首页> 美国卫生研究院文献>Brain Connectivity >Broadband Local Field Potentials Correlate with Spontaneous Fluctuations in Functional Magnetic Resonance Imaging Signals in the Rat Somatosensory Cortex Under Isoflurane Anesthesia
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Broadband Local Field Potentials Correlate with Spontaneous Fluctuations in Functional Magnetic Resonance Imaging Signals in the Rat Somatosensory Cortex Under Isoflurane Anesthesia

机译:异氟烷麻醉下大鼠体感皮层功能性磁共振成像信号中的自发性波动与宽带局域电位相关。

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摘要

Resting-state functional magnetic resonance imaging (fMRI) is widely used for exploring spontaneous brain activity and large-scale networks; however, the neural processes underlying the observed resting-state fMRI signals are not fully understood. To investigate the neural correlates of spontaneous low-frequency fMRI fluctuations and functional connectivity, we developed a rat model of simultaneous fMRI and multiple-site intracortical neural recordings. This allowed a direct comparison to be made between the spontaneous signals and interhemispheric connectivity measured with the two modalities. Results show that low-frequency blood oxygen level-dependent (BOLD) fluctuations (<0.1 Hz) correlate significantly with slow power modulations (<0.1 Hz) of local field potentials (LFPs) in a broad frequency range (1–100 Hz) under isoflurane anesthesia (1%–1.8%). Peak correlation occurred between neural and hemodynamic activity when the BOLD signal was delayed by ∼4 sec relative to the LFP signal. The spatial location and extent of correlation was highly reproducible across studies, with the maximum correlation localized to a small area surrounding the site of microelectrode recording and to the homologous area in the contralateral hemisphere for most rats. Interhemispheric connectivity was calculated using BOLD correlation and band-limited LFP (1–4, 4–8, 8–14, 14–25, 25–40, and 40–100 Hz) coherence. Significant coherence was observed for the slow power changes of all LFP frequency bands as well as in the low-frequency BOLD data. A preliminary investigation of the effect of anesthesia on interhemispheric connectivity indicates that coherence in the high-frequency LFP bands declines with increasing doses of isoflurane, whereas coherence in the low-frequency LFP bands and the BOLD signal increases. These findings suggest that resting-state fMRI signals might be a reflection of broadband LFP power modulation, at least in isoflurane-anesthetized rats.
机译:静止状态功能磁共振成像(fMRI)被广泛用于探索自发性大脑活动和大规模网络。然而,尚未完全了解所观察到的静止状态功能磁共振成像信号的神经过程。为了研究自发性低频fMRI波动与功能连接的神经相关性,我们建立了同时fMRI和多部位皮质内神经记录的大鼠模型。这使得可以直接比较自发信号和用两种模态测量的半球间连通性。结果表明,低频血氧水平依赖性(BOLD)波动(<0.1 Hz)与宽频率范围(1–100 Hz)下局部场电势(LFP)的慢功率调制(<0.1 Hz)显着相关。异氟烷麻醉(1%–1.8%)。当BOLD信号相对于LFP信号延迟约4µsec时,神经和血液动力学活动之间出现峰值相关性。在各个研究中,相关性的空间位置和程度可高度重现,对于大多数大鼠而言,最大相关性位于微电极记录部位周围的一小部分区域和对侧半球的同源区域。使用BOLD相关性和带限LFP(1-4、4-8、8-14、14-25、25-40和40-100Hz)相干性来计算半球之间的连通性。在所有LFP频段的缓慢功率变化以及低频BOLD数据中均观察到了显着的一致性。麻醉对半球间连通性影响的初步研究表明,随着异氟烷剂量的增加,高频LFP频段的相干性下降,而低频LFP频段和BOLD信号的相干性增加。这些发现表明,至少在异氟烷麻醉的大鼠中,静止状态的fMRI信号可能是宽带LFP功率调制的反映。

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