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兔耳动脉的肌肉负荷与收缩

Muscle load and constriction of the rabbit ear artery.

作者信息

Speden R N

出版信息

J Physiol. 1975 Jul;248(3):531-53. doi: 10.1113/jphysiol.1975.sp010987.

Abstract

This isolated, perfused ear artery of the rabbit has been used to examine the effect of alterations in muscle load on the construction of arteries. The equilibrium muscle load, taken as the difference in wall stress between the relaxed and constricted artery at the same external radius, was varied by changing the transmural pressure and by constricting the artery. 2. The equilibrium muscle load increased initially and then declined with decreasing external radius when the transmural pressure was kept constant. The maximum muscle load was reached when the relaxed external radius had been reduced by 11% at 80 mmHg and by 4-5% (relative to the radius at 80 mmHg) at 160 mmHg. 3. Arteries from young rabbits (3-6 months in age) which were partially constricted by adrenaline or spontaneous activity responded better to 60 sec of 4 Hz field stimulation at transmural pressures above 100 mmHg than did relaxed arteries. Neither field stimulation nor high concentrations of noradrenaline ( is greater than 800 ng/ml.) were able to constrict most arteries effectively at pressures above 160-170 mmHg unless partial constriction was present. The partial constriction reduced the load placed on the muscle by the same transmural pressure. Constrictio n during field stimulation was due largely to the release of neurotransmitter. 4. Ear arteries from young and older rabbits differed little in their ability to constrict against different transmural pressures. The one major difference was a lesser maximum constriction of arteries from older rabbits (18-24 months in age). However, arteries from older rabbits constricted well at the higher transmural pressures only because wall thickening largely compensated for a decreased ability of the muscle to develop active tension. 5. It is concluded that a decrease in internal radius to wall thickness ratio by either sufficient partial vasoconstriction or by wall thickening favours constriction of arteries because the load placed on the muscle by the same transmural pressure is reduced. Wall thickening may be an important compensatory reaction for deteriorating muscle contraction.

摘要

本研究采用兔离体灌注耳动脉,以探讨肌肉负荷改变对动脉结构的影响。平衡肌肉负荷定义为相同外径下舒张期与收缩期动脉壁应力之差,通过改变跨壁压和收缩动脉来改变平衡肌肉负荷。2. 当跨壁压保持恒定时,平衡肌肉负荷最初增加,随后随着外径减小而下降。在80 mmHg时,舒张期外径减小11%,在160 mmHg时,舒张期外径减小4 - 5%(相对于80 mmHg时的半径)时达到最大肌肉负荷。3. 肾上腺素或自发活动引起部分收缩的幼兔(3 - 6月龄)动脉,在跨壁压高于100 mmHg时,对4 Hz场刺激60秒的反应比舒张期动脉更好。在压力高于160 - 170 mmHg时,除非存在部分收缩,否则场刺激和高浓度去甲肾上腺素(大于800 ng/ml)均不能有效收缩大多数动脉。部分收缩降低了相同跨壁压下肌肉所承受的负荷。场刺激期间的收缩主要归因于神经递质的释放。4. 幼兔和成年兔的耳动脉在不同跨壁压下的收缩能力差异不大。一个主要差异是成年兔(18 - 24月龄)动脉的最大收缩程度较小。然而,成年兔的动脉仅在较高跨壁压下收缩良好,因为壁增厚在很大程度上补偿了肌肉产生主动张力能力的下降。5. 研究得出结论,通过充分的部分血管收缩或壁增厚使内径与壁厚比值降低有利于动脉收缩,因为相同跨壁压下肌肉所承受的负荷减小。壁增厚可能是肌肉收缩功能恶化的重要代偿反应。

相似文献

1
Muscle load and constriction of the rabbit ear artery.兔耳动脉的肌肉负荷与收缩
J Physiol. 1975 Jul;248(3):531-53. doi: 10.1113/jphysiol.1975.sp010987.
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Active reactions of the rabbit ear artery to distension.兔耳动脉对扩张的主动反应。
J Physiol. 1984 Jun;351:631-43. doi: 10.1113/jphysiol.1984.sp015267.
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Biphasic constrictor response of the rabbit ear artery.兔耳动脉的双相收缩反应。
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本文引用的文献

4
Compressibility of the arterial wall.动脉壁的可压缩性。
Circ Res. 1968 Jul;23(1):61-8. doi: 10.1161/01.res.23.1.61.
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Influence of vascular smooth muscle on contractile mechanics and elasticity of arteries.
Am J Physiol. 1969 Dec;217(6):1644-51. doi: 10.1152/ajplegacy.1969.217.6.1644.

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