首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Voltage-clamp-controlled current-clamp recordings from neurons: an electrophysiological technique enabling the detection of fast potential changes at preset holding potentials.
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Voltage-clamp-controlled current-clamp recordings from neurons: an electrophysiological technique enabling the detection of fast potential changes at preset holding potentials.

机译:来自神经元的电压钳控制的电流钳记录:一种电生理技术,能够检测预设保持电位下的快速电位变化。

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摘要

Investigations of the properties of fast, transient potential changes (e.g. receptor potentials or synaptic potentials) in excitable cells by means of current-clamp recording techniques require the exact adjustment and control of membrane potentials. Usually, the desired membrane potential values are set by current injection via the recording electrode and are controlled manually by regulating the current strength necessary to maintain a constant potential. However, this technique is associated with a number of disadvantages. A single-electrode current- and voltage-clamp amplifier was therefore modified to compensate for slow membrane potential changes without affecting faster voltage responses. Basically, low-pass filters with selectable time constants were incorporated into the voltage-clamp feedback circuit to control the amplifier's response speed. In addition, the amplifier's electronic circuits were altered to enable current pulse injection into the cells. Thus, while recording at preset and controlled membrane potentials, it was possible to monitor the cell's input resistance or current/voltage relationship. This new recording technique has been designated voltage-clamp-controlled current clamp tested by intracellular recordings from neocortical and neostriatal neurons in vitro using either conventional microelectrodes or patch-clamp electrodes.
机译:利用电流钳记录技术对可激发细胞中快速瞬时电位变化(例如受体电位或突触电位)的性质进行研究需要精确调节和控制膜电位。通常,期望的膜电位值通过经由记录电极的电流注入来设定,并通过调节维持恒定电位所需的电流强度来手动控制。但是,该技术具有许多缺点。因此,对单电极电流钳位器和电压钳位器进行了修改,以补偿缓慢的膜电位变化,而不影响更快的电压响应。基本上,具有可选时间常数的低通滤波器被集成到电压钳位反馈电路中,以控制放大器的响应速度。此外,还对放大器的电子电路进行了更改,以使电流脉冲注入到单元中。因此,在以预设和受控的膜电位进行记录的同时,可以监视电池的输入电阻或电流/电压关系。这项新的记录技术已被指定为电压钳控制的电流钳,通过使用常规微电极或膜片钳电极在体外从新皮层和新纹状体神经元进行细胞内记录测试来进行测试。

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