Lu Hongyang, Li Yao, Yuan Lu, Li Hangdao, Lu Xiaodan, Tong Shanbao
Shanghai Jiao Tong University, School of Biomedical Engineering, 800 Dongchuan Road, Shanghai 200240, ChinabShanghai Jiao Tong University, Med-X Research Institute, 1954 Huashan Road, Shanghai 200030, China.
Shanghai Jiao Tong University, Med-X Research Institute, 1954 Huashan Road, Shanghai 200030, China.
J Biomed Opt. 2014 Sep;19(9):96013. doi: 10.1117/1.JBO.19.9.096013.
In experimental stroke research, anesthesia is common and serves as a major reason for translational failure. Real-time cerebral blood flow (CBF) monitoring during stroke onset can provide important information for the prediction of brain injury; however, this is difficult to achieve in clinical practice due to various technical problems. We created a photothrombotic focal ischemic stroke model utilizing our self-developed miniature headstage in conscious and freely moving rats. In this model, a high spatiotemporal resolution imager using laser speckle contrast imaging technology was integrated to acquire real-time two-dimensional CBF information during thrombosis. The feasibility, stability, and reliability of the system were tested in terms of CBF, behavior, and T2-weighted magnetic resonance imaging (MRI) findings. After completion of occlusion, the CBF in the targeted cortex of the stroke group was reduced to 16 ± 9% of the baseline value. The mean infarct volume measured by MRI 24 h postmodeling was 77 ± 11 mm3 and correlated well with CBF (R2 = 0.74). This rodent model of focal cerebral ischemia and real-time blood flow imaging opens the possibility of performing various fundamental and translational studies on stroke without the influence of anesthetics.
在实验性中风研究中,麻醉很常见,并且是转化失败的主要原因。中风发作期间的实时脑血流量(CBF)监测可为脑损伤的预测提供重要信息;然而,由于各种技术问题,这在临床实践中很难实现。我们利用自行开发的微型头戴式传感器,在清醒且自由活动的大鼠中创建了光血栓性局灶性缺血性中风模型。在该模型中,集成了使用激光散斑对比成像技术的高时空分辨率成像仪,以在血栓形成过程中获取实时二维CBF信息。从CBF、行为和T2加权磁共振成像(MRI)结果方面测试了该系统的可行性、稳定性和可靠性。闭塞完成后,中风组目标皮层的CBF降至基线值的16±9%。建模后24小时通过MRI测量的平均梗死体积为77±11mm³,并且与CBF具有良好的相关性(R² = 0.74)。这种局灶性脑缺血啮齿动物模型和实时血流成像为在无麻醉影响的情况下进行各种关于中风的基础和转化研究开辟了可能性。