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首页> 外文期刊>American Journal of Physiology >Feasibility of cardiac microimpedance measurement using multisite interstitial stimulation.
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Feasibility of cardiac microimpedance measurement using multisite interstitial stimulation.

机译:使用多部位间质刺激进行心脏微阻抗测量的可行性。

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This study was designed to test the hypothesis that analyses of central interstitial potential differences recorded during multisite stimulation with a set of interstitial electrodes provide sufficient data for accurate measurement of cardiac microimpedances. On theoretical grounds, interstitial current injected and removed using electrodes in close proximity does not cross the membrane, whereas equilibration of intracellular and interstitial potentials occurs distant from electrodes widely separated. Multisite interstitial stimulation should therefore give rise to interstitial potential differences recorded centrally that depend on intracellular and interstitial microimpedances, allowing independent measurement. Simulations of multisite stimulation with fine (25 microm) and wide (400 microm) spacing in one-dimensional models that included Luo-Rudy dynamic membrane equations were performed. Constant interstitial and intracellular microimpedances were prescribed for initial analyses. Discrete myoplasmicand gap-junctional components were prescribed intracellularly in later simulations. With constant microimpedances, multisite stimulation using 29 total electrode combinations allowed interstitial and intracellular microimpedance measurements at errors of 0.30% and 0.34%, respectively, with errors of 0.05% and 0.40% achieved using 6 combinations and 10 total electrodes. With discrete myoplasmic and junctional components, comparable accuracy was maintained following adjustments to the junctions to reflect uncoupling. This allowed uncoupling to be quantified as relative increases in total junctional resistance. Our findings suggest development of microfabricated devices to implement the procedure would facilitate routine measurement as a component of cardiac electrophysiological study.
机译:本研究旨在检验以下假设:使用一组间隙电极在多位点刺激过程中记录的中心间隙电位差的分析可提供足够的数据来准确测量心脏微阻抗。从理论上讲,使用紧密相邻的电极注入和去除的组织间电流不会穿过膜,而细胞内和组织间电势的平衡发生在远离分开的电极很远的地方。因此,多部位间质刺激应引起中央记录的间质电位差异,该差异取决于细胞内和间质微阻抗,从而允许独立测量。在包含Luo-Rudy动态膜方程的一维模型中模拟了具有细(25微米)和宽(400微米)间距的多点刺激。恒定的组织间和细胞内微阻抗被规定用于初始分析。在以后的模拟中,在细胞内规定了离散的肌质和间隙连接成分。在恒定微阻抗的情况下,使用29种总电极组合进行的多位点刺激可进行间隙和细胞内微阻抗测量,误差分别为0.30%和0.34%,使用6种组合和10个总电极可实现0.05%和0.40%的误差。对于离散的胞质和连接成分,在调整连接以反映解耦后,可以保持相当的精度。这样就可以将总耦合电阻的相对增加量化为解耦。我们的发现表明,开发用于执行该程序的微型设备将有助于进行常规测量,将其作为心脏电生理研究的组成部分。

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