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迷走神经系统
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     The Interrelations between the Development of a and β Receptors in the Heart of 1-12day-old Rabbits and the Function of Vagal System
     1~12日龄幼兔心脏α-、β-受体的发展与迷走神经系统机能发展间的关系
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     In this study,the interrelations between the development of α-receptor in the cardio-vascular system and the function of vagal system are investigated on the l~12day-old rabbits by intravenous injection of medicine,section of the vagus and destruction of the stellate ganglion.
     本文利用静脉注射药物、切断迷走神经与破坏星状神经节等方法探讨1~12日龄幼兔心血管系统α~-受体的发育与迷走神经系统机能作用间的关系。
短句来源
     The injection of atropin into vein and section of bilateral cervical vagal nerve can basically abolish AN stimulation induced bradycardia,however,application of inderal hardly affects this evoked bradycardia. These results suggest that the inhibitory effect of SPN stimulation of the bradycardia may be related to the inhibition of vagal cardiol nerve system.
     静脉注射阿托品和两侧颈迷走神经切断后,可基本消除电刺激AN诱发的心率减慢,静脉注射心得安几乎不影响这种诱发的心率减慢,提示电刺激SPN对电刺激AN诱发的心率减慢的抑制作用与对心迷走神经系统的抑制有关。
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     Conclution The central depressor response to NT is induced by the strengthening of the activities of cardiac vagus nerve system.
     结论 脑中 NT含量升高可使血压升高或降低 ,NT引起的中枢心血管抑制效应主要是由于心迷走神经系统活动加强所致
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     Conclusion It is concluded that (1) Sympathovagal nervous system remains balanced in patients with CHD in stationary supine position without myocardiac ischemia;
     结论(1)CHD患者静卧位无心肌缺血时交感迷走神经系统处于平衡状态。
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  相似匹配句对
     system).
     系统)。
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     SYSTEM
     系统
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     THE VAGUS NERVE OF THE SWINE
     猪的迷走神经解剖
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     Clinicopathologic study of four cases of vagal paraganglioma
     迷走神经副神经节瘤的临床病理学研究
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     B: Severing of vagus nerve;
     B组 :迷走神经切断组 ;
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  parasympathetic nervous
The time taken by the sympathetic and parasympathetic nervous systems to revert to their normal state after contact with cloth and wood was shorter than that after contact with metal and ceramic.
      
High-frequency components are associated with respiration and represent the effects of the parasympathetic nervous system on myocardium.
      
Activation of the parasympathetic nervous system (PNS) during work was an unfavorable factor, yet the CHE-induced increase in parasympathetic activation caused functional improvement.
      
The sympathetic and parasympathetic nervous system play a powerful role in controlling cardiac function by activating adrenergic and muscarinic receptors.
      
Thus, the cerebellum can influence autonomic output and modify baroreflex sensitivity by augmenting cardiovascular responses mediated by the sympathetic nervous system and inhibiting those mediated by the parasympathetic nervous system.
      
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In this study,the interrelations between the development of α-receptor in the cardio-vascular system and the function of vagal system are investigated on the l~12day-old rabbits by intravenous injection of medicine,section of the vagus and destruction of the stellate ganglion. The results show that the infant rabbits,only one day after birth,already show adrenergic redeptors in the cardiovareular system. The efferent fibers in the vagal have adrenergic fibers exciting effect on α-receptors of the heart and vagous....

In this study,the interrelations between the development of α-receptor in the cardio-vascular system and the function of vagal system are investigated on the l~12day-old rabbits by intravenous injection of medicine,section of the vagus and destruction of the stellate ganglion. The results show that the infant rabbits,only one day after birth,already show adrenergic redeptors in the cardiovareular system. The efferent fibers in the vagal have adrenergic fibers exciting effect on α-receptors of the heart and vagous. The activilies of α-receptors can be influenced by adrenomimetic substance(stmpathomimetic drugs). It is likely that the regulation of the cardiovascular system is accomplished by the antagonism of α and β receptors.

本文利用静脉注射药物、切断迷走神经与破坏星状神经节等方法探讨1~12日龄幼兔心血管系统α~-受体的发育与迷走神经系统机能作用间的关系。实验结果证明生后1日龄幼兔的心血管系统就存在肾上腺素能α~-受体。迷走神经的传出纤维中含有对α~-脏受体有兴奋作用的肾上腺素能纤维,并通过其末稍分泌的类肾上腺素物质影响α~-受体的活动。α~-受体与β~-受体间通过拮抗作用的关系调节心血管系统的活动。

The bradycardia elicited by the stimulation of the aortic nerve(AN) was markedly inhibited by electrical stimulation of superficial peroneal nerve(SPN)with low frequency and low intensity in rabbits.The depressor response induced by AN stimulation was also slightly inhibited.The injection of atropin into vein and section of bilateral cervical vagal nerve can basically abolish AN stimulation induced bradycardia,however,application of inderal hardly affects this evoked bradycardia.These results suggest that the...

The bradycardia elicited by the stimulation of the aortic nerve(AN) was markedly inhibited by electrical stimulation of superficial peroneal nerve(SPN)with low frequency and low intensity in rabbits.The depressor response induced by AN stimulation was also slightly inhibited.The injection of atropin into vein and section of bilateral cervical vagal nerve can basically abolish AN stimulation induced bradycardia,however,application of inderal hardly affects this evoked bradycardia.These results suggest that the inhibitory effect of SPN stimulation of the bradycardia may be related to the inhibition of vagal cardiol nerve system.

低频低强度电刺激家兔腓浅神经(SPN)能明显抑制电刺激主动脉神经(AN)诱发的心动过缓,对诱发的降压反应也表现轻度的抑制作用。静脉注射阿托品和两侧颈迷走神经切断后,可基本消除电刺激AN诱发的心率减慢,静脉注射心得安几乎不影响这种诱发的心率减慢,提示电刺激SPN对电刺激AN诱发的心率减慢的抑制作用与对心迷走神经系统的抑制有关。

Objective To investigate the mechanism of depressor response induced by central injection of neurotensin (NT) in rats. Methods Arterial blood pressure (BP) and heart rate (HR) responses followed by lateral cerebroventricular injection (icv) of NT (10 μg/rat) of male SD rats anaesthetized with urethane ( n =30) were measured. Results icv of NT (10 μg/rat) could either induce a rise or a decrease of BP and a slowing down of HR. The central depressor response to NT could be blocked by pretreatment with M...

Objective To investigate the mechanism of depressor response induced by central injection of neurotensin (NT) in rats. Methods Arterial blood pressure (BP) and heart rate (HR) responses followed by lateral cerebroventricular injection (icv) of NT (10 μg/rat) of male SD rats anaesthetized with urethane ( n =30) were measured. Results icv of NT (10 μg/rat) could either induce a rise or a decrease of BP and a slowing down of HR. The central depressor response to NT could be blocked by pretreatment with M receptor blocker atropine (2.5 μg, icv) and markedly decreased by bilateral cervical vagotomy. Conclution The central depressor response to NT is induced by the strengthening of the activities of cardiac vagus nerve system.

目的 研究大鼠侧脑室内注射 (icv)神经降压素 (NT)所致降压反应的中枢机制。方法 用乌拉坦麻醉雄性 SD大鼠 (3 0只 ) ,将 NT icv,观察其血压 (BP)和心率 (HR)的变化。然后分别 icv M受体阻断剂硫酸阿托品和切断两侧颈部迷走神经 ,再 icv NT,观察 BP和 HR的变化。结果  icv NT (10μg/鼠 )可引起 BP升高或降低 ,HR减慢。预先 icv阿托品 2 .5μg,可阻断 NT的中枢降压反应 ;切断两侧颈部迷走神经可减弱 NT的中枢心血管抑制效应。结论 脑中 NT含量升高可使血压升高或降低 ,NT引起的中枢心血管抑制效应主要是由于心迷走神经系统活动加强所致

 
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