRI compared with 1.5 T MRI was available. The current evidence is not sufficient to draw any definitive insights. More scientific research is needed to make informed conclusions regarding the effectiveness of LF MRI technology.
近年来,人们越来越努力利用低于1T的低磁感应设备(称为低场磁共振成像(LF MRI))的潜在用途。LF MRI系统曾被使用,尤其是在磁共振技术的早期。随着时间的推移,1.5T和3T的磁感应值已成为临床设备的标准,主要是因为LF MRI系统的图像质量明显较低,例如信噪比。近年来,由于人工智能图像处理技术的进步,人们越来越努力利用低于1T磁感应强度的LF MRI的潜在用途。这篇综述文章重点分析了有关现代LF MRI系统诊断效能的证据,以及LF MRI与1.5T系统在神经系统、肌肉骨骼系统以及胸部、腹部和骨盆器官成像方面的临床比较。
根据推荐的PRISMA协议,对2018 - 2023年期间的MEDLINE、PubMed、Scopus、Web of Science和CENTRAL数据库进行了系统的文献综述。分析数据以确定比较LF MRI技术与现有1.5T MRI的准确性、可靠性和诊断性能的研究。
从选定的数据库中检索到共1275篇出版物。仅选择了两篇符合所有预定义纳入标准的文章进行详细评估。
与1.5T MRI相比,关于LF MRI准确性和诊断性能的可靠研究数量有限。目前的证据不足以得出任何明确的见解。需要更多的科学研究才能就LF MRI技术的有效性得出明智的结论。