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首页> 外文期刊>The Journal of general physiology >THE RELATIONS BETWEEN PREPOTENTIAL, RESTING POTENTIAL, AND LATENT PERIOD IN FROG MUSCLE FIBERS
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THE RELATIONS BETWEEN PREPOTENTIAL, RESTING POTENTIAL, AND LATENT PERIOD IN FROG MUSCLE FIBERS

机译:毛纤维纤维的潜伏期,静息潜伏期和潜伏期之间的关系

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1. Prepotentials and action potentials were recorded from amphibian striated muscle fibers. Intracellular electrodes were used for stimulating and recording. The resting potential was varied from 55 to 120 mv. by alterations of the KCl concentration of the Ringer's fluid. The magnitude of the prepotential at the initiation of the spike potential was measured and compared to the resting potential and the latent period (time between stimulus "make" and excitation). The magnitude of this prepotential varied with the resting potential.2. A large prepotential or cathodal depolarization was required to excite a fiber with a high resting potential. If a fiber with a high resting potential fired late (long latency), the adequate prepotential was larger than if the fiber fired early. Fibers with low resting potentials had smaller adequate prepotentials. Also, the adequate prepotential was independent of the latent period, in these depolarized fibers.3. If the concentration of Ca++ was increased tenfold, the adequate prepotential of depolarized fibers became strongly dependent upon the latency.4. Fibers with large or normal resting potentials were prone to respond repetitively during the passage of long duration shock, whereas depolarized and Ca++-treated fibers were not.5. The so-called critical membrane potential (which is defined as the transmembrane potential at the point of excitation) was not independent of the resting potential.
机译:1.从两栖横纹肌纤维记录电位和动作电位。细胞内电极用于刺激和记录。静息电势从55到120 mv不等。通过改变林格氏液的氯化钾浓度。测量在尖峰电位开始时的前置电位的大小,并将其与静止电位和潜伏期(刺激“产生”和激发之间的时间)进行比较。该电位的大小随静止电位而变化。2。需要大的电位或阴极去极化来激发具有高静息电位的纤维。如果具有较高静息电势的光纤点火较晚(长时间等待),则适当的电位大于光纤较早点火的功率。具有低静息电势的纤维具有较小的适当电势。此外,在这些去极化纤维中,足够的电势与潜伏期无关。3。如果Ca ++的浓度增加十倍,去极化纤维的适当预电位将强烈依赖于潜伏期。4。具有较大或正常静息电位的纤维在长时间电击的过程中易于反复反应,而去极化和经Ca ++处理的纤维则没有。5。所谓的临界膜电位(在激发点被定义为跨膜电位)与静息电位无关。

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