Hemodynamic changes and neuronal damage detected by 9.4 T MRI in rats with chronic cerebral ischemia and cognitive impairment

部分各向异性 磁共振弥散成像 海马体 医学 莫里斯水上航行任务 有效扩散系数 颈总动脉 缺血 内科学 心理学 磁共振成像 麻醉 神经科学 颈动脉 放射科
作者
Minghua Sun,Liangmiao Wu,Guang‐Ying Chen,Xukai Mo,Changzheng Shi
出处
期刊:Brain and behavior [Wiley]
卷期号:12 (7) 被引量:3
标识
DOI:10.1002/brb3.2642
摘要

Abstract Introduction The bilateral common carotid artery occlusion (BCCAO) rat model is an ideal animal model for simulating the pathology of chronic brain hypoperfusion in humans. However, dynamic changes in neuronal activity, cellular edema, and neuronal structural integrity in vivo after BCCAO have rarely been reported. The purpose of this study is to use a 9.4 T MRI to explore the pathophysiological mechanisms of vascular dementia. Materials and Methods Twelve Sprague–Dawley (SD) rats were randomly divided into two groups: the sham group and the model group ( n = 6 for each group). Rats were subjected to MRI using T2*WI, diffusion tensor imaging (DTI), and DWI sequences by MRI at the following six time points: presurgery and 6 h, 3 days, 7 days, 21 days, and 28 days postsurgery. Then, the T2*, fractional anisotropy (FA), and average apparent diffusion coefficient (ADC) values were measured in the bilateral cortices and hippocampi. After MRI scanning, all rats in both groups were subjected to the Y‐maze test, novel object recognition test, and open‐field test to assess their learning, memory, cognition, and locomotor activity. Results The T2*, FA, and ADC values in the cerebral cortex and hippocampus decreased sharply at 6 h after BCCAO in the model group compared with those of the sham group. By Day 28, the T2* and ADC values gradually increased to close to those in the sham group, but the FA values changed little, and the rats in the model group had worse learning, memory, and cognition and less locomotor activity than the rats in the sham group. Conclusions The BCCAO is an ideal rat model for studying the pathophysiological mechanisms of vascular dementia.
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