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Optimal mass transport based brain morphometry for patients with congenital hand deformities

机译:先天性手部畸形患者基于最佳质量传输的脑形态计量学

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Congenital hand deformities (CHD) have attracted increasing research attention in the past few decades. The impacts of CHD on the brain structure, however, are not fully studied to date. In this work, we propose a novel framework to study brain morphometry in CHD patients using Wasserstein distance based on optimal mass transport (OMT) theory. We first employ conformal mapping to map the left and right surface-based functional brain areas to planar rectangles, which pushes the area element on the brain surface to the planar rectangle and incurs the area distortion. A measure is then determined by this area distortion. We further propose a new rectangle domain-based OMT map algorithm. Given two measures on two surfaces, we employ the proposed algorithm to compute a unique OMT map between the two measures encoding the geometric information of left and right surface-based functional brain areas. The transportation cost of this OMT map gives the Wasserstein distance between two surfaces, which intrinsically measures the dissimilarities between two surface-based shapes. Our method is theoretically rigorous and computationally efficient and stable. We finally evaluate the proposed Wasserstein distance-based method on the left and right post-central gyri from the CHD patients and healthy control subjects for analyzing brain cortical morphometry. Experimental results demonstrate the efficiency and efficacy of our method, and shed insightful lights on the study of the brain morphometry for those subjects with CHD.
机译:在过去的几十年中,先天性手畸形(CHD)引起了越来越多的研究关注。迄今为止,冠心病对大脑结构的影响尚未得到充分研究。在这项工作中,我们提出了一个基于最佳质量转运(OMT)理论的使用Wasserstein距离研究CHD患者脑形态的新颖框架。我们首先采用共形映射将基于左和右基于表面的功能性大脑区域映射到平面矩形,这将脑部表面上的区域元素推到平面矩形,并导致区域失真。然后由该区域失真确定度量。我们进一步提出了一种新的基于矩形域的OMT映射算法。给定两个表面上的两个度量,我们采用提出的算法来计算两个度量之间唯一的OMT映射,该两个OMT映射对基于左右表面的功能性大脑区域的几何信息进行编码。此OMT贴图的运输成本给出了两个曲面之间的Wasserstein距离,该距离本质上测量了两个基于曲面的形状之间的差异。我们的方法在理论上是严格的,并且计算效率高且稳定。最后,我们评估了来自冠心病患者和健康对照组的左,右后中央回中提出的基于Wasserstein距离的方法,用于分析大脑皮层形态。实验结果证明了我们方法的有效性和有效性,并为那些患有冠心病的受试者的脑形态计量学研究提供了深刻的见解。

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