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Multiple blocks of intermittent and continuous theta-burst stimulation applied via transcranial magnetic stimulation differently affect sensory responses in rat barrel cortex

机译:经颅磁刺激施加的多个间歇性和连续性Theta-burst刺激不同地影响大鼠桶皮质的感觉反应

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摘要

Cortical sensory processing varies with cortical state and the balance of inhibition to excitation. Repetitive transcranial magnetic stimulation (rTMS) has been shown to modulate human cortical excitability. In a rat model, we recently showed that intermittent theta-burst stimulation (iTBS) applied to the corpus callosum, to activate primarily supragranular cortical pyramidal cells but fewer subcortical neurons, strongly reduced the cortical expression of parvalbumin (PV), indicating reduced activity of fast-spiking interneurons. Here, we used the well-studied rodent barrel cortex system to test how iTBS and continuous TBS (cTBS) modulate sensory responses evoked by either single or double stimuli applied to the principal (PW) and/or adjacent whisker (AW) in urethane-anaesthetized rats. Compared to sham stimulation, iTBS but not cTBS particularly enhanced late (>18 ms) response components of multi-unit spiking and local field potential responses in layer 4 but not the very early response (<18 ms). Similarly, only iTBS diminished the suppression of the second response evoked by paired PW or AW–PW stimulation at 20 ms intervals. The effects increased with each of the five iTBS blocks applied. With cTBS a mild effect similar to that of iTBS was first evident after 4–5 stimulation blocks. Enhanced cortical c-Fos and zif268 expression but reduced PV and GAD67 expression was found only after iTBS, indicating increased cortical activity due to lowered inhibition. We conclude that iTBS but less cTBS may primarily weaken a late recurrent-type cortical inhibition mediated via a subset of PV+ interneurons, enabling stronger late response components believed to contribute to the perception of sensory events.
机译:皮质的感觉过程随皮质状态和对兴奋的抑制平衡而变化。重复经颅磁刺激(rTMS)已被证明可调节人类皮层兴奋性。在大鼠模型中,我们最近发现,间歇性theta-burst刺激(iTBS)应用于call体,主要激活了肌层皮质锥体细胞,但皮质下神经元较少,强烈降低了小白蛋白(PV)的皮质表达,表明其活性降低。快速爆发的中间神经元。在这里,我们使用经过充分研究的啮齿类动物的肾上腺皮质系统来测试iTBS和连续TBS(cTBS)如何调节由单次或两次刺激作用于尿烷中的主要(PW)和/或相邻晶须(AW)引起的感觉反应。麻醉的大鼠。与假刺激相比,iTBS而非cTBS特别增强了第4层多单元加标的后期响应(> 18 ms)和局部场电势响应,但没有增强非常早的响应(<18 ms)。同样,只有iTBS可以减少以配对的PW或AW–PW刺激以20毫秒的间隔引起的第二反应的抑制。应用五个iTBS块中的每一个,效果都会增强。用cTBS刺激4-5次后,与iTBS相似的轻度效果首先显现出来。仅在iTBS后发现皮质c-Fos和zif268表达增强,但PV和GAD67表达降低,这表明由于抑制作用降低,皮质活性增加。我们得出的结论是,iTBS但较少的cTBS可能主要减弱了通过PV +中间神经元的子集介导的晚期复发型皮质抑制,从而使较强的晚期应答成分被认为有助于感觉事件的感知。

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