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Data compression and improved registration for laser speckle contrast imaging of rodent brains

机译:啮齿动物大脑的激光斑点对比成像的数据压缩和改进的配准

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摘要

Single-frame blood flow maps from laser speckle contrast imaging (LSCI) contain high spatiotemporal variation that obscures high spatial-frequency vascular features, making precise image registration for signal amplification challenging. In this work, novel bivariate standardized moment filters (BSMFs) were used to provide stable measures of vessel edge location, permitting more robust LSCI registration. Relatedly, BSMFs enabled the stable reconstruction of vessel edges from sparsely distributed blood flow map outliers, which were found to retain most of the temporal dynamics. Consequently, data discarding and BSMF-based reconstruction enable efficient real-time quantitative LSCI data compression. Smaller LSCI-kernels produced log-normal blood flow distributions, enhancing sparse-to-dense inference.
机译:激光散斑对比度成像(LSCI)产生的单帧血流图包含高时空变化,这种高时空变化会掩盖高空频血管特征,从而使精确的图像配准对于信号放大具有挑战性。在这项工作中,新颖的双变量标准化矩滤波器(BSMF)用于提供稳定的船只边缘位置度量,从而实现更可靠的LSCI配准。相关地,BSMF能够从稀疏分布的血流图异常值稳定重建血管边缘,发现该异常值保留了大多数时间动态。因此,数据丢弃和基于BSMF的重建可实现高效的实时定量LSCI数据压缩。较小的LSCI内核产生对数正态的血流分布,从而增强了稀疏到密集的推断。

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