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High resolution brain imaging with combined parallel-hole and pinhole collimation

机译:结合平行孔和针孔准直的高分辨率脑成像

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A brain single photon emission computed tomography (SPECT) imager is simulated for obtaining high resolution brain scans for diagnosing brain ischemia. In this simulation the camera consists of one large field of view detector with parallel-hole collimation and a smaller field of view high resolution detector with pinhole collimation. The parallel-hole collimated detector images the whole brain and acquires data without truncation. It localizes areas of particular diagnostic interest, and also provides support information for the reconstruction of data acquired by the pinhole collimated detectors. The pinhole collimated detector images small regions of the brain. It provides high resolution truncated projections, from which a high resolution region of interest (ROI) is obtained. The reconstruction is performed using a maximum a posteriori (MAP) estimate with total variation regularization within the ROI. The low resolution image from the parallel-hole collimated detector is used as prior information. This improves the quantitation for the interior problem. The combination of a large field of view parallel-hole collimated detector and a smaller field of view high resolution pinhole detector improves the quantitation in the simulated brain imaging study. It makes use of the high sensitivity of the pinhole collimator while compensates for the degradation in the reconstructed image due to interior problem caused by the small field of view of the pinhole collimator. Our simulations show potential for clinical application, where the quantitation of cerebral blood flow (CBF) and cerebral vascular reactivity (CVR) are valuable in diagnosis of ischemia, and the quantitation of benzodiazepine receptor density is important in evaluating neuronal damage due to ischemic effects.
机译:模拟脑单光子发射计算机断层扫描(SPECT)成像器,以获得用于诊断脑缺血的高分辨率脑扫描。在此模拟中,摄像机由一个具有平行孔准直的大视野检测器和一个具有针孔准直的较小视野的高分辨率检测器组成。平行孔准直检测器可对整个大脑进行成像,并能无截断地获取数据。它可以定位具有特殊诊断意义的区域,还可以为针孔准直检测器获取的数据重建提供支持信息。针孔准直探测器对大脑的小区域成像。它提供了高分辨率的截断投影,可以从中获得高分辨率的关注区域(ROI)。使用最大后验(MAP)估计值进行重构,并在ROI内进行总变化正则化。来自平行孔准直检测器的低分辨率图像用作先验信息。这改善了内部问题的定量。大视野平行孔准直检测器和小视野高分辨率针孔检测器的组合可改善模拟脑成像研究中的定量。它利用了针孔准直器的高灵敏度,同时补偿了由于针孔准直器的小视野所引起的内部问题而导致的重建图像的劣化。我们的模拟显示了临床应用的潜力,其中脑血流量(CBF)和脑血管反应性(CVR)的定量对缺血的诊断很有价值,而苯二氮卓受体密度的定量在评估由于缺血作用引起的神经元损害中很重要。

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