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7T 无环圈介入天线。

Interventional loopless antenna at 7 T.

机构信息

Russell H. Morgan Department of Radiology and Radiological Science, Johns Hopkins University, Baltimore, Maryland, United States of America.

出版信息

Magn Reson Med. 2012 Sep;68(3):980-8. doi: 10.1002/mrm.23280. Epub 2011 Dec 12.

Abstract

The loopless antenna magnetic resonance imaging detector is comprised of a tuned coaxial cable with an extended central conductor that can be fabricated at submillimeter diameters for interventional use in guidewires, catheters, or needles. Prior work up to 4.7 T suggests a near-quadratic gain in signal-to-noise ratio with field strength and safe operation at 3 T. Here, for the first time, the signal-to-noise ratio performance and radiofrequency safety of the loopless antenna are investigated both theoretically, using the electromagnetic method-of-moments, and experimentally in a standard 7 T human scanner. The results are compared with equivalent 3 T devices. An absolute signal-to-noise ratio gain of 5.7 ± 1.5-fold was realized at 7 T vs. 3 T: more than 20-fold higher than at 1.5 T. The effective field-of-view area also increased approximately 10-fold compared with 3 T. Testing in a saline gel phantom suggested that safe operation is possible with maximum local 1-g average specific absorption rates of <12 W kg(-1) and temperature increases of <1.9°C, normalized to a 4 W kg(-1) radiofrequency field exposure at 7 T. The antenna did not affect the power applied to the scanner's transmit coil. The signal-to-noise ratio gain enabled magnetic resonance imaging microscopy at 40-50 μm resolution in diseased human arterial specimens, offering the potential of high-resolution large-field-of-view or endoscopic magnetic resonance imaging for targeted intervention in focal disease.

摘要

无环路天线磁共振成像探测器由调谐同轴线和延伸的中央导体组成,其直径可达到亚毫米级,可用于导丝、导管或针内介入。高达 4.7T 的先前研究表明,信号与噪声比随磁场强度呈近二次方增长,在 3T 时安全运行。在这里,首次从理论上(使用电磁矩量法)和在标准 7T 人体扫描仪中进行实验,研究了无环路天线的信噪比性能和射频安全性。将结果与等效的 3T 设备进行了比较。在 7T 时,与 3T 相比,实现了 5.7±1.5 倍的绝对信噪比增益:比 1.5T 时高 20 多倍。与 3T 相比,有效视野面积也增加了约 10 倍。在盐水凝胶体模中的测试表明,最大局部 1 克平均比吸收率<12 W/kg 和温度升高<1.9°C 是安全的,归一化为 7T 时 4 W/kg 的射频场暴露。天线不会影响施加到扫描仪发射线圈的功率。信噪比增益使得在患病的人类动脉标本中可以实现 40-50μm 分辨率的磁共振成像显微镜,为在局灶性疾病中进行靶向介入提供了高分辨率大视野或内窥镜磁共振成像的潜力。

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1
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2
Uniform prostate imaging and spectroscopy at 7 T: comparison between a microstrip array and an endorectal coil.
NMR Biomed. 2011 May;24(4):358-65. doi: 10.1002/nbm.1599. Epub 2010 Oct 19.
3
Designing passive MRI-safe implantable conducting leads with electrodes.
Med Phys. 2010 Jul;37(7):3828-43. doi: 10.1118/1.3439590.
4
Performance of external and internal coil configurations for prostate investigations at 7 T.
Magn Reson Med. 2010 Dec;64(6):1625-39. doi: 10.1002/mrm.22552. Epub 2010 Aug 25.
5
Interventional MRI: tapering improves the distal sensitivity of the loopless antenna.
Magn Reson Med. 2010 Mar;63(3):797-802. doi: 10.1002/mrm.22152.
7
MRI endoscopy using intrinsically localized probes.
Med Phys. 2009 Mar;36(3):908-19. doi: 10.1118/1.3077125.
8
Proton spectroscopic imaging of the human prostate at 7 T.
NMR Biomed. 2009 Jun;22(5):495-501. doi: 10.1002/nbm.1360.
9
Whole-body imaging at 7T: preliminary results.
Magn Reson Med. 2009 Jan;61(1):244-8. doi: 10.1002/mrm.21751.
10
Specific absorption rate studies of the parallel transmission of inner-volume excitations at 7T.
J Magn Reson Imaging. 2008 Oct;28(4):1005-18. doi: 10.1002/jmri.21548.

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