Grände P O, Borgström P, Mellander S
Acta Physiol Scand. 1979 Dec;107(4):365-76. doi: 10.1111/j.1748-1716.1979.tb06487.x.
The aim of the present study was to elucidate in some detail the characteristics of the intrinsic basal vascular tone in the adrenergically blocked skeletal muscle with regard to its extent and site along the vascular bed, its dependence on arterial pressure via static and dynamic transmural pressure stimuli, and its sensitivity to local metabolic influence. Basal tone, which apparently is of myogenic nature, was pronounced in 'proximal arterial vessels' (greater than 25 mmicrometer i.d.) and in the 'microvessels' (less than 25 micrometers), but low in 'large veins'. Its functional characteristics, however, were different in the 'proximal arterial vessels' and the 'microvessels'. Normal basal tone in the 'microvessels' thus seemed to be intimately dependent on the arterial blood pressure level and, at least partly, initiated by its static mean pressure distension effect as well as by its dynamic pulse pressure oscillations. It could be virtually abolished by a transmural pressure decrease applied at fast rate ('strong inhibitory dynamic transmural pressure stimulus'). Basal tone in the 'proximal arterial vessels', on the other hand, was little affected by arterial pressure and almost irresponsive to transmural pressure stimuli. Basal tone in the 'microvessels' was much more sensitive to metabolic stimuli than that in the 'proximal arterial vessels'. The present results, viewed in the light of some recent electrophysiological studies on vascular smooth muscle, suggest that smooth muscle in the 'microvessels' is mainly of the spike-generating type, whereas that in the 'proximal arterial vessels' seems to be of different nature, possibly of the non-spike-generating type.
本研究的目的是更详细地阐明去甲肾上腺素能阻断的骨骼肌中内在基础血管张力的特征,包括其沿血管床的范围和部位、通过静态和动态跨壁压力刺激对动脉压的依赖性以及对局部代谢影响的敏感性。基础张力显然具有肌源性,在“近端动脉血管”(内径大于25微米)和“微血管”(小于25微米)中明显,而在“大静脉”中较低。然而,其功能特征在“近端动脉血管”和“微血管”中有所不同。因此,“微血管”中的正常基础张力似乎与动脉血压水平密切相关,至少部分是由其静态平均压力扩张效应以及动态脉压振荡引发的。通过快速施加跨壁压力降低(“强烈抑制性动态跨壁压力刺激”)几乎可以消除它。另一方面,“近端动脉血管”中的基础张力受动脉压影响很小,对跨壁压力刺激几乎无反应。“微血管”中的基础张力比“近端动脉血管”中的基础张力对代谢刺激更敏感。根据最近一些关于血管平滑肌的电生理研究来看,目前的结果表明,“微血管”中的平滑肌主要是产生峰电位的类型,而“近端动脉血管”中的平滑肌似乎性质不同,可能是非产生峰电位的类型。