首页> 外文会议>Annual Rocky Mountain Bioengineering Symposium >HEAD MODELING FOR REALISTIC ELECTRICAL BRAIN ACTIVITY MAPPING: IDENTIFICATION OF A MULTIMODAL NEUROIMAGING PROTOCOL
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HEAD MODELING FOR REALISTIC ELECTRICAL BRAIN ACTIVITY MAPPING: IDENTIFICATION OF A MULTIMODAL NEUROIMAGING PROTOCOL

机译:现实电脑活动的头部建模映射:鉴定多模式神经影像协议

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Realistic electrical brain activity mapping implies reconstructing and visualizing sources of electrical brain activity within the specific patient's head. This requires the assumption of a precise and realistic volume conductor model of the specific subject's head, i.e., a 3-D representation of the head's electrical properties in terms of shape and electrical conductivities. Source reconstruction accuracy is influenced by errors committed in head modeling. Clinical images, MRI and CT, are used to identify the head structures to be included in the volume conductor head model. Modeling accuracy mainly relies on the correct image-based identification of head structures, characterized by different electrical conductivities, to be included as separate compartments in the model. This paper analyzes the imaging protocols used in clinical practice to define the most suitable procedures for identification of the various head structures necessary to build an accurate head model also in the presence of morphologic brain pathologies. Furthermore, tissues anisotropy is discussed and identified as well. With this work we have identified a protocol for the acquisition of multimodal patient's imaging data for realistic electrical brain activity mapping purposes, able to account for pathological conditions and for head tissues anisotropy.
机译:现实电脑活动映射意味着在特定患者头部内重建和可视化电脑活动源。这需要特定被摄体的头部的精确的和现实的体积导体模型的假设,即,在形状和电导率方面所涉及的头的电特性的3-d表示。源重建准确性受到头部建模中提出的错误的影响。临床图像,MRI和CT,用于识别要包含在体积导体头模型中的头部结构。建模精度主要依赖于正确的图像的头部结构识别,其特征在于不同的电导率,包括在模型中的单独隔室。本文分析了临床实践中使用的成像协议,以确定最合适的程序,用于鉴定构建精确头模型所需的各种头部结构的过程也在形态学脑病理的存在下。此外,还讨论并鉴定了组织各向异性。通过这项工作,我们已经确定了一种用于获取用于现实电脑活动映射目的的多模式患者的成像数据的协议,能够考虑病理条件和头组织各向异性。

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