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麻醉雪貂中,下颌下腺对副交感神经支配以脉冲形式刺激的反应。

Submandibular responses to stimulation of the parasympathetic innervation in bursts in the anaesthetized ferret.

作者信息

Tobin G, Ekström J, Edwards A V

机构信息

Department of Physiology and Biophysics, University of Lund, Sweden.

出版信息

J Physiol. 1990 Dec;431:417-25. doi: 10.1113/jphysiol.1990.sp018337.

Abstract
  1. Submandibular salivary and vascular responses to different patterns of stimulation of the parasympathetic innervation have been investigated in anaesthetized ferrets in the presence and absence of atropine. 2. At low stimulus frequencies likely to fall within the physiological range (0.5-2.0 Hz continuously; 5.0-20.0 Hz in 1 s bursts at 10 s intervals) secretion of fluid and protein were both potentiated by the bursting pattern of stimulation and the latency of the secretory response was reduced. Over a somewhat lower range (0.5-1.0 Hz continuously; 5.0-10.0 Hz in bursts) the submandibular vascular response was also significantly potentiated by employing this intermittent pattern of stimulation. Above these frequency ranges no such potentiation occurred. 3. Pre-treatment with atropine (2.0 mg kg-1) blocked the submandibular secretory responses to stimulation of the chorda-lingual nerve at these low frequencies and the residual responses at higher frequencies were not significantly affected by changing the pattern of stimulation. The vascular response was somewhat reduced after atropine but that which persisted was enhanced by stimulating in bursts. 4. It is concluded that the release of some transmitter from postganglionic terminals in the submandibular gland of the ferret must be potentiated by the arrival of action potentials at short intervals and possible mechanisms are considered.
摘要
  1. 在有和没有阿托品的情况下,对麻醉的雪貂下颌下唾液腺和血管对副交感神经不同刺激模式的反应进行了研究。2. 在可能处于生理范围内的低刺激频率下(持续0.5 - 2.0赫兹;以10秒间隔进行1秒的5.0 - 20.0赫兹脉冲刺激),液体和蛋白质的分泌都因脉冲刺激模式而增强,分泌反应的潜伏期缩短。在稍低的频率范围内(持续0.5 - 1.0赫兹;脉冲频率为5.0 - 10.0赫兹),采用这种间歇性刺激模式也能显著增强下颌下血管反应。高于这些频率范围则不会出现这种增强。3. 用阿托品(2.0毫克/千克)预处理可阻断在这些低频下对舌神经刺激的下颌下分泌反应,而在较高频率下的残余反应不受刺激模式改变的显著影响。阿托品处理后血管反应有所降低,但持续存在的反应通过脉冲刺激而增强。4. 得出的结论是,雪貂下颌下腺节后神经末梢释放的某些递质必须通过短时间间隔的动作电位到达而增强,并对可能的机制进行了探讨。

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