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Three-micro-electrode voltage clamp experiments in calf cardiac Purkinje fibres: is slow inward current adequately measured?

机译:小腿心脏浦肯野纤维中的三微电极电压钳实验:是否可以充分测量缓慢的内向电流?

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摘要

1. The three-micro-electrode voltage clamp method (Adrian, Chandler & Hodgkin, 1970) was adapted for the study of regenerative inward currents in cardiac muscle. The adequacy of measurements of slow inward current in cardiac Purkinje fibres was assessed. 2. Membrane current density is reported simultaneously by total applied current (IT), along with a longitudinal voltage difference signal (delta V), recorded between two intracellular micro-electrodes. 3. Non-linear cable calculations show that delta V is a more faithful measure of membrane current density than IT as peak inward current increases. Quantitative agreement between delta V and IT only occurs when both signals report the membrane characteristics that would be obtained with an ideal longitudinal space clamp. 4. Agreement between delta V and IT is thus a useful criterion for satisfactory experimental measurements which we applied to the slow inward current. This component was elicited by depolarizing steps from a holding potential near =45 mV in the presence of tetrodotoxin. The IT signal was compared directly with delta V/R, where R is an effective longitudinal resistance that was experimentally determined. 5. delta V/R and IT showed very good agreement in both peak amplitude and time course at all potentials studied. 6. Radial non-uniformity during the measured peak slow inward current was estimated by calculations assuming clefts 200 A wide with a uniform distribution of ionic channels. The calculated voltage span from surface to centre was always less than 5 mV, and the measured I-V characteristics showed little distortion. 7. In another check, I-V characteristics and slow response membrane action potentials were compared. The measured peak current showed good agreement with the product (total preparation capacitance) x (rate of rise). 8. The experimental and theoretical analysis suggest that the measurements of slow inward current are a good approximation to genuine membrane properties.
机译:1.三微电极电压钳方法(Adrian,Chandler和Hodgkin,1970年)适用于研究心肌中的再生内向电流。评估了心脏浦肯野纤维中缓慢的内向电流测量的适当性。 2.通过总施加电流(IT)同时报告膜电流密度,同时记录两个细胞内微电极之间的纵向电压差信号(ΔV)。 3.非线性电缆计算表明,随着峰值内向电流的增加,ΔV比IT更贴切地衡量膜电流密度。仅当两个信号都报告了理想的纵向空间钳将获得的膜特性时,才会发生增量V和IT之间的定量一致性。 4.因此,δV和IT之间的一致性是令人满意的实验测量的有用标准,我们将其应用于缓慢的内向电流。在存在河豚毒素的情况下,通过从= 45 mV附近的保持电位中去极化步骤来激发该组分。将IT信号直接与增量V / R进行比较,其中R是通过实验确定的有效纵向电阻。 5.在所有研究的电位下,ΔV/ R和IT在峰值幅度和时间过程上都显示出非常好的一致性。 6.在假定峰值宽度为200 A且裂口离子通道均匀分布的情况下,通过计算可估算出在测得的峰值慢速内向电流期间的径向不均匀性。从表面到中心的计算电压范围始终小于5 mV,并且测得的I-V特性显示出很小的失真。 7.在另一项检查中,比较了I-V特性和慢响应膜动作电位。测得的峰值电流与乘积(总制备电容)x(上升速率)显示出良好的一致性。 8.实验和理论分析表明,缓慢的内向电流的测量非常接近真正的膜性能。

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