Long-range synchronization of neural oscillations correlates with distinct behaviors, yet its causal role remains unproven. In mice, tests of avoidance behavior evoke increases in theta-frequency (â¼8Â Hz) oscillatory synchrony between the ventral hippocampus (vHPC) and medial prefrontal cortex (mPFC). To test the causal role of this synchrony, we dynamically modulated vHPC-mPFC terminal activity using optogenetic stimulation. Oscillatory stimulation at 8Â Hz maximally increased avoidance behavior compared to 2, 4, and 20Â Hz. Moreover, avoidance behavior was selectively increased when 8-Hz stimulation was delivered in an oscillatory, but not pulsatile, manner. Furthermore, 8-Hz oscillatory stimulation enhanced vHPC-mPFC neurotransmission and entrained neural activity in the vHPC-mPFC network, resulting in increased synchrony between vHPC theta activity and mPFC spiking. These data suggest a privileged role for vHPC-mPFC theta-frequency communication in generating avoidance behavior and provide direct evidence that synchronized oscillations play a role in facilitating neural transmission and behavior.
Hippocampal-Prefrontal Theta Transmission Regulates Avoidance Behavior.
海马-前额叶θ波传递调节回避行为
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作者:Padilla-Coreano Nancy, Canetta Sarah, Mikofsky Rachel M, Alway Emily, Passecker Johannes, Myroshnychenko Maxym V, Garcia-Garcia Alvaro L, Warren Richard, Teboul Eric, Blackman Dakota R, Morton Mitchell P, Hupalo Sofiya, Tye Kay M, Kellendonk Christoph, Kupferschmidt David A, Gordon Joshua A
| 期刊: | Neuron | 影响因子: | 15.000 |
| 时间: | 2019 | 起止号: | 2019 Nov 6; 104(3):601-610 |
| doi: | 10.1016/j.neuron.2019.08.006 | ||
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