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Ultrasound-aided Multi-parametric Photoacoustic Microscopy of the Mouse Brain

机译:超声辅助的小鼠脑多参数光声显微镜。

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摘要

High-resolution quantitative imaging of cerebral oxygen metabolism in mice is crucial for understanding brain functions and formulating new strategies to treat neurological disorders, but remains a challenge. Here, we report on our newly developed ultrasound-aided multi-parametric photoacoustic microscopy (PAM), which enables simultaneous quantification of the total concentration of hemoglobin (CHb), the oxygen saturation of hemoglobin (sO2), and cerebral blood flow (CBF) at the microscopic level and through the intact mouse skull. The three-dimensional skull and vascular anatomies delineated by the dual-contrast (i.e., ultrasonic and photoacoustic) system provide important guidance for dynamically focused contour scan and vessel orientation-dependent correction of CBF, respectively. Moreover, bi-directional raster scan allows determining the direction of blood flow in individual vessels. Capable of imaging all three hemodynamic parameters at the same spatiotemporal scale, our ultrasound-aided PAM fills a critical gap in preclinical neuroimaging and lays the foundation for high-resolution mapping of the cerebral metabolic rate of oxygen (CMRO2)—a quantitative index of cerebral oxygen metabolism. This technical innovation is expected to shed new light on the mechanism and treatment of a broad spectrum of neurological disorders, including Alzheimer’s disease and ischemic stroke.
机译:小鼠中脑氧代谢的高分辨率定量成像对于理解脑功能和制定治疗神经系统疾病的新策略至关重要,但仍然是一个挑战。在这里,我们报告了我们最新开发的超声辅助多参数光声显微镜(PAM),该技术可同时量化血红蛋白(CHb)的总浓度,血红蛋白(sO2)的氧饱和度和脑血流量(CBF)在显微镜下并通过完整的小鼠头骨。由双对比(即超声和光声)系统描绘的三维颅骨和血管解剖结构分别为动态聚焦轮廓扫描和CBF依赖于血管方向的校正提供了重要的指导。此外,双向光栅扫描可以确定单个血管中的血流方向。我们的超声辅助PAM能够在相同的时空范围内对所有三个血流动力学参数进行成像,填补了临床前神经成像中的关键空白,并为高分辨率的大脑氧代谢率(CMRO2)(大脑的定量指标)作图奠定了基础氧代谢。这项技术创新有望为包括阿尔茨海默氏病和缺血性中风在内的各种神经系统疾病的机理和治疗提供新的思路。

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