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Measuring Sharp Waves and Oscillatory Population Activity With the Genetically Encoded Calcium Indicator GCaMP6f

机译:用遗传编码的钙指示剂GCaMP6f测量尖波和振荡种群活动

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摘要

GCaMP6f is among the most widely used genetically encoded calcium indicators for monitoring neuronal activity. Applications are at both the cellular and population levels. Here, we explore two important and under-explored issues. First, we have tested if GCaMP6f is sensitive enough for the detection of population activity with sparse firing, similar to the sensitivity of the local field potential (LFP). Second, we have tested if GCaMP6f is fast enough for the detection of fast network oscillations critical for the encoding and consolidation of memory. We have focused this study on the activity of the hippocampal network including sharp waves (SWs), carbachol-induced theta oscillations, and interictal-like spikes. We compare simultaneous LFP and optical GCaMP6f fluorescent recordings in Thy1-GCaMP6f mouse hippocampal slices. We observe that SWs produce a clear population GCaMP6f signal above noise with an average magnitude of 0.3% ΔF/F. This population signal is highly correlated with the LFP, albeit with a delay of 40.3 ms (SD 10.8 ms). The population GCaMP6f signal follows the LFP evoked by 20 Hz stimulation with high fidelity, while electrically evoked oscillations up to 40 Hz were detectable with reduced amplitude. GCaMP6f and LFP signals showed a large amplitude discrepancy. The amplitude of GCaMP6f fluorescence increased by a factor of 28.9 (SD 13.5) between spontaneous SWs and carbachol-induced theta bursts, while the LFP amplitude increased by a factor of 2.4 (SD 1.0). Our results suggest that GCaMP6f is a useful tool for applications commonly considered beyond the scope of genetically encoded calcium indicators. In particular, population GCaMP6f signals are sensitive enough for detecting synchronous network events with sparse firing and sub-threshold activity, as well as asynchronous events with only a nominal LFP. In addition, population GCaMP6f signals are fast enough for monitoring theta and beta oscillations (<25 Hz). Faster calcium indicators (e.g., GCaMP7) will further improve the frequency response for the detection of gamma band oscillations. The advantage of population optical over LFP recordings are that they are non-contact and free from stimulation artifacts. These features may be particularly useful for high-throughput recordings and applications sensitive to stimulus artifact, such as monitoring responses during continuous stimulation.
机译:GCaMP6f是用于监测神经元活动的最广泛使用的遗传编码钙指示剂。应用程序既适用于移动电话,也适用于人群。在这里,我们探讨了两个重要且尚未充分探索的问题。首先,我们测试了GCaMP6f是否足够灵敏以稀疏发射来检测种群活动,这与局部场电势(LFP)的敏感性相似。其次,我们测试了GCaMP6f是否足够快以检测对存储器的编码和合并至关重要的快速网络振荡。我们将这项研究的重点放在海马网络的活动上,包括尖波(SW),卡巴胆碱引起的theta振荡和发作间样峰。我们比较Thy1-GCaMP6f小鼠海马切片中的同时LFP和光学GCaMP6f荧光记录。我们观察到,SW产生高于噪声的清晰总体GCaMP6f信号,平均幅度为0.3%ΔF/ F。该填充信号与LFP高度相关,尽管有40.3 ms(SD 10.8 ms)的延迟。总体GCaMP6f信号遵循高保真度的20 Hz刺激诱发的LFP,而可检测到振幅降低的高达40 Hz的电诱发振荡。 GCaMP6f和LFP信号显示出较大的幅度差异。在自发SW和卡巴胆碱引起的θ爆发之间,GCaMP6f荧光的振幅增加了28.9倍(SD 13.5),而LFP振幅增加了2.4倍(SD 1.0)。我们的结果表明,GCaMP6f是一种有用的工具,可用于通常认为超出了遗传编码钙指示剂范围的应用。尤其是,总体GCaMP6f信号足够灵敏,可以检测到具有稀疏触发和亚阈值活动的同步网络事件,以及仅具有标称LFP的异步事件。此外,总体GCaMP6f信号足够快以监视theta和beta振荡(<25 Hz)。更快的钙指示剂(例如GCaMP7)将进一步改善检测伽马能带振荡的频率响应。人口光学优于LFP记录的优点是它们是非接触式的,并且没有刺激伪影。这些功能对于高通量录制和对刺激伪影敏感的应用(例如在连续刺激过程中监视响应)可能特别有用。

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