Lash J M, Bohlen H G, Waite L
Department of Physiology and Biophysics, Indiana University School of Medicine, Indianapolis 46202.
Am J Physiol. 1991 May;260(5 Pt 2):H1561-74. doi: 10.1152/ajpheart.1991.260.5.H1561.
The contributions of active and passive wall tension to regulation of arteriolar diameters were determined for large (1A), intermediate (2A), and small (3A) arterioles in the small intestine of the anesthetized rat. Active tension (Ta) contributed greater than 85% of total wall force at rest in 2A and 3A and 75-80% of total force in 1A. Ta was approximately 90% of peak active tension (Ta,peak) for large through small arterioles, even though absolute Ta varied by fourfold. A linear relationship between microvascular pressure and Ta was observed for decreases in pressure in all arterioles. Ta remained nearly constant for pressure increases of 40% in 2A and 3A but was increased in 1A. Because of the plateau of the circumference-Ta relationship near Ta,peak, superfusion of progressively increasing concentrations of norepinephrine or adenosine resulted in maintenance of the close Ta-Ta,peak relationship unless the vessel diameter changed greater than 25%. These results indicate that, while arteriolar diameters vary substantially, near-peak Ta is generated for a variety of physiological conditions.
在麻醉大鼠的小肠中,确定了主动和被动壁张力对大(1A)、中(2A)、小(3A)微动脉直径调节的贡献。在2A和3A中,主动张力(Ta)在静息时占总壁力的85%以上,在1A中占总力的75 - 80%。尽管绝对Ta相差四倍,但从大到小微动脉的Ta约为峰值主动张力(Ta,peak)的90%。在所有微动脉中,压力降低时观察到微血管压力与Ta之间呈线性关系。在2A和3A中,压力增加40%时Ta几乎保持恒定,但在1A中Ta增加。由于在Ta,peak附近周长 - Ta关系出现平台期,逐步增加去甲肾上腺素或腺苷浓度的灌流会导致Ta与Ta,peak保持紧密关系,除非血管直径变化超过25%。这些结果表明,虽然微动脉直径变化很大,但在各种生理条件下都会产生接近峰值的Ta。