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Neurovascular coupling study of PTZ-induced seizure in rats by simultaneous real-time 3D PAT and EEG at two wavelengths

机译:通过同时实时3D PAT和EEG在两个波长下对PTZ诱发的大鼠癫痫发作的神经血管耦合研究

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Neurovascular coupling in epilepsy is poorly understood, the study of which requires simultaneous monitoring of hemodynamic changes and neural activity in the brain. Here we for the first time present a combined real-time 3D Photoacoustic tomography (PAT) and electro-physiology (EEG) system for the study of neurovascular coupling in epilepsy, whose ability was demonstrated with a pentylenetetrazol (PTZ) induced generalized seizure model in rats. Two groups of experiments were carried out with different wavelengths to detect the changes of oxy-hemoglobin (HbO2) and deoxy-hemoglobin (Hbr) signals in the rat brain. We extracted the average PAT signals of the superior sagittal sinus (SSS), and compared them with the EEG signal. Results showed that the seizure process can be divided into three stages. A ‘dip’ lasting for 1–2 minutes in the first stage and the following hyperfusion in the second stage were observed. The oxy-hemoglobin (HbO2) signal and the deoxy-hemoglobin (Hbr) signal were generally negatively correlated. Compared to other existing functional neuroimaging tools, the proposed method here enables reliable tracking of hemodynamic signal with both high spatial and temporal resolution in 3D, so it's more suitable for neurovascular coupling study of epilepsy.
机译:对癫痫的神经血管耦合了解甚少,其研究需要同时监测大脑的血流动力学变化和神经活动。在这里,我们首次提出了结合实时3D光声层析成像(PAT)和电生理学(EEG)的系统,用于研究癫痫中的神经血管耦合,并通过戊烯四唑(PTZ)诱导的全身性癫痫发作模型证明了其能力。大鼠。进行了两组不同波长的实验,以检测大鼠脑中氧合血红蛋白(HbO2)和脱氧血红蛋白(Hbr)信号的变化。我们提取上矢状窦(SSS)的平均PAT信号,并将其与EEG信号进行比较。结果表明,癫痫发作过程可分为三个阶段。在第一阶段持续1–2分钟的“浸入”,在第二阶段观察到随后的过度融合。氧合血红蛋白(HbO2)信号和脱氧血红蛋白(Hbr)信号通常呈负相关。与其他现有的功能性神经影像学工具相比,此处提出的方法能够在3D中以高时空分辨率对血流动力学信号进行可靠的跟踪,因此它更适合于癫痫的神经血管耦合研究。

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