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首页> 外文期刊>NeuroImage: Clinical >A white matter lesion-filling approach to improve brain tissue volume measurements
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A white matter lesion-filling approach to improve brain tissue volume measurements

机译:一种白质病变填充方法,以改善脑组织体积测量

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Multiple sclerosis white matter (WM) lesions can affect brain tissue volume measurements of voxel-wise segmentation methods if these lesions are included in the segmentation process. Several authors have presented different techniques to improve brain tissue volume estimations by filling WM lesions before segmentation with intensities similar to those of WM. Here, we propose a new method to refill WM lesions, where contrary to similar approaches, lesion voxel intensities are replaced by random values of a normal distribution generated from the mean WM signal intensity of each two-dimensional slice. We test the performance of our method by estimating the deviation in tissue volume between a set of 30 T1-w 1.5?T and 30 T1-w 3?T images of healthy subjects and the same images where: WM lesions have been previously registered and afterwards replaced their voxel intensities to those between gray matter (GM) and WM tissue. Tissue volume is computed independently using FAST and SPM8. When compared with the state-of-the-art methods, on 1.5?T data our method yields the lowest deviation in WM between original and filled images, independently of the segmentation method used. It also performs the lowest differences in GM when FAST is used and equals to the best method when SPM8 is employed. On 3?T data, our method also outperforms the state-of-the-art methods when FAST is used while performs similar to the best method when SPM8 is used. The proposed technique is currently available to researchers as a stand-alone program and as an SPM extension.
机译:如果这些病变包括在分割过程中,多发性硬化白质(WM)病变会影响体素 - 明智的分段方法的脑组织体积测量。几个作者提出了不同的技术,以通过在与WM类似的强度的分割前填充WM病变来改善脑组织体积估计。在这里,我们提出了一种新的方法来重新填充WM病变的方法,其中与相似的方法相反,病变体素强度由从每个二维切片的平均Wm信号强度产生的正态分布的随机值代替。我们通过估计30T1-W1.5≤T和30T1-W3βT和30 T1-W3βT图像之间的组织体积的偏差和相同的图像来测试方法的性能,其中:WM病变先前已经注册了之后,将体素的强度取代为灰质(GM)和WM组织之间的体素强度。使用快速和SPM8独立地计算组织体积。与最先进的方法相比,在1.5?T数据上,我们的方法在原始和填充图像之间的方法中产生最低的WM偏差,独立于所使用的分段方法。它还在使用快速时执行最低的GM差异,并且当采用SPM8时等于最佳方法。在3?T数据上,我们的方法还优于最先进的方法,当使用SPM8时,使用快速使用时快速使用。该提出的技术目前可供研究人员作为独立计划,作为SPM扩展。

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