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Comprehensive correlation between neuronal activity and spin-echo blood oxygenation level-dependent signals in the rat somatosensory cortex evoked by short electrical stimulations at various frequencies and currents

机译:在不同频率和电流下短时电刺激诱发的大鼠体感皮层神经元活动与自旋回波血氧水平依赖信号之间的全面相关性

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摘要

It is essential to elucidate the relationship between blood oxygenation level-dependent (BOLD) signals and neuronal activity for the interpretation of the functional magnetic resonance imaging (fMRI) signals; this relationship has been quantitatively investigated by animal studies measuring evoked potentials as indices of neuronal activity. Although most human fMRI studies employ the event-related task design, in which the stimulus duration is short, few studies have investigated the relationship between BOLD signals and evoked potentials at short stimulus durations. The present study investigated this relationship in the somatosensory cortex of anesthetized rats by using electrical forepaw stimulation at a short duration of 4 s and comprehensively analyzed it at different frequencies (1-10 Hz) and currents (0.5-2.0 mA). Somatosensory evoked potential (SEP) responses were measured at the scalp using silver ball electrodes. The sum of the peak-to-peak amplitude (ΣSEP) and average SEP (avg. SEP) responses were calculated. BOLD signals were obtained using a spin-echo echo-planar imaging sequence at 7 T. The relationship between the avg. SEP and BOLD signals varied with frequency, whereas that between ΣSEP and BOLD signals showed a significant correlation at varying frequencies and currents. In particular, the relationship between ΣSEP and ΣBOLD, which is the sum of the BOLD signals obtained at each time point reflecting the area under the BOLD response curves, mostly converged, irrespective of the frequency. Our results suggest that ΣBOLD obtained using a spin-echo sequence reflects the neural activity as quantified by ΣSEP, which was determined at different frequencies and currents.
机译:阐明血液氧合水平依赖性(BOLD)信号与神经元活动之间的关系对于解释功能磁共振成像(fMRI)信号至关重要。这种关系已经通过动物研究定量研究,测量了诱发电位作为神经元活动的指标。尽管大多数人类功能磁共振成像研究采用的是与事件相关的任务设计,其中刺激持续时间很短,但很少有研究研究了短刺激持续时间下BOLD信号与诱发电位之间的关系。本研究通过在4 s的短时间内使用前爪电刺激研究了麻醉大鼠的体感皮层中的这种关系,并在不同频率(1-10 Hz)和电流(0.5-2.0 mA)下对其进行了综合分析。使用银球电极在头皮上测量体感诱发电位(SEP)反应。计算峰峰值幅度(ΣSEP)和平均SEP(平均SEP)响应之和。使用自旋回波平面成像序列在7 T下获得BOLD信号。avg之间的关系。 SEP和BOLD信号随频率变化,而ΣSEP和BOLD信号之间的频率在变化的频率和电流下显示出显着的相关性。尤其是,ΣSEP和ΣBOLD之间的关系是在每个时间点获得的BOLD信号的总和,反映了BOLD响应曲线下的面积,并且与频率无关,大多数时间是收敛的。我们的结果表明,使用自旋回波序列获得的ΣBOLD反映了由ΣSEP量化的神经活动,该活动是在不同的频率和电流下确定的。

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