论文标题

使用时间分割的4D显微镜的微血管动力学

Microvascular Dynamics from 4D Microscopy Using Temporal Segmentation

论文作者

Gur, Shir, Wolf, Lior, Golgher, Lior, Blinder, Pablo

论文摘要

最近开发的方法是快速连续体积的两光子显微镜促进数百个单个神经元中神经元活性的观察,以及在前所未有的时空分辨率下,相邻血管中相邻血管中血流的变化。但是,高成像速率需要完全自动化的图像分析,而组织的浊度和光吸毒性限制会导致极度稀疏和嘈杂的图像。在这项工作中,我们扩展了最近提出的深度学习体积血管分割网络,以支持时间分析。有了这项技术,我们能够随着时间的流逝跟踪脑血容量的变化,并确定自发性动脉扩张,从而向伴侣表面传播。这种新功能是表征血液动力学响应函数的有前途的一步,功能磁共振成像(fMRI)是基于的。

Recently developed methods for rapid continuous volumetric two-photon microscopy facilitate the observation of neuronal activity in hundreds of individual neurons and changes in blood flow in adjacent blood vessels across a large volume of living brain at unprecedented spatio-temporal resolution. However, the high imaging rate necessitates fully automated image analysis, whereas tissue turbidity and photo-toxicity limitations lead to extremely sparse and noisy imagery. In this work, we extend a recently proposed deep learning volumetric blood vessel segmentation network, such that it supports temporal analysis. With this technology, we are able to track changes in cerebral blood volume over time and identify spontaneous arterial dilations that propagate towards the pial surface. This new capability is a promising step towards characterizing the hemodynamic response function upon which functional magnetic resonance imaging (fMRI) is based.

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