8通道解耦阵列用于3T颈脊髓成像:6通道后路和2通道前路阵列线圈

IF 0.9 4区 医学 Q4 CHEMISTRY, PHYSICAL Concepts in Magnetic Resonance Part B-Magnetic Resonance Engineering Pub Date : 2016-08-26 DOI:10.1002/cmr.b.21325
Nabraj Sapkota, Bijaya Thapa, YouJung Lee, Taeho Kim, Erica F. Bisson, Lubdha M. Shah, John W. Rose, Eun-Kee Jeong
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引用次数: 5

摘要

本研究的目的是开发一种专用的高信噪比(SNR)射频线圈,用于颈脊髓(CSC)成像,而不使用前置放大器解耦技术。构建了一种新型的八通道CSC阵列,采用了蝴蝶、环形(圆形)和矩形单元。相邻单元采用临界几何重叠解耦,非相邻单元采用环形和蝶形解耦。在3T MRI系统的t2加权图像、弥散张量图像和超高b弥散加权图像上,将所提出的CSC线圈的性能与标准制造商线圈(西门子的头、颈和脊柱阵列)的性能进行比较。在t2加权图像中,在不同的CSC椎体水平上,8通道CSC线圈的信噪比比制造商线圈提高了1.4-2.0倍。与制造商的线圈相比,使用八通道CSC线圈获得的弥散加权(b = 500 s/mm2)图像和分数各向异性图中观察到白质和灰质之间的对比度更高。与制造商的线圈相比,8通道CSC线圈在超高b (b = 7348 s/mm2)径向扩散加权图像的白质区域产生的信噪比高出2.0倍。
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Eight-channel decoupled array for cervical spinal cord imaging at 3T: six-channel posterior and two-channel anterior array coil

The purpose of this study was to develop a dedicated high signal-to-noise ratio (SNR) radio frequency coil for cervical spinal cord (CSC) imaging without using the preamp decoupling technique. A novel eight-channel CSC array was constructed using butterfly, loop (circular), and rectangular elements. The adjacent elements were decoupled by the critical geometrical overlapping, and most non-adjacent elements were decoupled using the loop and butterfly elements. The performance of the proposed CSC coil was compared with the performance of the standard manufacturer's coil (Siemens' head, neck, and spine array) at 3T MRI system in T2-weighted images, diffusion tensor images, and ultrahigh-b diffusion-weighted images. In T2-weighted images, the SNR improvement of the eight-channel CSC coil was 1.4–2.0 times over the manufacturer's coil at the different levels of the CSC vertebrae. Higher contrast between white matter and gray matter was observed in the diffusion-weighted (b = 500 s/mm2) images and the fractional anisotropy maps obtained using the eight-channel CSC coil compared with the manufacturer's coil. The eight-channel CSC coil yielded 2.0 times higher SNR compared with the manufacturer's coil from the white matter region of the ultrahigh-b (b = 7348 s/mm2) radial diffusion-weighted images.

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来源期刊
CiteScore
2.60
自引率
0.00%
发文量
3
审稿时长
>12 weeks
期刊介绍: Concepts in Magnetic Resonance Part B brings together engineers and physicists involved in the design and development of hardware and software employed in magnetic resonance techniques. The journal welcomes contributions predominantly from the fields of magnetic resonance imaging (MRI), nuclear magnetic resonance (NMR), and electron paramagnetic resonance (EPR), but also encourages submissions relating to less common magnetic resonance imaging and analytical methods. Contributors come from both academia and industry, to report the latest advancements in the development of instrumentation and computer programming to underpin medical, non-medical, and analytical magnetic resonance techniques.
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