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首页> 外文期刊>American Journal of Physiology >Cardiac dynamics during daily torpor in the Djungarian hamster (Phodopus sungorus).
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Cardiac dynamics during daily torpor in the Djungarian hamster (Phodopus sungorus).

机译:在Djungarian仓鼠(Phodopus sungorus)的日常打折期间的心脏动力学。

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Djungarian or Siberian hamsters (Phodopus sungorus) acclimated to short photoperiod display episodes of spontaneous daily torpor with metabolic rate depressed by approximately 70% and body temperature (T(b)) reduced by approximately 20 degrees C. To study the cardiovascular adjustment to daily torpor in Phodopus, electrocardiogram (ECG) and T(b) were continuously recorded by telemetry during entrance into torpor, in deep torpor, and during arousal from torpor. Minimum T(b) during torpor bouts was approximately 21 degrees C, and heart rate, approximately 349 beats/min at euthermy, displayed marked sinus bradyarrhythmia at approximately 70 beats/min. Arousal was typically completed within approximately 40 min, followed by a sustained post-torpor inactivity tachycardia ( approximately 540 beats/min). The absence of episodes of conduction block, tachyarrhythmia, or other forms of ectopy throughout the torpor cycle demonstrates a remarkable resistance to arrhythmogenesis. The ECG morphology lacks a distinct isoelectric interval following the QRS complex, and the ST segment resembles the ECG pattern in mice, with a prominent fast transient outward K(+) current (I(to,f)) determining the early phase of ventricular repolarization. During low-temperature torpor, the amplitudes of the QRS complex substantially increased, suggesting that in the euthermic state the terminal portion of ventricular depolarization is fused with the beginning of repolarization, low T(b) acting to decorrelate the superposition between depolarization and repolarization by delaying the repolarization onset. Atrioventricular and ventricular conduction times were prolonged as function of T(b). In contrast, the QT vs. T(b) relationship showed marked hysteresis indicating the operation of nonlinear control mechanisms whereby the rapid QT shortening during arousal results from additional mechanisms (probably sympathetic stimulation) other than temperature alone.
机译:Djungarian或西伯利亚仓鼠(Phodopus sungorus)适应了短时间的自发性每日玉米粥发作,代谢率降低了约70%,体温(T(b))降低了约20摄氏度。研究心血管对每日玉米粥的调节在Phodopus中,在进入por孔,深deep孔和从a孔引起的过程中,通过遥测连续记录心电图(ECG)和T(b)。躯干发作期间的最低T(b)约为21摄氏度,心律正常时约为349次/分钟,显示出明显的窦性心律失常,约为70次/分钟。唤醒通常在大约40分钟内完成,然后持续进行持续的无色情后心动过速(大约540次/分钟)。在整个Torpor周期中没有传导阻滞,快速性心律失常或其他形式的异位发作,表明对心律失常具有显着的抵抗力。心电图形态缺乏QRS复合物后独特的等电间隔,并且ST段类似于小鼠的ECG模式,具有显着的快速瞬态向外K(+)电流(I(to,f))确定心室复极化的早期。在低温热解期间,QRS络合物的振幅显着增加,这表明在正常状态下,心室去极化的末端部分与重新极化的开始融合在一起,低T(b)的作用是通过消除去极化和重新极化之间的叠加延迟复极化的发作。房室和心室的传导时间延长为T(b)的函数。相反,QT与T(b)的关系显示出明显的磁滞现象,表明非线性控制机制的运行,从而在唤醒过程中快速QT缩短是由单独的温度以外的其他机制(可能是交感刺激)引起的。

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