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静息态功能连接在 F1 区皮质性缺血性卒中的非人类灵长类动物模型中的研究

Resting-state functional connectivity in a non-human primate model of cortical ischemic stroke in area F1.

机构信息

Department of Neurosurgery, Peking Union Medical College Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.

Department of Orthopaedics, Peking University First Hospital, Beijing, China.

出版信息

Magn Reson Imaging. 2023 Dec;104:121-128. doi: 10.1016/j.mri.2023.10.005. Epub 2023 Oct 14.

Abstract

BACKGROUND

The application of functional MRI to non-human primates after stroke has not yet been undertaken. This is the first study to explore the functional connectivity changes in non-human primate models during acute stages after stroke onset.

METHODS

Nineteen healthy male cynomolgus monkeys (4-5 years) were used in this study. The photothrombosis model was employed to induce focal ischemic stroke in F1 area in the monkey's left hemisphere. T1-weighted structural images and resting-state functional magnetic resonance imaging (rs-fMRI) of all subjects were obtained using a 3.0 Tesla MRI system on the third day following stroke. Based on the D99 atlas, the structural and functional changes of bilateral F1 areas in monkeys were analyzed using region of interest (ROI)-based functional connectivity (FC). The bilateral F1 areas were selected as the seed regions due to their crucial role in motor control and their potential to unveil the comprehensive functional reorganization of the motor system at a whole-brain level following stroke.

RESULTS

Ischemic lesions were observed after the stroke, with larger lesion volumes associated with poorer neurological dysfunction. Compared with baseline condition, left area F1 demonstrated decreased FC with the left cerebellum, left ventral pons and left 5_(PEa). When the ROI was located in the right area F1, ischemic monkeys showed decreased FC in left ventral pons, left cerebellum, left primary visual cortex and left 5_(PEa), accompanied by increased FC in the right orbitofrontal cortex. Importantly, the degree of altered FC between left area F1 and left cerebellum was associated with upper limb tone.

CONCLUSIONS

These results provide valuable insights into the early-stage functional connectivity changes in the F1 areas of monkeys under ischemic conditions, highlighting the potential involvement of specific brain regions in the pathophysiology of ischemic injury.

摘要

背景

将功能磁共振成像应用于中风后的非人类灵长类动物尚未进行。这是第一项探索中风后急性期非人类灵长类动物模型功能连接变化的研究。

方法

本研究使用 19 只健康雄性食蟹猴(4-5 岁)。采用光血栓模型诱导猴左侧大脑半球 F1 区局灶性缺血性中风。所有受试者在中风后第 3 天使用 3.0T MRI 系统获得 T1 加权结构图像和静息态功能磁共振成像(rs-fMRI)。基于 D99 图谱,使用基于感兴趣区(ROI)的功能连接(FC)分析猴子双侧 F1 区的结构和功能变化。由于双侧 F1 区在运动控制中起着至关重要的作用,并且有可能揭示中风后整个大脑水平运动系统的全面功能重组,因此将双侧 F1 区选择为种子区域。

结果

中风后观察到缺血性病变,较大的病变体积与较差的神经功能障碍相关。与基线相比,左侧 F1 区与左侧小脑、左侧腹侧脑桥和左侧 5_(PEa) 的 FC 降低。当 ROI 位于右侧 F1 区时,缺血性猴子的左侧腹侧脑桥、左侧小脑、左侧初级视觉皮层和左侧 5_(PEa) 的 FC 降低,右侧眶额皮层的 FC 增加。重要的是,左侧 F1 区与左侧小脑之间改变的 FC 程度与上肢张力相关。

结论

这些结果为缺血条件下猴子 F1 区的早期功能连接变化提供了有价值的见解,强调了特定脑区在缺血性损伤病理生理学中的潜在作用。

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