电生理学
膜片钳
电流钳
神经科学
电压钳
切片制备
夹紧
细胞内
离体
生物
体内
化学
计算机科学
细胞生物学
夹紧
计算机视觉
生物技术
作者
Simon Heß,Helmut Wratil,Peter Kloppenburg
出处
期刊:Bio-protocol
[Bio-Protocol]
日期:2023-01-01
卷期号:13 (16)
标识
DOI:10.21769/bioprotoc.4741
摘要
Intracellular signaling pathways directly and indirectly regulate neuronal activity. In cellular electrophysiological measurements with sharp electrodes or whole-cell patch clamp recordings, there is a great risk that these signaling pathways are disturbed, significantly altering the electrophysiological properties of the measured neurons. Perforated-patch clamp recordings circumvent this issue, allowing long-term electrophysiological recordings with minimized impairment of the intracellular milieu. Based on previous studies, we describe a superstition-free protocol that can be used to routinely perform perforated patch clamp recordings for current and voltage measurements.
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