首页> 外文期刊>The European Journal of Neuroscience >Maintaining network activity in submerged hippocampal slices: importance of oxygen supply.
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Maintaining network activity in submerged hippocampal slices: importance of oxygen supply.

机译:维持淹没海马切片中的网络活动:供氧的重要性。

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摘要

Studies in brain slices have provided a wealth of data on the basic features of neurons and synapses. In the intact brain, these properties may be strongly influenced by ongoing network activity. Although physiologically realistic patterns of network activity have been successfully induced in brain slices maintained in interface-type recording chambers, they have been harder to obtain in submerged-type chambers, which offer significant experimental advantages, including fast exchange of pharmacological agents, visually guided patch-clamp recordings, and imaging techniques. Here, we investigated conditions for the emergence of network oscillations in submerged slices prepared from the hippocampus of rats and mice. We found that the local oxygen level is critical for generation and propagation of both spontaneously occurring sharp wave-ripple oscillations and cholinergically induced fast oscillations. We suggest three ways to improve the oxygen supply to slices under submerged conditions: (i) optimizing chamber design for laminar flow of superfusion fluid; (ii) increasing the flow rate of superfusion fluid; and (iii) superfusing both surfaces of the slice. These improvements to the recording conditions enable detailed studies of neurons under more realistic conditions of network activity, which are essential for a better understanding of neuronal network operation.
机译:对脑切片的研究提供了有关神经元和突触基本特征的大量数据。在完整的大脑中,这些属性可能会受到正在进行的网络活动的强烈影响。尽管已在界面型记录室中维护的脑片中成功诱导出网络活动的生理逼真的模式,但在浸入型室中却很难获得它们,这提供了重要的实验优势,包括快速交换药理剂,视觉引导的贴剂-钳位记录和成像技术。在这里,我们调查了从大鼠和小鼠海马制备的淹没切片中网络振荡出现的条件。我们发现,局部氧水平对于自发发生的尖锐的波纹波动和胆碱能引起的快速振荡的产生和传播都是至关重要的。我们提出了三种方法来改善在淹没条件下切片的氧气供应:(i)优化腔室设计以使灌注液的层流流动; (ii)增加灌注液的流速; (iii)对切片的两个表面进行超熔合。对记录条件的这些改进使得可以在更实际的网络活动条件下对神经元进行详细研究,这对于更好地了解神经元网络操作至关重要。

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