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Imaging the Early Cerebral Blood Flow Changes in Rat Middle Cerebral Artery Occlusion Stroke Model

机译:成像大鼠中脑动脉闭塞中风模型的早期脑血流动变化

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Intraluminal middle cerebral artery occlusion (MCAO) model in rats has been widely used to mimic human ischemic stroke and serves as an indispensable tool in the stroke research field. One limitation of this model is its high variability in infarct volume. The cerebral blood flow (CBF) information after cerebrovascular occlusion may reflect the availability of collateral circulation, which serves as a key factor for brain infarct volume. Laser speckle contrast imaging (LSCI) is a valuable tool for full-field imaging of CBF with high spatial and temporal resolution. In this paper, we investigated the spatio-temporal changes of CBF in rat MCAO stroke model using our self-developed real-time LSCI system. CBF images of adult male Sprague Dawley rats (n=13) were recorded before surgery, during first 1.5 hours after surgery, and 24 hours after stroke. We compared the CBF changes of different functional vessels during this period. In the ipsilateral hemisphere, CBF of veins and arteries both decreased as expected, while CBF of veins increased after occlusion in the contralateral hemisphere. Moreover, we found a linear correlation between early-stage CBF after occlusion and brain infarct volume, which can be utilized for surgery guidance to improve the uniformity of rat MCAO stroke models.
机译:大鼠的腔内中脑动脉闭塞(MCAO)模型已被广泛用于模仿人缺血性卒中,并用作中风研究领域的不可缺少的工具。该模型的一个限制是Infarct体积的高度变化。脑血管闭塞后的脑血流(CBF)信息可以反映侧支循环的可用性,这是脑梗塞体积的关键因素。激光散斑对比度成像(LSCI)是具有高空间和时间分辨率的CBF全场成像的有价值工具。在本文中,我们使用我们的自我开发的实时LSCI系统调查了大鼠MCAO行程模型中CBF的时空变化。在手术前,在手术前的前1.5小时后,在手术前记录成年雄性雄性Sprague Dawley大鼠(n = 13)的CBF图像,卒中后24小时。我们在此期间比较了不同功能血管的CBF变化。在同侧半球,静脉和动脉的CBF均按预期降低,而静脉CBF在对侧半球闭塞后增加。此外,我们发现早期CBF之间闭塞和脑梗塞体积后,线性相关,其可被用于外科手术的指导,以改善大鼠MCAO中风模型的均匀性。

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