脑皮质表面光学地形图的投影方法

M. Mourad, M. Adjouadi, I. Yaylali
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引用次数: 1

摘要

本研究旨在将二维(2-D)光学地形图与解剖磁共振成像(MRI)相结合,进行三维脑功能测绘。这种方法的独特之处在于,根据从颅骨表面获得的结果的投影,将地形图映射到大脑皮层表面。众所周知,MRI可以提供有关大脑解剖结构的信息,而光学地形系统(OTS)以地形图像的形式显示脑血流的变化。这项实验是由迈阿密儿童医院的七名志愿者进行的,他们需要反复敲击手指。两种模式的整合显示了在定位激活方面的良好前景,这是由MRI切片构建的3D脑模型上看到的(OTS)。这项任务需要开发一个计算机程序,该程序将首先识别3d头部模型上由OTS生成的地形图像所处的区域。其次,将地形图像配准到三维头部模型中;为了验证我们的发现,在MRI测试期间放置在患者头部的基准标记物(维生素E)与将检测探针位置的自动计算机程序之间进行了比较。使用大脑提取工具(BET),将扭曲的地形图投影到提取的大脑皮层表面。提出的OTS-MRI整合被认为是神经科学的一个重要领域,允许研究广泛的运动,感觉和认知功能,以及提供有关大脑解剖结构的关键信息
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Projection Approach of Optical Topographic Maps to the Cortical Surface of the Brain Abstract:
This research is aimed at integrating two-dimensional (2-D) optical topographic maps to anatomical magnetic resonance imaging (MRI) for 3-D functional brain mapping. The uniqueness of this approach is in mapping topographic maps to the cortex surface of the brain based on projections of the results obtained from the skull surface. MRI is known to provide information about the anatomical structure of the brain, while optical topography system (OTS) displays the changes in the cerebral blood flow in the form of a topographic image. The experiment is based on a repeated finger-tapping task using seven volunteers at Miami Children Hospital. The integration of both modalities reveal excellent prospects in localizing the activation that is seen by (OTS) on the 3D brain models constructed from MRI slices. This task demands the development of a computer program that will first identify the region on the 3-D head model from which the topographic image generated by OTS was taken. Second, the topographic images are registered to the 3-D head model. In order to validate our findings, a comparison is made between the fiducial markers (vitamin E) placed on the patients head during the MRI test to localize the probes location and an automated computer program that will detect the probes position. Using the brain extraction tool (BET), the warped topographic maps are then projected onto the cortex surface of the extracted brain. The proposed OTS-MRI integration is deemed an important field in the neuroscience, allowing investigation of a wide range of motor, sensory, and cognitive functions, as well as providing key information about anatomical structure of the brain
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