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首页> 外文期刊>Investigative radiology >An eight-channel phased array RF coil for spine MR imaging at 7 T.
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An eight-channel phased array RF coil for spine MR imaging at 7 T.

机译:用于7 T脊柱MR成像的八通道相控阵RF线圈

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摘要

OBJECTIVE: To develop a transmit/receive radiofrequency (RF) array for MR imaging of the human spine at 7 T. The prototype is characterized in simulations and bench measurements, and the feasibility of high-resolution spinal cord imaging at 7 T is demonstrated in in vivo images of volunteers. MATERIALS AND METHODS: The RF phased array consists of 8 overlapping surface loop coils with a dimension of 12 cm x 12 cm each. Bench measurements were obtained with a phantom made of body-simulating liquid and assessed with a network analyzer. For safety validation, numerical computations of the RF field distribution and the corresponding specific absorption rate were performed on the basis of 3 different human body models. In vivo images of 3 volunteers (2 with a documented scoliosis) were acquired using a 3D-FLASH sequence with a high spatial resolution of 0.57 mm isotropic. RESULTS: The 7 T transmit/receive RF coil could be easily integrated into the patient table for examinations of the cervicothoracic or thoracolumbosacral spine. Comparable results were found for all 3 numerical calculations using different human body models. Measurements of the g-factor indicated good image quality for parallel imaging acceleration factors up to 2.7 along the head-feet direction, which could be validated in the in vivo images. The in vivo images demonstrated very fine anatomic features such as the longitudinal ligaments or the venous drainage through the vertebral bodies. A largely homogeneous excitation over an extensive field-of-view of 40 cm could be obtained. CONCLUSIONS: These early results indicate that a multichannel transmit/receive phased array RF coil can be used for in vivo spine imaging at 7 T, thereby rendering high-resolution spine imaging a promising new application in 7 T clinical research.
机译:目的:开发一种发射/接收射频(RF)阵列,用于人体脊柱在7 T时的MR成像。该原型在仿真和台架测量中得到了表征,并在2000年的7 T中证明了高分辨率脊髓成像的可行性。志愿者的体内图像。材料与方法:RF相控阵由8个重叠的表面环形线圈组成,每个线圈的尺寸为12 cm x 12 cm。用人体模拟液体制成的体模获得基准测量值,并使用网络分析仪进行评估。为了安全验证,基于3种不同的人体模型对RF场分布和相应的比吸收率进行了数值计算。使用具有0.57 mm各向同性的高空间分辨率的3D-FLASH序列,获取了3名志愿者(2名有脊柱侧弯的文献)的体内图像。结果:7 T发送/接收RF线圈可以很容易地集成到患者床中,以检查宫颈胸腔或胸腰lum骨脊柱。使用不同的人体模型,对所有3个数值计算都得出了可比的结果。 g因子的测量表明,沿头部-脚部方向的平行成像加速因子高达2.7时,图像质量良好,这可以在体内图像中得到验证。体内图像显示出非常精细的解剖特征,例如纵向韧带或穿过椎体的静脉引流。可以在40厘米的宽视野范围内获得大致均匀的激励。结论:这些早期结果表明,多通道发射/接收相控阵射频线圈可用于7 T的体内脊柱成像,从而使高分辨率脊柱成像成为7 T临床研究中有希望的新应用。

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