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大鼠膈肌收缩力和疲劳的温度依赖性

Temperature dependence of rat diaphragm muscle contractility and fatigue.

作者信息

Prezant D J, Richner B, Valentine D E, Aldrich T K, Fishman C L, Nagashima H, Chaudhry I, Cahill J

机构信息

Department of Medicine, Montefiore Medical Center, Albert Einstein College of Medicine, Bronx, New York 10467.

出版信息

J Appl Physiol (1985). 1990 Nov;69(5):1740-5. doi: 10.1152/jappl.1990.69.5.1740.

DOI:10.1152/jappl.1990.69.5.1740
PMID:2272967
Abstract

The diaphragm is a skeletal muscle of mixed fiber type that is unique in its requirement to maintain contractile function and fatigue resistance across a wide range of temperatures to sustain alveolar ventilation under conditions of hypo- or hyperthermia. The direct effect of temperature (15-41 degrees C) on rat diaphragm isometric contractility and fatigue was determined in vitro. As temperature decreased from 37 to 15 degrees C, contraction and relaxation times increased, and there was a left shift of the diaphragm's force-frequency curve, with decreased contractility at 41 and 15 degrees C. Fatigue was induced by 10 min of stimulation with 30 trains/min of 5 Hz at a train duration of 900 ms. Compared with 37 degrees C, fatigue resistance was enhanced at 25 degrees C, but no difference in fatigue indexes was evident at extreme hypothermia (15 degrees C) or hyperthermia (41 degrees C). Only when the fatigue program was adjusted to account for hypothermia-induced increases in tension-time indexes was fatigue resistance evident at 15 degrees C. These findings indicate that despite the diaphragm's unique location as a core structure, necessitating exposure to in vivo temperatures higher than found in limb muscle, the temperature dependence of rat diaphragm muscle contractility and fatigue is similar to that reported for limb muscle of mixed fiber type.

摘要

膈肌是一种具有混合纤维类型的骨骼肌,其独特之处在于需要在很宽的温度范围内维持收缩功能和抗疲劳能力,以便在体温过低或过高的情况下维持肺泡通气。在体外测定了温度(15 - 41摄氏度)对大鼠膈肌等长收缩力和疲劳的直接影响。随着温度从37摄氏度降至15摄氏度,收缩和舒张时间增加,膈肌的力 - 频率曲线向左移位,在41摄氏度和15摄氏度时收缩力下降。通过以5赫兹、30次/分钟的频率刺激10分钟(每次刺激持续900毫秒)来诱导疲劳。与37摄氏度相比,25摄氏度时抗疲劳能力增强,但在极端低温(15摄氏度)或高温(41摄氏度)时疲劳指数没有明显差异。只有当疲劳程序根据低温引起的张力 - 时间指数增加进行调整时,15摄氏度时才表现出抗疲劳能力。这些发现表明,尽管膈肌作为核心结构具有独特的位置,需要暴露于高于肢体肌肉的体内温度,但大鼠膈肌肌肉收缩力和疲劳的温度依赖性与混合纤维类型的肢体肌肉报道的相似。

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