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具有无髓迷走传入神经的心肺感受器在循环控制中的作用。

Role of heart and lung receptors with nonmedullated vagal afferents in circulatory control.

作者信息

Thorén P N, Donald D E, Shepherd J T

出版信息

Circ Res. 1976 Jun;38(6 Suppl 2):2-9. doi: 10.1161/01.res.38.6.2.

Abstract

Vagal afferents from the cardiopulmonary region exert a tonic inhibition on the vasomotor center. This is demonstrated by constriction of systemic resistance and splanchnic capacitance vessels and by increased output of renin when the vagi are cut or blocked. In dogs, removal or selective denervation of organs showed that receptors in the lungs, the atria, and the ventricles each are responsible for the vasomotor inhibition. That this inhibition is due to nonmedullated vagal afferents (C fibers) was demonstrated by selective cooling of the vagi, anodal block of medullated afferents, and selective electrical stimulation of medullated and nonmedullated fibers. In the open-chest cat the discharge frequency of individual C fibers is sparse and irregular (mean, 1.4 impulses/sec) but increases to 10 or more impulses/sec with moderate increases in cardiac filling pressure and exhibits cardiac rhythmicity or is continuous throughout the cardiac cycle. The inhibition of sympathetic vasomotor outflow effected through the cardiopulmonary receptors is inversely related to that exerted by the arterial baroreceptors. The former receptors have less influence on the muscle circulation than the latter, but have an equal or greater effect on the renal circulation. In summary, receptors in the heart and lungs with nonmedullated vagal afferents are an important component of the integrated neural control of the circulation.

摘要

来自心肺区域的迷走传入神经对血管运动中枢施加紧张性抑制作用。切断或阻断迷走神经后,体循环阻力血管和内脏容量血管收缩以及肾素分泌增加,证明了这一点。在狗身上,去除或选择性地切断器官的神经支配表明,肺、心房和心室中的感受器各自都对血管运动抑制起作用。选择性冷却迷走神经、有髓传入神经的阳极阻滞以及有髓和无髓纤维的选择性电刺激证明,这种抑制是由无髓迷走传入神经(C纤维)引起的。在开胸猫中,单个C纤维的放电频率稀疏且不规则(平均1.4次冲动/秒),但随着心脏充盈压适度升高,放电频率增加到10次或更多次冲动/秒,并表现出心脏节律性,或在整个心动周期中持续存在。通过心肺感受器实现的对交感神经血管运动传出的抑制与动脉压力感受器所施加的抑制呈负相关。前者感受器对肌肉循环的影响小于后者,但对肾循环的影响相同或更大。总之,具有无髓迷走传入神经的心脏和肺中的感受器是循环综合神经控制的重要组成部分。

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