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Optical recording of the electrical activity of synaptically interacting Aplysia neurons in culture using potentiometric probes.

机译:使用电位探针对培养中突触相互作用海藻神经元的电活动进行光学记录。

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摘要

We used multiple-site optical recording methods, in conjunction with impermeant molecular probes of the cell membrane potential, to record the electrical activity of model neural circuits in vitro. Our system consisted of co-cultured pairs of left upper quadrant neurons from the abdominal ganglion of the marine gastropod Aplysia. These neurons interact via inhibitory synapses in vitro. Photodynamic damage to the neurons was essentially eliminated over the time course of the measurements, approximately less than 30 s, by removing oxygen from the recording solution and replacing it with argon. This procedure did not affect the synaptic interactions. We observed repetitive spiking activity in single-trace optical recordings with a maximum signal-to-noise ratio per detector of approximately 50. Individual optical signals that corresponded to either the activity of the presynaptic neuron or that of the postsynaptic neuron were clearly identified. This allowed us to monitor the activity of synaptically interacting neurons, observed as a reduction of the firing rate of the postsynaptic cell after activity of the presynaptic cell. Our results demonstrate that optical methods are appropriate for recording prolonged, asynchronous activity from synaptically interacting neurons in culture.
机译:我们使用多点光学记录方法,结合细胞膜电位的不渗透分子探针,在体外记录模型神经回路的电活动。我们的系统由共同培养的成对的海洋腹足纲Aplysia的腹神经节的左上象限神经元组成。这些神经元在体外通过抑制性突触相互作用。在测量的整个过程中(大约少于30 s),通过从记录溶液中除去氧气并将其替换为氩气,基本上消除了对神经元的光动力损伤。该过程不影响突触相互作用。我们在单迹线光学记录中观察到重复的尖峰活动,每个探测器的最大信噪比约为50。可以清楚地识别出对应于突触前神经元或突触后神经元活动的单个光学信号。这使我们能够监测突触相互作用神经元的活性,观察为突触后细胞活动后突触后细胞的放电速率降低。我们的结果表明,光学方法适用于记录来自文化中突触相互作用的神经元的长时间异步活动。

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