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单个心肌细胞的基本电反应是动作电位吗?

Is the fundamental electrical response of the single heart muscle cell a spike potential?

作者信息

CHURNEY L, OHSHIMA H

出版信息

J Gen Physiol. 1963 May;46(5):1029-46. doi: 10.1085/jgp.46.5.1029.

Abstract

The urodele amphibians, Amphiuma and Necturus, provide heart fibers large enough to serve for microelectrode recording under visual control with the microscope. Bundles containing as few as 5 to 10 fibers yield spike potentials, rather than the plateau forms generally considered to be characteristic of heart muscle. These spikes fail to overshoot. The plateau form, and only the plateau form, is recorded exclusively from large tissue masses. An intermingling of spikes and plateau-shaped action potentials is obtained from bundles of intermediate size. These data are confirmed in experiments in which the myocardium is sliced into adhering strips of unequal sizes. The conclusion is drawn that the configuration of the recorded action potential curve is contingent upon the mass and geometry of the tissue impaled by the microelectrode. The crucial experiment of recording from an isolated single heart fiber is not possible, because of the attendant injury. Our proposal that the spike form is the elemental heart action potential is, to this extent, an extrapolation. Attempts to explain the nature of the spike along classical lines are not entirely satisfactory. Other theories are considered which, in their turn, are generally unacceptable. Evidently only further experimentation can clarify the situation.

摘要

有尾两栖动物,如鳗螈和泥螈,能提供足够大的心脏纤维,以便在显微镜可视控制下用于微电极记录。包含少至5到10根纤维的纤维束会产生尖峰电位,而不是通常被认为是心肌特征的平台电位形式。这些尖峰电位不会超过基线。只有从大的组织块中才能专门记录到平台电位形式。从中等大小的纤维束中可获得尖峰电位和平台形动作电位的混合。这些数据在将心肌切成大小不等的粘连条带的实验中得到了证实。得出的结论是,记录到的动作电位曲线的形态取决于被微电极刺入的组织的质量和几何形状。由于伴随的损伤,不可能对孤立的单根心脏纤维进行记录这一关键实验。在这个程度上,我们提出尖峰电位形式是基本的心脏动作电位这一观点是一种推断。沿着经典思路解释尖峰电位性质的尝试并不完全令人满意。也考虑了其他理论,但这些理论通常也不可接受。显然,只有进一步的实验才能澄清这种情况。

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