Eryaman Yiğitcan, Oner Yusuf, Atalar Ergin
Department of Electrical and Electronics Engineering, Bilkent University, 06800 Ankara, Turkey.
MAGMA. 2009 Aug;22(4):221-8. doi: 10.1007/s10334-009-0167-1. Epub 2009 Mar 27.
Internal MRI coils have important applications in diagnostic and interventional studies. Since they can be placed very close to the region of interest in the body, they are favored over external coils in applications where high-resolution images are required. In this paper it is demonstrated that ultimate intrinsic SNR (UISNR) and the optimum coil sensitivity solutions can be used to make new coil designs with higher intrinsic SNR.
In this study, UISNR, which is the maximum attainable value of the intrinsic SNR, is used as a measure of performance and as a design criterion. As an example, a novel endorectal MRI coil is designed. The design is tested with phantom and patient studies.
An endorectal coil is built to demonstrate the effectiveness of the design strategy. ISNR of the endorectal coil approximates the UISNR to 72%.
An internal coil design method that takes advantage of the UISNR and optimum coil sensitivity calculations was presented. This method can also be used to design better internal MRI coils for different applications.
内部磁共振成像(MRI)线圈在诊断和介入研究中具有重要应用。由于它们可以放置在非常靠近身体感兴趣区域的位置,在需要高分辨率图像的应用中,它们比外部线圈更受青睐。本文表明,极限固有信噪比(UISNR)和最佳线圈灵敏度解决方案可用于制造具有更高固有信噪比的新型线圈设计。
在本研究中,UISNR(即固有信噪比的最大可达到值)用作性能度量和设计标准。例如,设计了一种新型直肠内MRI线圈。该设计通过模型和患者研究进行测试。
构建了一个直肠内线圈以证明设计策略的有效性。直肠内线圈的固有信噪比(ISNR)接近UISNR的72%。
提出了一种利用UISNR和最佳线圈灵敏度计算的内部线圈设计方法。该方法也可用于为不同应用设计更好的内部MRI线圈。