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正电子发射断层扫描-磁共振成像混合系统的未来前景及其在精神疾病中的应用

Future Prospects of Positron Emission Tomography-Magnetic Resonance Imaging Hybrid Systems and Applications in Psychiatric Disorders.

作者信息

Son Young-Don, Kim Young-Bo, Kim Jong-Hoon, Kim Jeong-Hee, Kwon Dae-Hyuk, Lee Haigun, Cho Zang-Hee

机构信息

Department of Biomedical Engineering, College of Health Science, Gachon University, Incheon 21936, Korea.

Neuroscience Research Institute, Gachon University, Incheon 21565, Korea.

出版信息

Pharmaceuticals (Basel). 2022 May 8;15(5):583. doi: 10.3390/ph15050583.

Abstract

A positron emission tomography (PET)-magnetic resonance imaging (MRI) hybrid system has been developed to improve the accuracy of molecular imaging with structural imaging. However, the mismatch in spatial resolution between the two systems hinders the use of the hybrid system. As the magnetic field of the MRI increased up to 7.0 tesla in the commercial system, the performance of the MRI system largely improved. Several technical attempts in terms of the detector and the software used with the PET were made to improve the performance. As a result, the high resolution of the PET-MRI fusion system enables quantitation of metabolism and molecular information in the small substructures of the brainstem, hippocampus, and thalamus. Many studies on psychiatric disorders, which are difficult to diagnose with medical imaging, have been accomplished using various radioligands, but only a few studies have been conducted using the PET-MRI fusion system. To increase the clinical usefulness of medical imaging in psychiatric disorders, a high-resolution PET-MRI fusion system can play a key role by providing important information on both molecular and structural aspects in the fine structures of the brain. The development of high-resolution PET-MR systems and their potential roles in clinical studies of psychiatric disorders were reviewed as prospective views in future diagnostics.

摘要

一种正电子发射断层扫描(PET)-磁共振成像(MRI)混合系统已被开发出来,以提高分子成像与结构成像的准确性。然而,这两个系统之间的空间分辨率不匹配阻碍了混合系统的使用。随着商业系统中MRI的磁场强度增加到7.0特斯拉,MRI系统的性能有了很大提高。在PET所使用的探测器和软件方面进行了几次技术尝试以提高性能。结果,PET-MRI融合系统的高分辨率能够对脑干、海马体和丘脑的小亚结构中的代谢和分子信息进行定量分析。许多关于难以通过医学成像诊断的精神疾病的研究,使用各种放射性配体已经完成,但使用PET-MRI融合系统进行的研究却很少。为了提高医学成像在精神疾病中的临床实用性,高分辨率PET-MRI融合系统可以通过提供大脑精细结构中分子和结构方面的重要信息发挥关键作用。高分辨率PET-MR系统的发展及其在精神疾病临床研究中的潜在作用作为未来诊断的前瞻性观点进行了综述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a849/9147426/fe4fa594bdca/pharmaceuticals-15-00583-g001.jpg

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