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7T 下人体乳房酰胺质子转移成像:开发与可重复性。

Amide proton transfer imaging of the human breast at 7T: development and reproducibility.

机构信息

Department of Radiology, University Medical Center Utrecht, Utrecht, the Netherlands; Institute of Imaging Science, Vanderbilt, Nashville, USA.

出版信息

NMR Biomed. 2013 Oct;26(10):1271-7. doi: 10.1002/nbm.2947. Epub 2013 Apr 4.

Abstract

Chemical exchange saturation transfer (CEST) can offer information about protons associated with mobile proteins through the amide proton transfer (APT) effect, which has been shown to discriminate tumor from healthy tissue and, more recently, has been suggested as a prognosticator of response to therapy. Despite this promise, APT effects are small (only a few percent of the total signal), and APT imaging is often prone to artifacts resulting from system instability. Here we present a procedure that enables the detection of APT effects in the human breast at 7T while mitigating these issues. Adequate signal-to-noise ratio (SNR) was achieved via an optimized quadrature RF breast coil and 3D acquisitions. To reduce the influence of fat, effective fat suppression schemes were developed that did not degrade SNR. To reduce the levels of ghosting artifacts, dummy scans have been integrated into the scanning protocol. Compared with results obtained at 3T, the standard deviation of the measured APT effect was reduced by a factor of four at 7T, allowing for the detection of APT effects with a standard deviation of 1% in the human breast at 7T. Together, these results demonstrate that the APT effect can be reliably detected in the healthy human breast with a high level of precision at 7T.

摘要

化学交换饱和传递 (CEST) 可以通过酰胺质子转移 (APT) 效应提供与移动蛋白相关的质子信息,该效应已被证明可区分肿瘤与健康组织,并且最近被认为是对治疗反应的预后指标。尽管有这样的前景,但 APT 效应很小(仅占总信号的百分之几),并且 APT 成像通常容易受到系统不稳定导致的伪影的影响。在这里,我们提出了一种在 7T 下检测人体乳房中 APT 效应的方法,同时减轻了这些问题。通过优化的正交射频乳房线圈和 3D 采集实现了足够的信噪比 (SNR)。为了减少脂肪的影响,开发了有效的脂肪抑制方案,不会降低 SNR。为了减少鬼影伪影的水平,已将虚拟扫描集成到扫描协议中。与在 3T 获得的结果相比,在 7T 时测量的 APT 效应的标准偏差降低了四倍,从而可以在 7T 下检测到标准偏差为 1%的人体乳房中的 APT 效应。这些结果表明,在 7T 下,APT 效应可以可靠地在健康的人体乳房中以高精度检测到。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9a5/3726578/57dd2ad4e4cc/nihms-458412-f0001.jpg

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