| Literature DB >> 31646044 |
Lisa Beckmann1,2, Xian Zhang1,3,2, Neil A Nadkarni4, Zhen Cai1,3, Ayush Batra4, David P Sullivan5, William A Muller5, Cheng Sun6, Roman Kuranov1,7, Hao F Zhang1.
Abstract
We longitudinally imaged both the superficial and deep cortical microvascular networks in brains of healthy mice and in a mouse model of stroke in vivo using visible-light optical coherence tomography (vis-OCT). We surgically implanted a microprism in mouse brains sealed by a chronic cranial window. The microprism enabled vis-OCT to image the entire depth of the mouse cortex. Following microprism implantation, we imaged the mice for 28 days and found that that it took around 15 days for both the superficial and deep cortical microvessels to recover from the implantation surgery. After the brains recovered, we introduced ischemic strokes by transient middle cerebral artery occlusion (tMCAO). We monitored the strokes for up to 60 days and observed different microvascular responses to tMCAO at different cortical depths in both the acute and chronic phases of the stroke. This work demonstrates that the combined microprism and cranial window is well-suited for longitudinal investigation of cortical microvascular disorders using vis-OCT.Entities:
Year: 2019 PMID: 31646044 PMCID: PMC6788609 DOI: 10.1364/BOE.10.005235
Source DB: PubMed Journal: Biomed Opt Express ISSN: 2156-7085 Impact factor: 3.732