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犬食管下括约肌近端的起搏活动。

Pacemaker activity in the proximal lower oesophageal sphincter of the dog.

作者信息

Huizinga J D, Walton P D

机构信息

Department of Neurosciences, McMaster University, Hamilton, Ontario, Canada.

出版信息

J Physiol. 1989 Jan;408:19-30. doi: 10.1113/jphysiol.1989.sp017443.

Abstract
  1. The electrical and mechanical activities of different regions of the canine lower oesophageal sphincter were measured using the single sucrose gap technique. 2. Spontaneous electrical activity was found in the region 0-6 mm oral to the squamocolumnar border. 3. The electrical activity consisted of bursts of spikes superimposed on slow waves. The slow-wave frequency ranged from 0.6 to 5 min-1 in different muscle strips. 4. The slow wave-spike complex and associated contraction were insensitive to tetrodotoxin and atropine. 5. In the pacemaker region, electrical stimulation of intrinsic nerves evoked excitatory junction potentials (atropine sensitive), inhibitory junction potentials (non-adrenergic) and post-stimulus excitation. 6. Increase in the frequency of the slow waves was obtained by muscarinic receptor stimulation (carbachol 10(-7) M) and 10 mM-KCl. 7. The distal lower oesophageal sphincter exhibited a high basal tension but did not show spontaneous electrical activity and stimulation of intrinsic nerves revealed only non-cholinergic, non-adrenergic inhibition. 8. The electrical slow-wave activity observed in the proximal sphincter may constitute the control mechanism for the phasic nature of the contractile activity seen during both the postprandial period and phase III of the interdigestive migrating myoelectric complex. 9. The neural cholinergic activity present in the proximal lower oesophageal sphincter suggests the possibility of neural modulation of the myogenic control activity.
摘要
  1. 采用单蔗糖间隙技术测量犬下食管括约肌不同区域的电活动和机械活动。2. 在鳞状柱状边界口侧0 - 6毫米区域发现自发电活动。3. 电活动由叠加在慢波上的尖峰爆发组成。不同肌条中慢波频率范围为0.6至5次/分钟。4. 慢波-尖峰复合体及相关收缩对河豚毒素和阿托品不敏感。5. 在起搏区域,对内在神经的电刺激诱发兴奋性接头电位(对阿托品敏感)、抑制性接头电位(非肾上腺素能)和刺激后兴奋。6. 通过毒蕈碱受体刺激(10⁻⁷ M 卡巴胆碱)和10 mM氯化钾可使慢波频率增加。7. 远端下食管括约肌表现出高基础张力,但未显示出自发电活动,对内在神经的刺激仅显示非胆碱能、非肾上腺素能抑制。8. 在近端括约肌中观察到的电慢波活动可能构成了餐后期间和消化间期移行性复合肌电活动第三相期间所见收缩活动阶段性特征的控制机制。9. 近端下食管括约肌中存在的神经胆碱能活动提示了对肌源性控制活动进行神经调节的可能性。

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