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首页> 外文期刊>Journal of neural engineering >Optimizing optogenetic stimulation protocols in auditory corticofugal neurons based on closed-loop spike feedback
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Optimizing optogenetic stimulation protocols in auditory corticofugal neurons based on closed-loop spike feedback

机译:基于闭环尖峰反馈的听觉皮层皮质神经元光遗传刺激方案的优化

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Objective. Optogenetics provides a means to probe functional connections between brain areas. By activating a set of presynaptic neurons and recording the activity from a downstream brain area, one can establish the sign and strength of a feedforward connection. One challenge is that there are virtually limitless patterns that can be used to stimulate a presynaptic brain area. Functional influences on downstream brain areas can depend not just on whether presynaptic neurons were activated, but how they were activated. Corticofugal axons from the auditory cortex (ACtx) heavily innervate the auditory tectum, the inferior colliculus (IC). Here, we sought to determine whether different modes of corticocollicular activation could titrate the strength of feedforward modulation of sound processing in IC neurons. Approach. We used multi-channel electrophysiology and optogenetics to record from multiple regions of the IC in awake head-fixed mice while optogenetically stimulating ACtx neurons expressing Chronos, an ultra-fast channelrhodopsin. To identify cortical activation patterns associated with the strongest effects on IC firing rates, we employed a closed-loop evolutionary optimization procedure that tailored the voltage command signal sent to the laser based on spike feedback from single IC neurons. Main results. Within minutes, our evolutionary search procedure converged on ACtx stimulation configurations that produced more effective and widespread enhancement of IC unit activity than generic activation parameters. Cortical modulation of midbrain spiking was bi-directional, as the evolutionary search procedure could be programmed to converge on activation patterns that either suppressed or enhanced sound-evoked IC firing rate. Significance. This study introduces a closed-loop optimization procedure to probe functional connections between brain areas. Our findings demonstrate that the influence of descending feedback projections on subcortical sensory processing can vary both in sign and degree depending on how cortical neurons are activated in time.
机译:目的。光遗传学提供了一种探测大脑区域之间功能连接的方法。通过激活一组突触前神经元并记录下游脑区的活动,可以建立前馈连接的信号和强度。一个挑战是,实际上存在着无限的模式可以用来刺激突触前的大脑区域。对下游大脑区域的功能影响不仅取决于突触前神经元是否被激活,还取决于它们如何被激活。听觉皮层(ACtx)的皮质性轴突轴突严重支配了听觉盖,下丘脑(IC)。在这里,我们试图确定皮质神经胶质细胞激活的不同模式是否可以滴定IC神经元中声音处理的前馈调制强度。方法。我们使用多通道电生理学和光遗传学来记录清醒的头戴固定式小鼠的IC的多个区域,同时以光遗传学刺激表达Chronos(一种超快速通道视紫红质)的ACtx神经元。为了确定与对IC发射速率影响最强相关的皮质激活模式,我们采用了一种闭环进化优化程序,该程序根据来自单个IC神经元的尖峰反馈来定制发送给激光器的电压命令信号。主要结果。在几分钟之内,我们的进化搜索程序就集中在ACtx刺激配置上,该配置比常规激活参数产生了更有效,更广泛的IC单元活动增强。中脑峰的皮质调制是双向的,因为进化搜索程序可以编程为收敛于抑制或提高声诱发的IC发射速率的激活模式。意义。这项研究引入了一种闭环优化程序来探测大脑区域之间的功能连接。我们的研究结果表明,下降的反馈投影对皮层下感觉处理的影响可能会随着时间的变化而改变皮层神经元的信号和程度。

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