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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Improvements of transmit efficiency and receive sensitivity with ultrahigh dielectric constant (uHDC) ceramics at 1.5 T and 3 T
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Improvements of transmit efficiency and receive sensitivity with ultrahigh dielectric constant (uHDC) ceramics at 1.5 T and 3 T

机译:发射效率的改进,并在1.5T和3 T处与超高介电常数(UHDC)陶瓷接收灵敏度

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Purpose Incorporating high dielectric constant (HDC) materials into radiofrequency (RF) coils has been shown to effectively improve RF coil performance at 7 and 3?T because of the induced displacement current in the high dielectric constant materials. The displacement current is proportional to the RF field frequency and permittivity of the material. The aim of this paper is to investigate the effect of high dielectric constant materials with even greater permittivity on the RF field at 1.5?T and 3?T. Methods Several monolithic ceramic materials with an ultrahigh dielectric constant ranging from 1200 to 3300 were investigated at 1.5?T and 3?T with phantom and human brain imaging along with computer modeling. Results Experimental measurements in phantom studies showed a significant enhancement of signal‐to‐noise ratio (50–100%) and strong transmission power reduction (3–27‐fold). Under suboptimal experimental conditions in this study, the signal‐to‐noise ratio in the human brain cortex was nearly doubled, which produced high‐resolution image without the associated stronger magnetic susceptibility artifacts and elevated specific absorption rate concerns at higher field strengths. Conclusions Use of ultrahigh dielectric constant ceramic materials is a simple and low‐cost approach that could further improve the RF technology to maximize image signal‐to‐noise ratio and reduce RF energy deposition for human studies. Magn Reson Med 79:2842–2851, 2018. ? 2017 International Society for Magnetic Resonance in Medicine.
机译:目的,由于高介电常数材料中的感应位移电流,已经示出了将高介电常数(HDC)材料进入射频(RF)线圈的射频(RF)线圈中的射频线圈性能。位移电流与材料的RF场频率和介电常数成比例。本文的目的是研究高介电常数材料在1.5≤T和3≤T的RF场更大的介电常数的影响。方法采用1200至3300的超高介电常数的几种单片陶瓷材料在1.5℃和3℃下进行幽灵和人脑成像以及计算机建模。结果幻影研究的实验测量显示出的信噪比(50-100%)和强大的传输功率降低(3-27倍)显着提高了显着提高。在本研究中的次优的实验条件下,人脑皮层中的信噪比几乎增加了一倍,其在没有相关的较强的磁化率伪影的情况下产生高分辨率图像,并且在更高的场强的较高场强的较高的吸收率问题上产生了高分辨率的图像。结论使用超高介电常数陶瓷材料是一种简单且低成本的方法,可以进一步提高RF技术,以最大化图像信噪比并降低人类研究的RF能量沉积。 Magn Reson Med 79:2842-2851,2018 2017年医学磁共振的国际社会。

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