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Detecting action potentials in neuronal populations with calcium imaging.

机译:通过钙成像检测神经元群体中的动作电位。

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The study of neural circuits requires methods for simultaneously recording the activity of populations of neurons. Here, using calcium imaging of neocortical brain slices we take advantage of the ubiquitous distribution of calcium channels in neurons to develop a method to reconstruct the action potentials occurring in a population of neurons. Combining calcium imaging with whole-cell or perforated patch recordings from neurons loaded with acetoxymethyl ester or potassium salt forms of calcium indicators, we demonstrate that each action potential produces a stereotyped calcium transient in the somata of pyramidal neurons. These signals are detectable without averaging, and the signal-to-noise is sufficient to carry out a reconstruction of the spiking pattern of hundreds of neurons, up to relatively high firing frequencies. This technique could in principle be applied systematically to follow the activity of neuronal populations in vitro and in vivo. Copyright 1999 Academic Press.
机译:对神经回路的研究需要同时记录神经元群体活动的方法。在这里,使用新皮质大脑切片的钙成像,我们利用了神经元中钙通道的普遍分布来开发一种方法来重建神经元群体中发生的动作电位。结合钙成像与神经细胞的全细胞或穿孔补丁记录,这些神经元装载有乙酰氧甲基酯或钾盐形式的钙指示剂,我们证明了每个动作电位都会在锥体神经元的躯体中产生定型的钙瞬变。这些信号无需平均即可检测到,信噪比足以重构数百个神经元的尖峰模式,直至相对较高的发射频率。原则上,该技术可以系统地应用于在体外和体内跟踪神经元群体的活动。版权所有1999 Academic Press。

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