首页> 外文会议>MICCAI 2011;International conference on medical image computing and computer-assisted intervention >Spatiotemporal Morphometry of Adjacent Tissue Layers with Application to the Study of Sulcal Formation
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Spatiotemporal Morphometry of Adjacent Tissue Layers with Application to the Study of Sulcal Formation

机译:相邻组织层的时空形态学及其在沟形成研究中的应用

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The process of brain growth involves the expansion of tissue at different rates at different points within the brain. As the layers within the developing brain evolve they can thicken or increase in area as the brain surface begins to fold. In this work we propose a new spatiotemporal formulation of tensor based volume morphometry that is derived in relation to tissue boundaries. This allows the study of the directional properties of tissue growth by separately characterizing the changes in area and thickness of the adjacent layers. The approach uses temporally weighted, local regression across a population of anatomies with different ages to model changes in components of the growth radial and tangential to the boundary between tissue layers. The formulation is applied to the study of sulcal formation from in-utero MR imaging of human fetal brain anatomy. Results show that the method detects differential growth of tissue layers adjacent to the cortical surface, particularly at sulcal locations, as earlv as 22 eestational weeks.
机译:脑部生长的过程涉及在脑内不同部位以不同速率扩张组织。随着大脑内各层的发展,它们会随着大脑表面开始折叠而变厚或增大。在这项工作中,我们提出了一种基于张量的新的时空公式,它是根据组织边界导出的。通过分别表征相邻层的面积和厚度变化,可以研究组织生长的方向性。该方法使用跨年龄不同的解剖群体的时间加权局部回归来模拟生长径向和与组织层之间的边界相切的分量的变化。该制剂被用于研究人类胎儿脑部解剖的MR成像中的沟形成。结果表明,该方法可检测到皮层表面附近组织层的差异性生长,尤其是在沟的位置,直到22个离血周。

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