Vascular Cognitive Impairment, Neurodegeneration and Healthy Brain Aging Program, Department of Neurosurgery, University of Oklahoma Health Sciences Center, Oklahoma City, OK, USA.
Oklahoma Center for Geroscience and Healthy Brain Aging, University of Oklahoma Health Sciences Center, Oklahoma City, OK, USA.
J Cereb Blood Flow Metab. 2024 Nov;44(11):1378-1396. doi: 10.1177/0271678X241260526. Epub 2024 Jun 13.
Intra-vital visualization of deep cerebrovascular structures and blood flow in the aging brain has been a difficult challenge in the field of neurovascular research, especially when considering the key role played by the cerebrovasculature in the pathogenesis of both vascular cognitive impairment and dementia (VCID) and Alzheimer's disease (AD). Traditional imaging methods face difficulties with the thicker skull of older brains, making high-resolution imaging and cerebral blood flow (CBF) assessment challenging. However, functional ultrasound (fUS) imaging, an emerging non-invasive technique, provides real-time CBF insights with notable spatial-temporal resolution. This study introduces an enhanced longitudinal fUS method for aging brains. Using elderly (24-month C57BL/6) mice, we detail replacing the skull with a polymethylpentene window for consistent fUS imaging over extended periods. Ultrasound localization mapping (ULM), involving the injection of a microbubble (<<10 μm) suspension allows for recording of high-resolution microvascular vessels and flows. ULM relies on the localization and tracking of single circulating microbubbles in the blood flow. A FIJI-based analysis interprets these high-quality ULM visuals. Testing on older mouse brains, our method successfully unveils intricate vascular specifics even in-depth, showcasing its utility for longitudinal studies that require ongoing evaluations of CBF and vascular aspects in aging-focused research.
在神经血管研究领域,对衰老大脑中的深部脑血管结构和血流进行活体可视化一直是一个难题,特别是考虑到脑血管在血管性认知障碍和痴呆(VCID)和阿尔茨海默病(AD)发病机制中的关键作用。传统的成像方法在较厚的老年人大脑方面存在困难,使得高分辨率成像和脑血流(CBF)评估变得具有挑战性。然而,功能超声(fUS)成像作为一种新兴的非侵入性技术,提供了具有显著时空分辨率的实时 CBF 见解。本研究介绍了一种用于衰老大脑的增强纵向 fUS 方法。使用老年(24 个月 C57BL/6)小鼠,我们详细介绍了用聚甲基戊烯窗替换颅骨,以便在延长的时间内进行一致的 fUS 成像。超声定位映射(ULM)涉及微泡(<<10 μm)悬浮液的注射,可记录高分辨率微血管和血流。ULM 依赖于血液流动中单个循环微泡的定位和跟踪。基于 FIJI 的分析解释了这些高质量的 ULM 视觉效果。在老年小鼠大脑上进行测试,我们的方法成功揭示了复杂的血管细节,甚至在深处,展示了其在需要对 CBF 和血管方面进行持续评估的衰老研究中的纵向研究中的实用性。