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MRI-based anatomical model of the human head for specific absorption rate mapping.

机译:基于MRI的人体头部解剖模型,用于特定吸收率映射。

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摘要

In this study, we present a magnetic resonance imaging (MRI)-based, high-resolution, numerical model of the head of a healthy human subject. In order to formulate the model, we performed quantitative volumetric segmentation on the human head, using T1-weighted MRI. The high spatial resolution used (1 x 1 x 1 mm(3)), allowed for the precise computation and visualization of a higher number of anatomical structures than provided by previous models. Furthermore, the high spatial resolution allowed us to study individual thin anatomical structures of clinical relevance not visible by the standard model currently adopted in computational bioelectromagnetics. When we computed the electromagnetic field and specific absorption rate (SAR) at 7 Tesla MRI using this high-resolution model, we were able to obtain a detailed visualization of such fine anatomical structures as the epidermis/dermis, bone structures, bone-marrow, white matter and nasal and eye structures.
机译:在这项研究中,我们提出了基于磁共振成像(MRI)的健康人类受试者头部的高分辨率数字模型。为了建立模型,我们使用T1加权MRI对人体头部进行了定量的体积分割。所使用的高空间分辨率(1 x 1 x 1 mm(3))允许对比先前模型提供的解剖结构更多数量的解剖结构进行精确计算和可视化。此外,高空间分辨率使我们能够研究目前在计算生物电磁学中采用的标准模型看不到的具有临床相关性的单个薄解剖结构。当我们使用这种高分辨率模型在7 Tesla MRI上计算电磁场和比吸收率(SAR)时,我们能够获得详细的可视化图像,例如表皮/真皮,骨骼结构,骨髓,白质以及鼻和眼结构。

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