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Estimating hemodynamic stimulus and blood vessel compliance from cerebral blood flow data

机译:从脑血流数据估算血流动力学刺激和血管顺应性

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摘要

Several key brain imaging modalities that are intended for retrieving information about neuronal activity in brain, the BOLD fMRI as a foremost example, rely on the assumption that elevated neuronal activity elicits spatiotemporally well localized increase of the oxygenated blood volume, which in turn can be monitored non-invasively. The details of the signaling in the neurovascular unit during hyperemia are still not completely understood, and remain a topic of active research, requiring good mathematical models that are able to couple the different aspects of the signaling event. In this work, the question of estimating the hemodynamic stimulus function from cerebral blood flow data is addressed. In the present model, the hemodynamic stimulus is a non-specific signal from the electrophysiological and metabolic complex that controls the compliance of the blood vessels, leading to a vasodilation and thereby to an increase of blood flow. The underlying model is based on earlier literature, and it is further developed in this article for the needs of the inverse problem, which is solved using hierarchical Bayesian methodology, addressing also the poorly known model parameters.
机译:若干关键脑成像模式,用于检索脑中神经元活动的信息,大胆的FMRI作为最重要的例子,依赖于神经元活动升高的神经元活动引发了时尚良好的氧化血容量的氧化血容量的假设,这又可以监测非侵略性。在充血期间神经血管单元中的信号传导的细节仍然没有完全理解,并且仍然是主动研究的主题,需要能够耦合信令事件的不同方面的良好数学模型。在这项工作中,解决了从脑血流量数据估算血流动力刺激功能的问题。在本模型中,血流动力学刺激是来自电生理学和代谢复合物的非特异性信号,其控制血管依从性,导致血管舒张,从而增加血液流动。底层模型基于早期的文献,在本文中进一步开发了逆问题的需求,该逆问题是使用分层贝叶斯方法解决的,也解决了知名的模型参数。

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