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Joint Estimation of Hemodynamic Response and Stimulus Function in Functional Ultrasound Using Convolutive Mixtures

机译:使用卷曲混合物功能超声血流动力反应和刺激功能的联合估计

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Functional ultrasound (fUS) is an exciting new neuroimaging technique that is able to record brain activity similar to functional magnetic resonance imaging, yet with higher spatiotemporal resolution and at lower cost. We consider the problem of jointly estimating the underlying neural sources and the hemodynamic response function (HRF) from fUS recordings. We propose to model the measured voxel time-series as a convolutive mixture of multiple source signals and solve the blind deconvolution problem via block-term decomposition. This allows us to estimate both the source time courses and a different HRF for each voxel and source combination, which accounts for the variability of HRF across different brain regions and events respectively. The proposed approach is proven to be robust against noise via simulations and further validated on real fUS data by performing a visual experiment on a mouse. The obtained results show that the proposed method is able to recover the timings of the visual paradigm.
机译:功能超声(FUS)是一种激动的新神经影像学技术,能够记录类似于功能性磁共振成像的大脑活动,但具有较高的时空分辨率和成本更低。我们考虑从Fus录音中共同估计潜在的神经源和血液动力学响应函数(HRF)的问题。我们建议将测量的体素定时序列模拟为多个源信号的卷曲混合物,并通过块术语分解来解决盲解卷积问题。这使我们能够估计每个体素和源组合的源时间课程和不同的HRF,其分别涉及不同大脑区域和事件的HRF的可变性。通过模拟证明,通过模拟被证明是对噪声的稳健,并通过在鼠标上进行视觉实验,进一步验证真实的FUS数据。获得的结果表明,该方法能够恢复视觉范例的定时。

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