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Optical coherence Doppler tomography quantifies laser speckle contrast imaging for blood flow imaging in the rat cerebral-cortex

机译:光学相干多普勒层析成像技术可对大鼠大脑皮层血流成像的激光散斑对比度成像进行量化

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摘要

A dual-imaging modality is demonstrated for high-resolution quantitative imaging of local cerebral blood flow in the rat cortex by combining simultaneous spectral-domain Doppler optical coherence tomography (SDOCT) and full-field laser speckle contrast imaging (LSCI). Preliminary studies in tissue flow phantom and cocaine-induced cerebral blood flow changes indicated that by correlating coregistered cortical arterial blood flow, the relative measurement of flow changes by LSCI could be accurately calibrated by the absolute flow imaging provided by SDOCT (least square fit, r~(2) approx= 0.96). Quantitative LSCI of cerebral blood flow is crucial to the quantitative analyses of the spatiotemporal hemodynamics of functional brain activations and thus improved understanding of neural process.
机译:通过结合同时频谱域多普勒光学相干断层扫描(SDOCT)和全场激光散斑对比成像(LSCI),对大鼠皮层局部脑血流进行高分辨率定量成像,证明了双成像模式。对组织流动模型和可卡因引起的脑血流变化的初步研究表明,通过关联共登记的皮质动脉血流,可以通过SDOCT提供的绝对血流成像准确校准LSCI的血流变化的相对测量值(最小二乘拟合,r 〜(2)大约= 0.96)。大脑血流的定量LSCI对功能性脑部激活的时空血流动力学的定量分析以及因此对神经过程的理解至关重要。

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