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校正定量脑灌注磁共振成像中动脉输入函数的部分容积伪影。

Correcting partial volume artifacts of the arterial input function in quantitative cerebral perfusion MRI.

作者信息

van Osch M J, Vonken E J, Bakker C J, Viergever M A

机构信息

Department of Radiology, Image Sciences Institute, University Hospital Utrecht, Utrecht, The Netherlands.

出版信息

Magn Reson Med. 2001 Mar;45(3):477-85. doi: 10.1002/1522-2594(200103)45:3<477::aid-mrm1063>3.0.co;2-4.

Abstract

To quantify cerebral perfusion with dynamic susceptibility contrast MRI (DSC-MRI), one needs to measure the arterial input function (AIF). Conventionally, one derives the contrast concentration from the DSC sequence by monitoring changes in either the amplitude or the phase signal on the assumption that the signal arises completely from blood. In practice, partial volume artifacts are inevitable because a compromise has to be reached between the temporal and spatial resolution of the DSC acquisition. As the concentration of the contrast agent increases, the vector of the complex blood signal follows a spiral-like trajectory. In the case of a partial-volume voxel, the spiral is located around the static contribution of the surrounding tissue. If the static contribution of the background tissue is disregarded, estimations of the contrast concentration will be incorrect. By optimizing the correspondence between phase information and amplitude information one can estimate the origin of the spiral, and thereupon correct for partial volume artifacts. This correction is shown to be accurate at low spatial resolutions for phantom data and to improve the AIF determination in a clinical example. Magn Reson Med 45:477-485, 2001.

摘要

为了通过动态磁敏感对比磁共振成像(DSC-MRI)定量脑灌注,需要测量动脉输入函数(AIF)。传统上,人们通过监测幅度或相位信号的变化,从DSC序列中得出对比剂浓度,前提是信号完全来自血液。实际上,部分容积伪影是不可避免的,因为必须在DSC采集的时间分辨率和空间分辨率之间达成妥协。随着对比剂浓度增加,复血信号的矢量遵循螺旋状轨迹。在部分容积体素的情况下,螺旋围绕周围组织的静态成分。如果忽略背景组织的静态成分,对比剂浓度的估计将是不正确的。通过优化相位信息和幅度信息之间的对应关系,可以估计螺旋的起源,从而校正部分容积伪影。对于体模数据,这种校正在低空间分辨率下被证明是准确的,并且在一个临床实例中改善了AIF的测定。《磁共振医学》45:477 - 485,2001年。

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