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Image-based segmentation for characterization and quantitative analysis of the spinal cord injuries by using diffusion patterns

机译:基于图像的分割,通过扩散模式表征和定量分析脊髓损伤

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In medical imaging, magnetic resonance imaging sequences are able to provide information of the damaged brain structure and the neuronal connections. The sequences can be analyzed to form 3D models of the geometry and further including functional information of the neurons of the specific brain area to develop functional models. Modeling offers a tool which can be used for the modeling of brain trauma from images of the patients and thus information to tailor the properties of the transplanted cells. In this paper, we present image-based methods for the analysis of human spinal cord injuries. In this effort, we use three dimensional diffusion tensor imaging, which is an effective method for analyzing the response of the water molecules. This way, our idea is to study how the injury affects on the tissues and how this can be made visible in the imaging. In this paper, we present here a study of spinal cord analysis to two subjects, one healthy volunteer and one spinal cord injury patient. We have done segmentations and volumetric analysis for detection of anatomical differences. The functional differences are analyzed by using diffusion tensor imaging. The obtained results show that this kind of analysis is capable of finding differences in spinal cords anatomy and function.
机译:在医学成像中,磁共振成像序列能够提供受损的大脑结构和神经元连接的信息。可以分析序列以形成几何形状的3D模型,并进一步包括特定大脑区域神经元的功能信息以开发功能模型。建模提供了一种工具,可用于从患者图像中建模大脑创伤,从而为定制移植细胞的特性提供信息。在本文中,我们提出了基于图像的方法来分析人类脊髓损伤。在这项工作中,我们使用三维扩散张量成像,这是分析水分子响应的有效方法。这样,我们的想法是研究损伤如何影响组织以及如何在成像中使其可见。在本文中,我们在此对两名受试者(一名健康志愿者和一名脊髓损伤患者)进行脊髓分析研究。我们已经进行了分割和体积分析,以检测解剖学差异。通过使用扩散张量成像分析功能差异。获得的结果表明,这种分析能够发现脊髓解剖结构和功能方面的差异。

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