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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Admittance-based measurement of membrane capacitance using the EPC-9 patch-clamp amplifier.
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Admittance-based measurement of membrane capacitance using the EPC-9 patch-clamp amplifier.

机译:使用EPC-9膜片钳放大器基于导纳的膜电容测量。

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摘要

A software lock-in amplifier (SLIA) was developed to allow high-time-resolution measurement of membrane capacitance as a single-cell assay of exocytosis. The unique feature of this "virtual instrument" is that it is thoroughly integrated with a computer-controlled patch-clamp amplifier (EPC-9) to allow estimation of equivalent circuit parameters based upon calibrated admittance measurements rather than just relative changes. Since the same software package ("PULSE") controls both the EPC-9 and the SLIA, instrument settings which affect admittance calculations (gain, filtering, etc.) are always "known" by the SLIA. Attenuation and phase shifts introduced within the EPC-9 by low-pass filters and other circuitry are modelled and automatically corrected by the software. In addition, changes in the measured signal introduced by whole-cell capacitance and series resistance compensation are accounted for. The noise of capacitance measurements is nearly optimal and resistive parameters can vary over a large range without inducing artifactual changes in capacitance estimates.
机译:开发了一种软件锁定放大器(SLIA),可以对胞膜胞吐作用进行单细胞测定,从而可以进行高分辨率的膜电容测量。这种“虚拟仪器”的独特之处在于,它与计算机控制的膜片钳放大器(EPC-9)完全集成在一起,可以根据校准的导纳测量值估算等效电路参数,而不仅仅是相对变化。由于相同的软件包(“ PULSE”)控制EPC-9和SLIA,因此影响SIA的导纳计算(增益,滤波等)的仪器设置总是“已知”的。由低通滤波器和其他电路在EPC-9内引入的衰减和相移被建模并由软件自动校正。此外,还要考虑到由全电池电容和串联电阻补偿引起的测量信号变化。电容测量的噪声几乎是最佳的,并且电阻参数可以在较大范围内变化,而不会引起电容估计的人为变化。

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