首页> 外文会议>International Conference on Medical Image Computing and Computer-Assisted Intervention(MICCAI 2007) pt.2; 20071029-1102; Brisbane(AU) >Customised Cytoarchitectonic Probability Maps Using Deformable Registration: Primary Auditory Cortex
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Customised Cytoarchitectonic Probability Maps Using Deformable Registration: Primary Auditory Cortex

机译:使用可变形配准的自定义细胞建筑师概率图:主听皮层。

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A novel method is presented for creating a probability map from histologically defined cytoarchitectonic data, customised for the anatomy of individual fMRI volunteers. Postmortem structural and cytoarchitectonic information from a published dataset is combined with high resolution structural MR images using deformable registration of a region of interest. In this paper, we have targeted the three sub-areas of the primary auditory cortex (located on Heschl's gyrus); however, the method could be applied to any other cytoarchitectonic region. The resulting probability maps show a significantly higher overlap than previously generated maps using the same cytoarchitectonic data, and more accurately span the macroanatomical structure of the auditory cortex. This improvement indicates a high potential for spatially accurate fMRI analysis, allowing more reliable correlation between anatomical structure and function. We validate the approach using fMRI data from nine individuals, taken from a published dataset. We compare activation for stimuli evoking a pitch percept to activation for acoustically matched noise, and demonstrate that the primary auditory cortex (Te1.0) and the lateral region Te1.2 are sensitive to pitch, whereas Te1.1 is not.
机译:提出了一种新方法,用于根据组织学定义的细胞建筑学数据创建概率图,该数据针对个体fMRI志愿者的解剖情况进行了定制。使用感兴趣区域的可变形配准,将来自已发布数据集的验尸结构和细胞建筑信息与高分辨率结构MR图像结合。在本文中,我们针对了主要听觉皮层的三个子区域(位于赫氏回旋区)。然而,该方法可以应用于任何其他细胞结构区域。所得的概率图显示出比以前使用相同的细胞建筑数据生成的图显着更高的重叠度,并且更准确地跨越了听觉皮层的宏观解剖结构。这种改进表明空间精确的功能磁共振成像分析具有很高的潜力,可以在解剖结构和功能之间实现更可靠的关联。我们使用来自公布的数据集的9个人的fMRI数据验证了该方法。我们比较激发音调感知到声音匹配的噪声的激活激活,并证明主要听觉皮层(Te1.0)和外侧区域Te1.2对音高敏感,而Te1.1则不敏感。

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