Thorén P N, Mancia G, Shepherd J T
Am J Physiol. 1975 Nov;229(5):1410-3. doi: 10.1152/ajplegacy.1975.229.5.1410.
In anesthetized rabbits with sinus and aortic nerve cut, when the cervical vagal nerves were cooled to 12, 8, 6, and 0degreeC, there were progressive increases in aortic blood pressure of 7 +/- 1, 15 +/- 2, 25 +/- 1, and 41 +/- 2 mmHg (SE), respectively. For comparison, during cooling of the aortic and vagal nerves, at 12degreesC there was a decrease in firing in the afferent fibers from aortic baroreceptors (48 +/- 4%) and pulmonary stretch receptors (57 +/- 5%), and at 6degreesC all activity was abolished. Thus, at 6degreesC the activity in medullated fibers from the aortic baroreceptors and pulmonary stretch receptors is blocked, but the increase in aortic blood pressure with vagal cooling is only 60% of that with cooling to 0degreeC. This demonstrates that cardiopulmonary receptors with nonmedullated vagal afferents (C fibers) contribute to the tonic inhibition of the vasomotor center. Because of overlap in sensitivity of different vagal fibers to cooling, the total contribution of these C fibers cannot be evaluated.
在切断窦神经和主动脉神经的麻醉兔中,当颈迷走神经冷却至12、8、6和0摄氏度时,主动脉血压分别逐渐升高7±1、15±2、25±1和41±2 mmHg(标准误)。作为对照,在主动脉神经和迷走神经冷却过程中,在12摄氏度时,主动脉压力感受器传入纤维的放电减少(48±4%),肺牵张感受器传入纤维的放电减少(57±5%),在6摄氏度时所有活动均被消除。因此,在6摄氏度时,来自主动脉压力感受器和肺牵张感受器的有髓纤维的活动被阻断,但迷走神经冷却时主动脉血压的升高仅为冷却至0摄氏度时的60%。这表明具有无髓迷走神经传入纤维(C纤维)的心肺感受器对血管运动中枢的紧张性抑制有作用。由于不同迷走神经纤维对冷却的敏感性存在重叠,这些C纤维的总作用无法评估。