Abramochkin D V, Kuz'min V S, Sukhova G S, Rozenshtraukh L V
Biofizika. 2010 May-Jun;55(3):500-6.
Changes of the activation sequence in the rabbit sinoatrial node under the influence of low temperature and I(f) selective blocker ivabradine have been studied using the optical mapping technique. Both factors caused a shift of the pacemaker within the sinoatrial node region. These results are compared with the data obtained recently in the investigation of pacemaker shift under the influence of cholinergic and adrenergic factors. Possible mechanisms of the pacemaker shift are discussed. The suppression of electric activity in the central part of the sinoatrial node during the action of acetylcholine, which is called cholinergic inexcitability, may be considered as one of the mechanisms of the pacemaker shift. It is shown that the main cause of cholinergic inexcitability is the activation of potassium acetylcholine-dependent current I(KACh).
采用光学映射技术研究了低温和I(f)选择性阻滞剂伊伐布雷定影响下家兔窦房结激活顺序的变化。这两个因素均导致窦房结区域内起搏点的移位。将这些结果与最近在胆碱能和肾上腺素能因素影响下对起搏点移位研究中获得的数据进行了比较。讨论了起搏点移位的可能机制。乙酰胆碱作用期间窦房结中心部分电活动的抑制,即所谓的胆碱能无兴奋性,可被视为起搏点移位的机制之一。结果表明,胆碱能无兴奋性的主要原因是乙酰胆碱依赖性钾电流I(KACh)的激活。