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小鼠的脑膜血管系统是按照一种与感觉无关的程序发育的。

The pial vasculature of the mouse develops according to a sensory-independent program.

机构信息

Center for Neural Engineering, Department of Engineering Science and Mechanics, Pennsylvania State University, University Park, Pennsylvania, PA, 16802, USA.

Neurobiology, Biochemistry and Biophysics School, George Wise Faculty of Life Sciences, Sagol School of Neuroscience, Tel-Aviv University, Tel-Aviv, 98888, Israel.

出版信息

Sci Rep. 2018 Jun 29;8(1):9860. doi: 10.1038/s41598-018-27910-3.

Abstract

The cerebral vasculature is organized to supply the brain's metabolic needs. Sensory deprivation during the early postnatal period causes altered neural activity and lower metabolic demand. Neural activity is instructional for some aspects of vascular development, and deprivation causes changes in capillary density in the deprived brain region. However, it is not known if the pial arteriole network, which contains many leptomeningeal anastomoses (LMAs) that endow the network with redundancy against occlusions, is also affected by sensory deprivation. We quantified the effects of early-life sensory deprivation via whisker plucking on the densities of LMAs and penetrating arterioles (PAs) in anatomically-identified primary sensory regions (vibrissae cortex, forelimb/hindlimb cortex, visual cortex and auditory cortex) in mice. We found that the densities of penetrating arterioles were the same across cortical regions, though the hindlimb representation had a higher density of LMAs than other sensory regions. We found that the densities of PAs and LMAs, as well as quantitative measures of network topology, were not affected by sensory deprivation. Our results show that the postnatal development of the pial arterial network is robust to sensory deprivation.

摘要

脑血管系统的组织方式可满足大脑的代谢需求。出生后早期的感官剥夺会导致神经活动改变和代谢需求降低。神经活动对血管发育的某些方面具有指导作用,而剥夺会导致受剥夺脑区的毛细血管密度发生变化。然而,目前尚不清楚含有许多软脑膜吻合(LMAs)的脑膜动脉血管网络是否也会受到感官剥夺的影响,这些吻合赋予了网络对阻塞的冗余性。我们通过梳理胡须来量化早期生活中的感官剥夺对小鼠解剖学确定的初级感觉区域(触须皮层、前肢/后肢皮层、视觉皮层和听觉皮层)中 LMAs 和穿透性动脉(PAs)密度的影响。我们发现穿透性动脉的密度在皮质区域之间是相同的,尽管后肢代表区的 LMAs 密度高于其他感觉区域。我们发现 PAs 和 LMAs 的密度以及网络拓扑的定量测量不受感官剥夺的影响。我们的研究结果表明,脑膜动脉网络的出生后发育对感官剥夺具有很强的抵抗力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/315a/6026131/53c745624dac/41598_2018_27910_Fig1_HTML.jpg

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