Zaidi Ali Danish, Birbaumer Niels, Fetz Eberhard, Logothetis Nikos, Sitaram Ranganatha
Department of Physiology of Cognitive Processes, Max Planck Institute for Biological Cybernetics, Tübingen, Germany.
Institute for Medical Psychology and Behavioral Neurobiology, University of Tübingen, Tübingen, Germany.
Front Neurosci. 2023 May 25;17:1170401. doi: 10.3389/fnins.2023.1170401. eCollection 2023.
The initial-dip is a transient decrease frequently observed in functional neuroimaging signals, immediately after stimulus onset, believed to originate from a rise in deoxy-hemoglobin (HbR) caused by local neural activity. It has been shown to be more spatially specific than the hemodynamic response, and is believed to represent focal neuronal activity. However, despite being observed in various neuroimaging modalities (such as fMRI, fNIRS, etc), its origins are disputed, and its precise neuronal correlates are unknown. Here we show that the initial-dip is dominated by a decrease in total-hemoglobin (HbT). We also find a biphasic response in deoxy-Hb (HbR), with an early decrease and later rebound. Both the HbT-dip and HbR-rebound were strongly correlated to highly localized spiking activity. However, HbT decreases were always large enough to counter the spiking-induced increase in HbR. We find that the HbT-dip counters spiking induced HbR increases, imposing an upper-limit to HbR concentration in the capillaries. Building on our results, we explore the possibility of active venule dilation (purging) as a possible mechanism for the HbT dip.
起始负向波是一种在功能神经成像信号中经常观察到的短暂下降,在刺激开始后立即出现,被认为源于局部神经活动引起的脱氧血红蛋白(HbR)增加。研究表明,它在空间上比血流动力学反应更具特异性,并且被认为代表局部神经元活动。然而,尽管在各种神经成像模式(如功能磁共振成像、功能性近红外光谱等)中都观察到了起始负向波,但其起源仍存在争议,其确切的神经元相关性也尚不清楚。在此,我们表明起始负向波主要由总血红蛋白(HbT)的减少主导。我们还发现脱氧血红蛋白(HbR)呈现双相反应,早期减少,随后反弹。HbT下降和HbR反弹均与高度局部化的尖峰活动密切相关。然而,HbT的下降总是足够大,足以抵消尖峰活动引起的HbR增加。我们发现HbT下降抵消了尖峰活动引起的HbR增加,对毛细血管中HbR浓度施加了上限。基于我们的研究结果,我们探讨了主动小静脉扩张(清除)作为HbT下降可能机制的可能性。