...
首页> 外文期刊>The Open Spectroscopy Journal >Improved 1.5 T Magnetic Resonance Spectroscopy in the Human Calf with a Spatially Selective Radio Frequency Surface Coil
【24h】

Improved 1.5 T Magnetic Resonance Spectroscopy in the Human Calf with a Spatially Selective Radio Frequency Surface Coil

机译:具有空间选择性射频表面线圈的人小腿的改进的1.5 T磁共振波谱

获取原文
           

摘要

We describe the use of a transverse field RF surface coil that improves 1.5 T proton MR spectroscopy in the human calf. A 2-element figure-of-eight (FO8) transverse field RF surface coil (diameter 2R=10 cm; separation between the two linear current elements 2s=1cm) and a circular loop (CL) coil of equal diameter where built and tested with proton PRESS spectra at 1.5 T. The 1H PRESS spectra obtained in the resting calf muscle of healthy volunteers showed that the FO8 coil allows a higher PRESS SNR (up to a factor 4.5) within a region of about 20 mm centred at about 12 mm from the coil plane, as compared to a standard CL coil. We found also a faster PRESS SNR decrease in the muscle tissue for anterior/posterior distance > 20 mm using the FO8 coil. The measured PRESS SNR in the fat tissues of the calf showed a signal mostly localised within 10 mm from the coils surface and with an improved SNR (up to 5.5 times) observed in the presence of the FO8 coil as compared to the CL coil of equal diameter. The FO8 coil design can be advantageous for MRS applications, since it allows higher SNR from a small VOI positioned centrally within a relatively narrow region at a given depth in the human calf. The reported spatial SNR features of the FO8 coil design should also be useful for 1H and 31P MRS metabolites quantification in the human brain.
机译:我们描述了在人小腿中改善1.5 T质子MR光谱的横向场RF表面线圈的使用。建造并测试了由2个元件组成的8字形(FO8)横向场RF表面线圈(直径2R = 10 cm;两个线性电流元件之间的间隔2s = 1cm)和相等直径的圆环(CL)线圈在1.5 T时具有质子PRESS光谱。在健康志愿者的小腿静止肌肉中获得的1H PRESS光谱显示,FO8线圈在以20毫米为中心(约12毫米)的区域内具有较高的PRESS SNR(最高达4.5倍)。与标准CL线圈相比,从线圈平面开始。我们还发现,使用FO8线圈,前后距离> 20 mm时,肌肉组织中PRESS SNR的下降速度更快。在小腿脂肪组织中测得的PRESS SNR显示出的信号主要定位在距线圈表面10 mm以内的位置,与FO8线圈相比,与同等CL线圈相比,该信号具有改善的SNR(最高5.5倍)直径。 FO8线圈设计对于MRS应用可能是有利的,因为它允许来自小VOI的较高SNR,该VOI集中在人小腿中给定深度的相对狭窄区域内。报道的FO8线圈设计的空间SNR特征对于人脑中1H和31P MRS代谢物的定量分析也应该是有用的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号