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首页> 外文期刊>Biomedical Optics Express >Longitudinal deep-brain imaging in mouse using visible-light optical coherence tomography through chronic microprism cranial window
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Longitudinal deep-brain imaging in mouse using visible-light optical coherence tomography through chronic microprism cranial window

机译:慢性微棱镜颅窗的可见光光学相干断层扫描在小鼠中的纵向深脑成像。

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摘要

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.
机译:我们使用可见光光学相干断层扫描(vis-OCT)对健康小鼠的大脑和中风的小鼠模型体内的浅层和深层皮质微血管网络进行了纵向成像。我们通过外科手术将微棱镜植入由慢性颅窗封闭的小鼠大脑中。微棱镜使vis-OCT能够对鼠标皮质的整个深度进行成像。微棱镜植入后,我们对小鼠进行了28天的成像,发现浅层和深层皮层微血管从植入手术中恢复大约需要15天。大脑恢复后,我们通过短暂性大脑中动脉闭塞(tMCAO)引入了缺血性中风。我们对中风进行了长达60天的监测,并在中风的急性期和慢性期在不同皮层深度观察到了对tMCAO的不同微血管反应。这项工作表明,微棱镜和颅窗的组合非常适合使用vis-OCT对皮质微血管疾病进行纵向研究。

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