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Noninvasive estimation of the arterial input function in positron emission tomography imaging of cerebral blood flow

机译:脑血流正电子发射断层显像中动脉输入功能的无创估计

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摘要

Positron emission tomography (PET) with 15O-labeled water can provide reliable measurement of cerebral blood flow (CBF). Quantification of CBF requires knowledge of the arterial input function (AIF), which is usually provided by arterial blood sampling. However, arterial sampling is invasive. Moreover, the blood generally is sampled at the wrist, which does not perfectly represent the AIF of the brain, because of the effects of delay and dispersion. We developed and validated a new noninvasive method to obtain the AIF directly by PET imaging of the internal carotid artery in a region of interest (ROI) defined by coregistered high-resolution magnetic resonance angiography. An ROI centered at the petrous portion of the internal carotid artery was defined, and the AIF was estimated simultaneously with whole brain blood flow. The image-derived AIF (IDAIF) method was validated against conventional arterial sampling. The IDAIF generated highly reproducible CBF estimations, generally in good agreement with the conventional technique.
机译:带有 15 O标记的水的正电子发射断层扫描(PET)可以提供可靠的脑血流量(CBF)测量。 CBF的定量需要了解动脉输入功能(AIF),通常由动脉血采样提供。但是,动脉采样是侵入性的。此外,由于延迟和分散的影响,血液通常在手腕处采样,这不能完全代表大脑的AIF。我们开发并验证了一种新的非侵入性方法,可通过对共颈高分辨率磁共振血管造影术定义的感兴趣区域(ROI)内颈动脉进行PET成像直接获得AIF。定义了以颈内动脉狭窄部分为中心的ROI,并与全脑血流同时估计了AIF。图像衍生的AIF(IDAIF)方法已针对常规动脉采样进行了验证。 IDAIF生成的CBF估计值可重复性很高,通常与常规技术非常吻合。

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