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卧床头低位倾斜对空间性头痛患者的脑微观结构和脑功能的影响。

Brain Microstructure and Brain Function Changes in Space Headache by Head-Down-Tilted Bed Rest.

出版信息

Aerosp Med Hum Perform. 2023 Sep 1;94(9):678-685. doi: 10.3357/AMHP.6177.2023.

DOI:10.3357/AMHP.6177.2023
PMID:37587626
Abstract

Several astronauts have experienced severe headaches during spaceflight, but no studies have examined the associated brain microstructure and functional changes. Head-down-tilted bed rest (HDBR) is a well-established method for studying the physical effects of microgravity on the ground. In this study, we analyzed the changes in brain microstructure and function during headache caused by HDBR using diffusion tensor imaging (DTI) and resting state functional magnetic resonance imaging (R-fMRI). We imaged 28 healthy subjects with DTI and R-fMRI in the horizontal supine position and HDBR. Using Tract-Based Spatial Statistics, fractional anisotropy, mean diffusivity, radial diffusivity, and axial diffusivity were compared between the headache and non-headache groups. Additionally, an analysis of functional connectivity (FC) was performed, followed by a correlation analysis between FC and numerical rating scale. HDBR caused headaches in 21 of 28 subjects. DTI analysis showed no significant change in fractional anisotropy after HDBR, whereas axial diffusivity, radial diffusivity, and mean diffusivity increased significantly. R-fMRI analysis showed a significant decrease in FC in several areas after HDBR. The headache group showed significantly higher FC before HDBR, and both groups showed higher FC after HDBR. Correlation analysis showed a positive correlation between FC and numerical rating scale before HDBR but negative after HDBR. We demonstrated the image change in the acute phase of space headache by HDBR using DTI and R-fMRI. Changes in brain microstructure and function specific to patients developing headaches may be evaluated by imaging.

摘要

几位宇航员在太空飞行中经历了严重的头痛,但没有研究检查相关的大脑微观结构和功能变化。头低位卧床休息(HDBR)是一种研究微重力对地面物理影响的成熟方法。在这项研究中,我们使用扩散张量成像(DTI)和静息态功能磁共振成像(R-fMRI)分析了 HDBR 引起的头痛时大脑微观结构和功能的变化。我们对 28 名健康受试者进行了 DTI 和 R-fMRI 检查,分别处于水平仰卧位和 HDBR 状态。使用基于束的空间统计学,我们比较了头痛组和非头痛组之间的各向异性分数、平均弥散度、径向弥散度、轴向弥散度。此外,我们还进行了功能连接(FC)分析,并对 FC 与数字评分量表之间的相关性进行了分析。在 28 名受试者中,有 21 名在 HDBR 后出现头痛。DTI 分析显示 HDBR 后各向异性分数没有显著变化,而轴向弥散度、径向弥散度和平均弥散度显著增加。R-fMRI 分析显示 HDBR 后几个区域的 FC 显著降低。头痛组在 HDBR 前的 FC 明显更高,两组在 HDBR 后的 FC 都更高。相关性分析显示 HDBR 前 FC 与数字评分量表呈正相关,而 HDBR 后呈负相关。我们使用 DTI 和 R-fMRI 显示了 HDBR 引起的空间性头痛急性期的图像变化。通过成像可以评估特定于头痛患者的大脑微观结构和功能变化。

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