Campbell T J
School of Physiology and Pharmacology, University of New South Wales, Kensington, Australia.
J Comp Physiol B. 1989;158(6):759-62. doi: 10.1007/BF00693014.
Standard microelectrode techniques were used to record action potentials from single atrial, ventricular and Purkinje fibers of hearts taken from three species of marsupial (Macropus rufus, Macropus robustus and Macropus eugenii) and from dogs, sheep and guinea-pigs. The major electrophysiological parameters of marsupial potentials were qualitatively similar to the values for placental mammals. The grouped data for ventricular action potentials from studies on 6 adult male red kangaroos (Macropus rufus) were (mean +/- SD): Resting potential -69.5 +/- 5.0 mV; action potential amplitude 92.7 +/- 5.7 mV; action potential duration (to 90% repolarization): 182.5 +/- 17.5 ms; maximum rate of depolarization: 196.5 +/- 80.1 V/s. The major point of difference was the short duration of the red kangaroo ventricular action potential compared to those of the placental mammals, and compared to atrial cells from the kangaroos. It is suggested that this explains the short QT interval reported by others for kangaroo electrocardiograms, and that it may also be implicated in the high frequency of sudden death previously noted in these animals.
采用标准微电极技术记录了取自三种有袋动物(红大袋鼠、大赤袋鼠和尤金袋鼠)以及狗、绵羊和豚鼠心脏的单个心房、心室和浦肯野纤维的动作电位。有袋动物电位的主要电生理参数在质量上与胎盘哺乳动物的值相似。对6只成年雄性红袋鼠(红大袋鼠)心室动作电位的分组数据为(平均值±标准差):静息电位-69.5±5.0 mV;动作电位幅度92.7±5.7 mV;动作电位持续时间(至90%复极化):182.5±17.5 ms;最大去极化速率:196.5±80.1 V/s。主要差异点在于,与胎盘哺乳动物以及袋鼠的心房细胞相比,红袋鼠心室动作电位的持续时间较短。有人认为,这解释了其他人报告的袋鼠心电图中QT间期较短的现象,并且这也可能与这些动物先前出现的高猝死率有关。