Transcranial Recording of Electrophysiological Neural Activity in the Rodent Brain in vivo Using Functional Photoacoustic Imaging of Near-Infrared Voltage-Sensitive Dye

被引:35
|
作者
Kang, Jeeun [1 ,2 ]
Zhang, Haichong K. [1 ,2 ]
Kadam, Shilpa D. [3 ]
Fedorko, Julie [2 ]
Valentine, Heather [2 ]
Malle, Adarsha P. [4 ]
Yan, Ping [5 ]
Harraz, Maged M. [4 ]
Kang, Jin U. [1 ]
Rahmim, Arman [2 ]
Gjedde, Albert [2 ,6 ]
Loew, Leslie M. [5 ]
Wong, Dean F. [2 ,4 ,6 ,7 ,8 ,9 ]
Boctor, Emad M. [1 ,2 ]
机构
[1] Johns Hopkins Univ, Whiting Sch Engn, Baltimore, MD 21218 USA
[2] Johns Hopkins Med Inst, Russell H Morgan Dept Radiol & Radiol Sci, 600 N Wolfe St, Baltimore, MD 21205 USA
[3] Johns Hopkins Med Inst, Dept Neurol, Hugo W Moser Res Inst Kennedy Krieger, Baltimore, MD 21205 USA
[4] Johns Hopkins Univ, Solomon H Snyder Dept Neurosci, Baltimore, MD USA
[5] Univ Connecticut Hlth, RD Berlin Ctr Cell Anal & Modeling, Farmington, CT USA
[6] Univ Copenhagen, Dept Neurosci, Copenhagen, Denmark
[7] Johns Hopkins Med Inst, Dept Psychiat & Behav Sci, Baltimore, MD 21205 USA
[8] Johns Hopkins Med Inst, Dept Neurol, Baltimore, MD 21205 USA
[9] Johns Hopkins Univ, Dept Environm Sci & Engn, Baltimore, MD USA
基金
美国国家科学基金会; 新加坡国家研究基金会;
关键词
photoacoustic; neuroimaging; near-infrared; voltage-sensitive dye; transcranial; seizure; CEREBRAL-BLOOD-FLOW; SEIZURES; NEUROMODULATION; MODELS; TIME; TOMOGRAPHY; ANESTHESIA; RESPONSES; DOPAMINE; RATS;
D O I
10.3389/fnins.2019.00579
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
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.
引用
收藏
页数:14
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