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Simultaneous BOLD fMRI and fiber-optic calcium recording in rat neocortex

机译:大鼠新皮层同时进行BOLD fMRI和纤维钙记录

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摘要

Functional magnetic resonance imaging (fMRI) based on blood oxygen level-dependent (BOLD) contrast is widely used for probing brain activity, but its relationship to underlying neural activity remains elusive. Here, we combined fMRI with fiber-optic recordings of fluorescent calcium indicator signals to investigate this relationship in rat somatosensory cortex. Electrical forepaw stimulation (1-10 Hz) evoked fast calcium signals of neuronal origin that showed frequency-dependent adaptation. Additionally, slower calcium signals occurred in astrocyte networks, as verified by astrocyte-specific staining and two-photon microscopy. Without apparent glia activation, we could predict BOLD responses well from simultaneously recorded fiber-optic signals, assuming an impulse response function and taking into account neuronal adaptation. In cases with glia activation, we uncovered additional prolonged BOLD signal components. Our findings highlight the complexity of fMRI BOLD signals, involving both neuronal and glial activity. Combined fMRI and fiber-optic recordings should help to clarify cellular mechanisms underlying BOLD signals.
机译:基于血氧水平依赖性(BOLD)对比的功能磁共振成像(fMRI)被广泛用于探测大脑活动,但其与潜在神经活动的关系仍然难以捉摸。在这里,我们将功能磁共振成像与荧光钙指示剂信号的光纤记录相结合,以研究大鼠体感皮层中的这种关系。前爪电刺激(1-10 Hz)引起神经元来源的快速钙信号,该信号显示出频率依赖性的适应性。此外,星形胶质细胞网络中发生较慢的钙信号,这已通过星形胶质细胞特异性染色和双光子显微镜证实。如果没有明显的神经胶质细胞激活,我们可以从同时记录的光纤信号中很好地预测BOLD反应,并假设其具有脉冲反应功能并考虑了神经元适应性。在胶质细胞激活的情况下,我们发现了额外的延长的BOLD信号成分。我们的发现突出了功能磁共振成像大胆信号的复杂性,涉及神经元和神经胶质活动。 fMRI和光纤记录相结合应有助于阐明BOLD信号的细胞机制。

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