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Functional optical imaging of neurovascular activation in the rat cerebral cortex

机译:大鼠大脑皮层神经血管激活的功能光学成像

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This study demonstrates Fourier-domain optical coherence tomography (FD-OCT) for high-speed, high spatial resolution, depth-resolved, and in vivo imaging of functional neurovascular activation. The FD-OCT system used in this study acquired the cross-sectional tissue structure through the cranial window at somatosensory cortex region. The imaging depth reached to 1.3 mm depth. By calculating the standard deviation of the Doppler frequency spectrum, vascular contrast could be enhanced and the network distribution was also compared with laser speckle contrast imaging (LSCI). We elucidates both the intensity of cortex tissue and flow changes during forepaw electrical stimulation. The results show that localized swelling and scattering decreases in the activation region.
机译:这项研究证明了傅立叶域光学相干断层扫描(FD-OCT)用于功能性神经血管活化的高速,高空间分辨率,深度分辨和体内成像。本研究中使用的FD-OCT系统通过体感皮层区域的颅窗获取了横断面组织结构。成像深度达到1.3毫米的深度。通过计算多普勒频谱的标准偏差,可以增强血管造影效果,并将网络分布与激光散斑造影成像(LSCI)进行比较。我们阐明了前爪电刺激过程中皮质组织的强度和血流变化。结果表明,在激活区域中局部膨胀和散射减小。

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