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间质和微血管空间的电阻作为细胞外电场和心室心肌中传播速度的决定因素。

Electrical resistances of interstitial and microvascular space as determinants of the extracellular electrical field and velocity of propagation in ventricular myocardium.

作者信息

Fleischhauer J, Lehmann L, Kléber A G

机构信息

Department of Physiology, University of Bern, Switzerland.

出版信息

Circulation. 1995 Aug 1;92(3):587-94. doi: 10.1161/01.cir.92.3.587.

Abstract

BACKGROUND

In myocardial ventricular tissue, extracellular electrical resistance (ro) is an important determinant of propagation velocity (theta) and the magnitude of the extracellular bipolar electrogram (delta Vo). The extracellular space is composed of two compartments, the vascular space and the interstitial space. To assess the electrical equivalent of this compartmentation in the ventricular myocardium and its effect on ro, theta, and delta Vo, electrical cable analysis was performed in an arterially perfused rabbit papillary muscle.

METHODS AND RESULTS

Vascular resistivity was changed from 75 to 86 to 143 and to 221 omega/cm by variation of hematocrit in the perfusate from 0% to 10% to 40% and to 60%. As a means to vary the volume of the interstitial space and with this as its resistivity, colloid osmotic pressure (COP) in the perfusate was changed from 9 to 36 and to 94 mm Hg by altering the dextran concentration in the perfusate from 10 to 40 to 80 g/L. Decreasing COP had a marked effect on ro (56% decrease), delta Vo (decrease from 61 to 42 mV), theta (increase from 48 to 59 cm/s), and the diameter of the muscle fiber (increase of 12%). If COP was increased from 36 to 94 mm Hg, ro (by 35%) and delta Vo (from 62 to 75 mV) increased; theta and diameter showed no significant changes. In contrast, alterations of intravascular electrical resistivity in a range from 75 to 221 omega/cm did not induce any significant changes in ro, delta Vo, theta, and diameter of the preparations.

CONCLUSIONS

We conclude from our data that (1) the microvascular tree in ventricular myocardium is electrically insulated to a large degree from the interstitial space and that (2) electrical current flow in the extracellular space during excitation is confined to the narrow, anisotropic interstitial space.

摘要

背景

在心肌心室组织中,细胞外电阻(ro)是传播速度(theta)和细胞外双极电图幅度(delta Vo)的重要决定因素。细胞外空间由两个部分组成,即血管空间和间质空间。为了评估心室心肌中这种分隔的电等效性及其对ro、theta和delta Vo的影响,在动脉灌注的兔乳头肌中进行了电缆分析。

方法和结果

通过将灌注液中的血细胞比容从0%变化到10%、40%和60%,使血管电阻率从75变为86、143和221Ω/cm。作为改变间质空间体积及其电阻率的一种方法,通过将灌注液中的右旋糖酐浓度从10 g/L改变为40 g/L和80 g/L,使灌注液中的胶体渗透压(COP)从9变为36和94 mmHg。降低COP对ro(降低56%)、delta Vo(从61 mV降至42 mV)、theta(从48 cm/s增加到59 cm/s)和肌纤维直径(增加12%)有显著影响。如果COP从36 mmHg增加到94 mmHg,ro(增加35%)和delta Vo(从62 mV增加到75 mV)增加;theta和直径没有显著变化。相反,血管内电阻在75至221Ω/cm范围内的改变未引起制剂的ro、delta Vo、theta和直径的任何显著变化。

结论

我们从数据中得出结论:(1)心室心肌中的微血管树在很大程度上与间质空间电绝缘,并且(2)兴奋期间细胞外空间中的电流流动局限于狭窄的各向异性间质空间。

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