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1
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2
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本文引用的文献

1
Extracellular ion transport.细胞外离子转运
J Theor Biol. 1980 Aug 21;85(4):739-43. doi: 10.1016/0022-5193(80)90268-4.
2
On a boundary condition of extracellular ion transport.关于细胞外离子转运的边界条件。
J Theor Biol. 1981 Nov 21;93(2):495-6. doi: 10.1016/0022-5193(81)90116-8.
3
A mechanism for the regulation of ligament width based on the resonance frequency of ion concentration waves.一种基于离子浓度波共振频率调节韧带宽度的机制。
J Theor Biol. 1983 Jun 21;102(4):477-86. doi: 10.1016/0022-5193(83)90384-3.
4
Time-dependent extracellular ion transport.时间依赖性细胞外离子转运
J Theor Biol. 1981 Oct 21;92(4):363-8. doi: 10.1016/0022-5193(81)90253-8.
5
An ultrasensitive vibrating probe for measuring steady extracellular currents.一种用于测量稳定细胞外电流的超灵敏振动探针。
J Cell Biol. 1974 Nov;63(2 Pt 1):614-28. doi: 10.1083/jcb.63.2.614.
6
Electrical controls of development.发育的电控制
Annu Rev Biophys Bioeng. 1977;6:445-76. doi: 10.1146/annurev.bb.06.060177.002305.

离子运输与振动探针

Ion transport and the vibrating probe.

作者信息

Ferrier J, Lucas W J

出版信息

Biophys J. 1986 Apr;49(4):803-7. doi: 10.1016/S0006-3495(86)83708-0.

DOI:10.1016/S0006-3495(86)83708-0
PMID:2424512
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1329531/
Abstract

The theory of ion transport in the vicinity of a vibrating probe is developed. It is shown that the convection loops produced by the probe will not affect the electrical current density, assuming that the action of the probe does not affect the sources of the current in the biological system. However, the convection loops will significantly alter the ion concentration gradients in the unstirred layer near a tissue or cell surface. The concentration gradients within each convection loop will be reduced, while the concentration gradients between the loops and outside of the loops will be increased relative to the gradients existing without the probe. As a consequence, the electrical potential gradients can be changed relative to the potential gradients existing in the absence of the convection caused by the probe. If the mobility of the ion species carrying the electrical current is greater than the average ion mobility in the medium, then a decrease in ion concentration gradient will be accompanied by an increase in electrical potential gradient, while an increase in concentration gradient will be accompanied by a decrease or even a reversal of electrical potential gradient. Thus, the electrical potential gradient measured by the probe will depend on the concentration gradient in the vicinity of the probe, which will depend in turn on the spatial relation of the convection loops to the probe. An example of the effect of the convection loops on ion concentration and electrical potential is obtained from the theory via a numerical computer calculation. Experimental tests of this theory are discussed.

摘要

本文提出了振动探针附近离子传输的理论。结果表明,假设探针的作用不影响生物系统中的电流源,那么由探针产生的对流环不会影响电流密度。然而,对流环会显著改变组织或细胞表面附近未搅拌层中的离子浓度梯度。每个对流环内的浓度梯度将会降低,而相对于没有探针时存在的梯度,环与环外之间的浓度梯度将会增加。因此,相对于不存在由探针引起的对流时存在的电位梯度,电位梯度可能会发生变化。如果携带电流的离子种类的迁移率大于介质中的平均离子迁移率,那么离子浓度梯度的降低将伴随着电位梯度的增加,而浓度梯度的增加将伴随着电位梯度的降低甚至反转。因此,探针测量的电位梯度将取决于探针附近的浓度梯度,而浓度梯度又反过来取决于对流环与探针的空间关系。通过数值计算机计算从该理论中获得了对流环对离子浓度和电位影响的一个例子。本文还讨论了该理论的实验测试。