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Spatial integration of vascular changes with neural activity in mouse cortex.

机译:小鼠皮质中血管变化与神经活动的空间整合。

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The authors evaluated representations of discretely activated, neighboring brain regions using real-time optical intrinsic signals by transcranial imaging with 540-nm and 610-nm broadband illumination of the mouse barrel cortex. Iron filings were glued to two neighboring whiskers (C2 + D2) that were stimulated magnetically, singly and together. Real-time images were collected, averaged, and analyzed statistically. Postmortem filling of arteries with fluorescent beads was shown in relation to histochemical staining of barrels to accurately relate surface changes to functional cortical columns. Significant optical intrinsic signal changes are related to overlapping distributions of arterioles that feed the two separate areas. Activation of adjacent and interacting cortical columns leads not only to increased magnitude of vascular responses in those columns, but also to wider spatial extent of absorption changes occurring principally in areas of cortex fed by vessels upstream of the active cortex. The localization of changing hemoglobin absorption around upstream blood vessels and their vascular domains suggests that propagated vasodilation of upstream parent vessels is greater when vasodilatory signals from separate areas of active cortex converge on common arterioles that feed them.
机译:这组作者使用实时光学固有信号,通过对小鼠桶状皮层进行540 nm和610 nm宽带照明的经颅成像,评估了离散激活的相邻大脑区域的表示。铁屑粘在两个相邻的晶须(C2 + D2)上,分别用磁力,单个和一起刺激。实时图像被收集,平均并进行统计分析。死后用荧光珠填充动脉与桶的组织化学染色有关,可以准确地将表面变化与功能性皮层柱相关联。光学内在信号的显着变化与为两个独立区域供血的小动脉的重叠分布有关。相邻且相互作用的皮质柱的激活不仅导致这些柱中血管反应的幅度增加,而且导致吸收变化的更宽的空间范围,吸收变化的发生主要发生在活动皮层上游血管供给的皮层区域中。上游血管及其血管域周围血红蛋白吸收变化的定位表明,当来自活动皮层不同区域的血管舒张信号汇聚在喂养它们的普通小动脉上时,上游亲代血管的传播血管舒张作用更大。

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