首页> 美国卫生研究院文献>Frontiers in Neuroscience >Transcranial Recording of Electrophysiological Neural Activity in the Rodent Brain in vivo Using Functional Photoacoustic Imaging of Near-Infrared Voltage-Sensitive Dye
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Transcranial Recording of Electrophysiological Neural Activity in the Rodent Brain in vivo Using Functional Photoacoustic Imaging of Near-Infrared Voltage-Sensitive Dye

机译:使用功能性光声成像的近红外电压敏感染料在小鼠体内经颅电生理神经活动的记录。

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摘要

Minimally-invasive monitoring of electrophysiological neural activities in real-time—that enables quantification of neural functions without a need for invasive craniotomy and the longer time constants of fMRI and PET—presents a very challenging yet significant task for neuroimaging. In this paper, we present in vivo functional PA (fPA) imaging of chemoconvulsant rat seizure model with intact scalp using a fluorescence quenching-based cyanine voltage-sensitive dye (VSD) characterized by a lipid vesicle model mimicking different levels of membrane potential variation. The framework also involves use of a near-infrared VSD delivered through the blood-brain barrier (BBB), opened by pharmacological modulation of adenosine receptor signaling. Our normalized time-frequency analysis presented in vivo VSD response in the seizure group significantly distinguishable from those of the control groups at sub-mm spatial resolution. Electroencephalogram (EEG) recording confirmed the changes of severity and frequency of brain activities, induced by chemoconvulsant seizures of the rat brain. The findings demonstrate that the near-infrared fPA VSD imaging is a promising tool for in vivo recording of brain activities through intact scalp, which would pave a way to its future translation in real time human brain imaging.
机译:实时微创监测电生理神经活动-无需进行颅骨切开术以及功能性磁共振成像和PET的较长时间常数即可定量神经功能,这对神经成像而言是一项非常具有挑战性但意义重大的任务。在本文中,我们目前使用化学荧光惊厥的花菁电压敏感染料(VSD)表征具有完整头皮的化学性惊厥大鼠癫痫发作模型的体内功能PA(fPA)成像,其特征在于脂质囊泡模型模拟了不同水平的膜电位变化。该框架还涉及使用通过血脑屏障(BBB)传递的近红外VSD,该血脑屏障是通过腺苷受体信号传导的药理学调节而打开的。我们的标准化时频分析显示癫痫发作组的体内VSD反应在亚毫米空间分辨率下与对照组明显不同。脑电图(EEG)记录证实了由化学性惊厥性癫痫发作诱发的大脑活动的严重程度和频率的变化。研究结果表明,近红外fPA VSD成像是通过完整头皮在体内记录大脑活动的有前途的工具,这将为将来在实时人脑成像中的翻译铺平道路。

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