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急性局部缺血时兔心脏动作电位交替现象的演变

Evolution of action potential alternans in rabbit heart during acute regional ischemia.

作者信息

Martišienė Irma, Jurevičius Jonas, Vosyliūtė Rūta, Navalinskas Antanas, Treinys Rimantas, Mačianskienė Regina, Benetis Rimantas, Matiukas Arvydas, Pertsov Arkady M

机构信息

Laboratory of Membrane Biophysics, Institute of Cardiology, Lithuanian University of Health Sciences, LT-50009 Kaunas, Lithuania.

Department of Pharmacology, SUNY Upstate Medical University, Syracuse, NY 13210-2375, USA.

出版信息

Biomed Res Int. 2015;2015:951704. doi: 10.1155/2015/951704. Epub 2015 Feb 26.

Abstract

This study investigates the development of the spatiotemporal pattern of action potential alternans during acute regional ischemia. Experiments were carried out in isolated Langendorff-perfused rabbit heart using a combination of optical mapping and microelectrode recordings. The alternans pattern significantly changed over time and had a biphasic character reaching maximum at 6-9 min after occlusion. Phase I (3-11 minutes of ischemia) is characterized by rapid increase in the alternans magnitude and expansion of the alternans territory. Phase I is followed by gradual decline of alternans (Phase II) in both magnitude and territory. During both phases we observed significant beat-to-beat variations of the optical action potential amplitude (OAPA) alternans. Simultaneous microelectrode recordings from subepicardial and subendocardial layers showed that OAPA alternans coincided with intramural 2 : 1 conduction blocks. Our findings are consistent with the modeling studies predicting that during acute regional ischemia alternans can be driven by 2 : 1 conduction blocks in the ischemic region.

摘要

本研究调查了急性局部缺血期间动作电位交替的时空模式的发展。实验在离体Langendorff灌注兔心脏中进行,采用光学标测和微电极记录相结合的方法。交替模式随时间显著变化,具有双相特征,在闭塞后6 - 9分钟达到最大值。第一阶段(缺血3 - 11分钟)的特征是交替幅度迅速增加和交替区域扩大。第一阶段之后是交替(第二阶段)在幅度和区域上逐渐下降。在两个阶段中,我们都观察到光学动作电位幅度(OAPA)交替存在显著的逐搏变化。来自心外膜下和心内膜下层的同步微电极记录表明,OAPA交替与壁内2∶1传导阻滞一致。我们的发现与模型研究一致,该研究预测在急性局部缺血期间,交替可能由缺血区域的2∶1传导阻滞驱动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/362f/4357036/94c4bb9a55e6/BMRI2015-951704.001.jpg

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