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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >y Establishment of a Rat Model of Superior Sagittal-Sinus Occlusion and Recanalization via a Thread-Embolism Method
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y Establishment of a Rat Model of Superior Sagittal-Sinus Occlusion and Recanalization via a Thread-Embolism Method

机译:Y通过螺纹栓塞法建立了优质矢状闭锁和再生的大鼠模型

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There are many uncontrollable factors in the pathogenesis of cerebral venous sinus thrombosis (CVST). In order to further explore the pathophysiology and morphology of CVST, it is necessary to establish a highly compatible CVST animal model that can standardize the site and stage of venous thrombosis. The present study employed the insertion of a self-made thread embolism into the superior sagittal sinus (SSS) to establish a rat model of SSS occlusion that emulates CVST. The thread embolism was removed after 6 h of SSS occlusion in order to achieve recanalization. After successful preparation of the model, the cerebral blood flow (CBF) status and ultrastructural changes of the blood-brain barrier (BBB) were monitored. This CVST model was able to achieve continuously high occlusion of SSS. The parasagittal venous-collateral circulation underwent extensive compensation and recombination, which alleviated blood flow stasis and brain tissue hypoxia caused by restricted reflux. Removing SSS occlusion significantly improved cerebral circulation, reduced brain edema, and accelerated the receding of brain edema. This study established a new model of acute occlusion and recanalization of SSS in rats via a thread-embolism method, which standardized the ischemic site and stage of venous thrombosis. In addition, our study suggests that promoting collateral circulation may be a potential treatment for promoting brain protection. (C) 2019 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:在脑静脉血栓形成(CVST)的发病机制中存在许多无法控制的因素。为了进一步探讨CVST的病理生理学和形态,有必要建立一种高度相容的CVST动物模型,可以标准化静脉血栓形成的部位和阶段。本研究采用将自制螺纹栓塞插入卓越的矢状窦(SSS),以建立模拟CVST的SSS闭塞的大鼠模型。在SSS闭塞6小时后除去螺纹栓塞,以达到再生化。在成功编制模型后,监测脑血流(CBF)状态和血脑屏障(BBB)的超微结构变化。这种CVST模型能够实现SSS的不断高闭塞。放射性静脉抵押循环接受了广泛的补偿和重组,这缓解了受限制的回流引起的血流瘀滞和脑组织缺氧。去除SSS闭塞显着改善脑循环,减少脑水肿,加速脑水肿的后退。本研究通过螺纹栓塞法在大鼠中建立了一种新的SSS急性闭塞和再生化,该方法标准化了缺血性遗址和静脉血栓形成的阶段。此外,我们的研究表明,促进抵押循环可能是促进脑保护的潜在治疗方法。 (c)2019年IBRO。 elsevier有限公司出版。保留所有权利。

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