运动前神经元活动
神经科学
光遗传学
神经影像学
体内
生物神经网络
功能磁共振成像
临床前影像学
神经活动
大脑活动与冥想
功能成像
磁共振成像
时间分辨率
生物
脑电图
物理
医学
生物技术
放射科
量子力学
作者
Phan Tan Toi,Hyun Jae Jang,Kyeongseon Min,Sung-Phil Kim,Seung‐Kyun Lee,Jongho Lee,Jeehyun Kwag,Jang‐Yeon Park
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2022-10-13
卷期号:378 (6616): 160-168
被引量:70
标识
DOI:10.1126/science.abh4340
摘要
There has been a long-standing demand for noninvasive neuroimaging methods that can detect neuronal activity at both high temporal and high spatial resolution. We present a two-dimensional fast line-scan approach that enables direct imaging of neuronal activity with millisecond precision while retaining the high spatial resolution of magnetic resonance imaging (MRI). This approach was demonstrated through in vivo mouse brain imaging at 9.4 tesla during electrical whisker-pad stimulation. In vivo spike recording and optogenetics confirmed the high correlation of the observed MRI signal with neural activity. It also captured the sequential and laminar-specific propagation of neuronal activity along the thalamocortical pathway. This high-resolution, direct imaging of neuronal activity will open up new avenues in brain science by providing a deeper understanding of the brain's functional organization, including the temporospatial dynamics of neural networks.
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