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弥散磁共振成像技术对人类嗅道的微观结构和嗅纹的描绘。

Mapping the Microstructure and Striae of the Human Olfactory Tract with Diffusion MRI.

机构信息

Department of Neurology, Northwestern University, Feinberg School of Medicine, Chicago, Illinois 60611.

The Graduate School, Northwestern University Interdepartmental Neuroscience (NUIN), Evanston, Illinois 60208.

出版信息

J Neurosci. 2022 Jan 5;42(1):58-68. doi: 10.1523/JNEUROSCI.1552-21.2021. Epub 2021 Nov 10.

Abstract

The human sense of smell plays an important role in appetite and food intake, detecting environmental threats, social interactions, and memory processing. However, little is known about the neural circuity supporting its function. The olfactory tracts project from the olfactory bulb along the base of the frontal cortex, branching into several striae to meet diverse cortical regions. Historically, using diffusion magnetic resonance imaging (dMRI) to reconstruct the human olfactory tracts has been prevented by susceptibility and motion artifacts. Here, we used a dMRI method with readout segmentation of long variable echo-trains (RESOLVE) to minimize image distortions and characterize the human olfactory tracts We collected high-resolution dMRI data from 25 healthy human participants (12 male and 13 female) and performed probabilistic tractography using constrained spherical deconvolution (CSD). At the individual subject level, we identified the lateral, medial, and intermediate striae with their respective cortical connections to the piriform cortex and amygdala (AMY), olfactory tubercle (OT), and anterior olfactory nucleus (AON). We combined individual results across subjects to create a normalized, probabilistic atlas of the olfactory tracts. We then investigated the relationship between olfactory perceptual scores and measures of white matter integrity, including mean diffusivity (MD). Importantly, we found that olfactory tract MD negatively correlated with odor discrimination performance. In summary, our results provide a detailed characterization of the connectivity of the human olfactory tracts and demonstrate an association between their structural integrity and olfactory perceptual function. This study provides the first detailed description of the cortical connectivity of the three olfactory tract striae in the human brain, using diffusion magnetic resonance imaging (dMRI). Additionally, we show that tract microstructure correlates with performance on an odor discrimination task, suggesting a link between the structural integrity of the olfactory tracts and odor perception. Lastly, we generated a normalized probabilistic atlas of the olfactory tracts that may be used in future research to study its integrity in health and disease.

摘要

人类的嗅觉在食欲和食物摄入、检测环境威胁、社交互动和记忆处理中起着重要作用。然而,人们对支持嗅觉功能的神经回路知之甚少。嗅束从嗅球沿着额皮质底部投射,分支成几个纹状体,与不同的皮质区域相连接。从历史上看,使用扩散磁共振成像 (dMRI) 来重建人类嗅束受到了敏感性和运动伪影的阻碍。在这里,我们使用一种带有长变量回波序列读出分割 (RESOLVE) 的 dMRI 方法来最小化图像失真,并对人类嗅束进行特征描述。我们从 25 名健康的人类参与者(12 名男性和 13 名女性)中收集了高分辨率的 dMRI 数据,并使用约束球内反卷积 (CSD) 进行概率追踪。在个体层面上,我们确定了外侧、内侧和中间纹状体及其与梨状皮层和杏仁核 (AMY)、嗅结节 (OT) 和前嗅核 (AON) 的皮质连接。我们将个体结果结合起来,创建了一个嗅束的标准化、概率图谱。然后,我们研究了嗅觉感知评分与包括平均扩散系数 (MD) 在内的白质完整性测量值之间的关系。重要的是,我们发现嗅束 MD 与气味辨别性能呈负相关。总之,我们的研究结果提供了人类嗅束连接性的详细特征描述,并证明了它们结构完整性与嗅觉感知功能之间的关联。这项研究首次详细描述了人类大脑中三条嗅束的皮质连接,使用了扩散磁共振成像 (dMRI)。此外,我们表明,束状结构与气味辨别任务的表现相关,这表明嗅束结构完整性与气味感知之间存在联系。最后,我们生成了一个嗅束的标准化概率图谱,可用于未来的研究,以研究其在健康和疾病中的完整性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec4c/8741165/8001872a47db/SN-JNSJ210810F001.jpg

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