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Ultra high spatial and temporal resolution breast imaging at 7T

机译:7T超高时空分辨率乳房成像

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There is a need to obtain higher specificity in the detection of breast lesions using MRI. To address this need, Dynamic Contrast-Enhanced (DCE) MRI has been combined with other structural and functional MRI techniques. Unfortunately, owing to time constraints structural images at ultra-high spatial resolution can generally not be obtained during contrast uptake, whereas the relatively low spatial resolution of functional imaging (e.g. diffusion and perfusion) limits the detection of small lesions. To be able to increase spatial as well as temporal resolution simultaneously, the sensitivity ofMR detection needs to increase as well as the ability to effectively accelerate the acquisition. The required gain in signal-to-noise ratio (SNR) can be obtained at 7T, whereas acceleration can be obtained with high-density receiver coil arrays. In this case, morphological imaging can be merged with DCE-MRI, and other functional techniques can be obtained at higher spatial resolution, and with less distortion [e.g. Diffusion Weighted Imaging (DWI)]. To test the feasibility of this concept, we developed a unilateral breast coil for 7T. It comprises a volume optimized dual-channel transmit coil combined with a 30-channel receive array coil. The high density of small coil elements enabled efficient acceleration in any direction to acquire ultra high spatial resolutionMRI of close to 0.6mmisotropic detail within a temporal resolution of 69 s, high spatial resolution MRI of 1.5mmisotropic within an ultra high temporal resolution of 6.7 s and lowdistortion DWI at 7T, all validated in phantoms, healthy volunteers and a patientwith a lesion in the right breast classified as Breast Imaging Reporting and Data System (BI-RADS) IV.
机译:在使用MRI检测乳腺病变方面需要获得更高的特异性。为了满足这一需求,动态对比度增强(DCE)MRI已与其他结构和功能MRI技术相结合。不幸的是,由于时间的限制,在对比剂摄取期间通常不能获得超高空间分辨率的结构图像,而功能成像的相对低空间分辨率(例如扩散和灌注)限制了对小病变的检测。为了能够同时提高空间和时间分辨率,需要增加MR检测的灵敏度以及有效加速采集的能力。所需的信噪比(SNR)增益可以在7T时获得,而加速度可以通过高密度接收器线圈阵列获得。在这种情况下,可以将形态成像与DCE-MRI合并,并且可以以较高的空间分辨率和较小的失真获得其他功能技术。扩散加权成像(DWI)]。为了测试此概念的可行性,我们开发了用于7T的单侧乳房线圈。它包括一个体积优化的双通道发射线圈和一个30通道接收阵列线圈。小线圈元件的高密度使得可以在任何方向上进行有效加速,以在69 s的时间分辨率内获得接近0.6mm各向同性细节的超高空间分辨率MRI,在6.7 s的超高时间分辨率内获得1.5mmisotropic的高空间分辨率MRI和低畸变DWI在7T时均已在幻影,健康志愿者和右乳房病变患者中进行了验证,被分类为“乳房成像报告和数据系统(BI-RADS)IV”。

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