Degtyarenko A M, Kaufman M P
Division of Cardiovascular Medicine TB-172, One Shields Drive, University of California, Davis, Davis, CA 95616, USA.
Neuroscience. 2006 Jul 7;140(3):1041-50. doi: 10.1016/j.neuroscience.2006.02.050. Epub 2006 Apr 19.
Some neural mechanism must prevent the full expression of the baroreceptor reflex during static exercise because arterial blood pressure increases even though the baroreceptors are functioning. Two likely candidates are central command and input from the thin fiber muscle afferents evoking the exercise pressor reflex. Recently, activation of the mesencephalic locomotor region, an anatomical locus for central command, was found to inhibit the discharge of nucleus tractus solitarius cells that were stimulated by arterial baroreceptors in decerebrated cats. In contrast, the effect of thin fiber muscle afferent input on the discharge of nucleus tractus solitarius cells stimulated by baroreceptors is not known. Consequently in decerebrated unanesthetized cats, we examined the responses of barosensory nucleus tractus solitarius cells to stimulation of thin fiber muscle afferents and to stimulation of the mesencephalic locomotor region, a maneuver which evoked fictive locomotion. We found that electrical stimulation of either the mesencephalic locomotor region or the gastrocnemius nerve at current intensities that recruited group III afferents inhibited the discharge of nucleus tractus solitarius cells receiving baroreceptor input. We also found that the inhibitory effects of both gastrocnemius nerve stimulation and mesencephalic locomotor region stimulation converged onto the same barosensory nucleus tractus solitarius cells. We conclude that the nucleus tractus solitarius is probably the site whereby input from both central command and thin fiber muscle afferents function to reset the baroreceptor reflex during exercise.
在静态运动期间,一定存在某种神经机制来阻止压力感受器反射的充分表达,因为尽管压力感受器发挥作用,但动脉血压仍会升高。两个可能的因素是中枢指令以及细纤维肌肉传入神经引发运动加压反射的输入信号。最近发现,中脑运动区(中枢指令的一个解剖位点)的激活会抑制去大脑猫中受动脉压力感受器刺激的孤束核细胞的放电。相比之下,细纤维肌肉传入神经输入对受压力感受器刺激的孤束核细胞放电的影响尚不清楚。因此,在去大脑未麻醉的猫中,我们研究了压力感受性孤束核细胞对细纤维肌肉传入神经刺激以及对中脑运动区刺激(该操作可诱发虚拟运动)的反应。我们发现,以募集Ⅲ类传入神经的电流强度对中脑运动区或腓肠神经进行电刺激,会抑制接受压力感受器输入的孤束核细胞的放电。我们还发现,腓肠神经刺激和中脑运动区刺激的抑制作用都汇聚到相同的压力感受性孤束核细胞上。我们得出结论,孤束核可能是中枢指令和细纤维肌肉传入神经在运动期间共同作用以重置压力感受器反射的位点。