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缺氧或高氧诱导的骨骼肌微循环中微动脉血管运动变化。

Hypoxia- or hyperoxia-induced changes in arteriolar vasomotion in skeletal muscle microcirculation.

作者信息

Bertuglia S, Colantuoni A, Coppini G, Intaglietta M

机构信息

Consiglio Nazionale delle Ricerche Institute of Clinical Physiology, University of Pisa, Italy.

出版信息

Am J Physiol. 1991 Feb;260(2 Pt 2):H362-72. doi: 10.1152/ajpheart.1991.260.2.H362.

DOI:10.1152/ajpheart.1991.260.2.H362
PMID:1996682
Abstract

Arteriolar vasomotion was characterized in the skin muscle of the unanesthetized hamster skinfold window preparation and related to the specific arterioles that give rise to the different types of activity. The arterioles were classified according to the Strahler method: order 0 was assigned to capillaries and order 4 to the largest arterioles. The arterioles showed vasomotion with a specific range of frequencies that varied according to the vessel order; the highest fundamental frequency (9.1 +/- 3.9 cycles/min) was detected in the smallest order 1 arterioles and the lowest frequency (2.1 +/- 0.9 cycles/min) in order 4 vessels. Hypoxia (8, 11, and 15% O2 gas mixture inspiration) increased the frequency of vasomotion, decreased mean and effective diameters, and reduced capillary blood flow. The effects were more pronounced with an 8 and 11% O2 gas mixture. Hypoxia caused high-frequency vasomotion to shift from order 1 and 2 arterioles to the beginning of order 3 arterioles, which in this condition dominated the daughter vessels and generated the prominent activity (24 +/- 4 cycles/min, 11% O2 gas mixture). Hypertoxia (100% O2) induced differentiated arteriolar responses. The smallest vessels showed prolonged constriction, decreased mean and effective diameters, and reduced frequency of vasomotion. Capillary blood flow was restricted. Order 3 vessels did not constrict or dilate.

摘要

在未麻醉的仓鼠皮褶窗制备模型的皮肤肌肉中,对微动脉血管运动进行了表征,并将其与产生不同类型活动的特定微动脉相关联。微动脉根据斯特拉勒方法进行分类:0级被指定为毛细血管,4级为最大的微动脉。微动脉表现出血管运动,其频率范围特定,且根据血管等级而变化;在最小的1级微动脉中检测到最高基频(9.1±3.9次/分钟),在4级血管中检测到最低频率(2.1±0.9次/分钟)。低氧(吸入8%、11%和15%的氧气混合气体)增加了血管运动的频率,减小了平均直径和有效直径,并减少了毛细血管血流量。在8%和11%的氧气混合气体条件下,这些影响更为明显。低氧导致高频血管运动从1级和2级微动脉转移到3级微动脉的起始部位,在这种情况下,3级微动脉主导分支血管并产生显著活动(11%的氧气混合气体时为24±4次/分钟)。高氧(100%氧气)诱导了不同的微动脉反应。最小的血管表现出持续收缩,平均直径和有效直径减小,血管运动频率降低。毛细血管血流量受限。3级血管既不收缩也不扩张。

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