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Potassium contractures in single muscle fibres of the crayfish

机译:小龙虾单肌纤维中的钾挛缩

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摘要

1. Contractures were evoked in isolated muscle fibres of the extensor carpopoditi muscle of the crayfish (Astacus fluviatilis) by increasing [K]o at constant [Cl]o or at constant [K]o[Cl]o product.2. The relation between tension and log [K]o is S-shaped with a less steep slope if [K]o was increased at constant [Cl]o. This is due to a smaller drop in membrane potential for a given change in [K]o in the latter case.3. The curves relating the tension to the membrane potential overlap in either case. In the linear part of the curve, the slope is around 0·3 kg cm-2m V-1.4. The mechanical threshold of contracture is about -55 mV and mechanical saturation is at -20 mV.5. Fibres exert the greatest tension when stretched to 1·25 lo (8 kg/cm2), where lo is the length at which the fibres are just taut in the solution. Tension falls on either side of this optimal length. Tension vanishes when the fibre is stretched to 1·95 lo.6. Sarcomere length at optimal fibre length is 10·5 ± 0·3 μ. The A band is 3·95 ± 0·8 μ long and does not alter during stretch.7. The crayfish muscle fibres were of the phasic type, since they relaxed spontaneously at maintained high [K]o.8. At [K]o near saturation point, contractures attain the maximum tension in 5 ± 1·3 sec and the time to half decay is 8·1 ± 0·5 sec.9. If the contracture is allowed to relax spontaneously, it is not possible to obtain initial tension until after 20-30 min. When the contracture is terminated by a return to low [K]o after reaching its maximum, but before spontaneous relaxation appears, the fibre is capable of repeatedly exerting the initial tension.10. The rate of recovery after a spontaneously relaxed contracture depends on [K]o in the solution, in which the fibre lies before evoking the test contracture. The relation of recovery upon log [K]o is S-shaped and the tension is the greater, the lower the [K]o in the solution in which recovery is taking place.
机译:1.通过以恒定的[Cl] o或恒定的[K] o [Cl] o乘积增加[K] o,在小龙虾(Astacus fluviatilis)的伸伸腕神经的分离肌纤维中诱发挛缩。如果以恒定的[Cl] o增加[K] o,则张力与log [K] o的关系为S形,斜率较小。这是由于在后一种情况下[K] o的给定变化引起的膜电位下降较小。在两种情况下,使张力与膜电位相关的曲线重叠。在曲线的线性部分,斜率约为0·3 kg cm -2 m V -1 .4。挛缩的机械阈值约为-55 mV,机械饱和度为-20mV。5。当拉伸到1·25 lo(8 kg / cm 2 )时,纤维表现出最大的张力,其中lo是纤维在溶液中刚好拉紧的长度。张力落在该最佳长度的任一侧。当纤维拉伸到1·95 lo.6时,张力消失。最佳纤维长度下的肌节长度为10·5±0·3μ。 A谱带的长度为3·95±0·8μ,并且在拉伸过程中不会改变7。小龙虾的肌肉纤维是阶段性的,因为它们在保持高[K] o.8时自发地放松。在[K] o接近饱和点时,挛缩在5±1·3秒内达到最大张力,至半衰期的时间为8·1±0·5秒9。如果使挛缩自然自发地放松,则直到20-30分钟后才能获得初始张力。当挛缩达到最大值后,但在出现自发松弛之前,通过恢复到低[K] o而终止,则纤维能够反复施加初始张力。10。自发松弛的挛缩后的恢复速率取决于溶液中的[K] o,在诱发测试挛缩之前纤维位于其中。 log [K] o 上的恢复关系呈S形,张力越大,则[K] o 越低正在进行恢复的解决方案。

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