Hall G Martin, Gauthier Daniel J
Department of Physics, Duke University, Box 90305, Durham, North Carolina 27708, USA.
Phys Rev Lett. 2002 May 13;88(19):198102. doi: 10.1103/PhysRevLett.88.198102. Epub 2002 Apr 30.
We demonstrate that alternans in small pieces of in vitro paced bullfrog (Rana Catesbeiana) myocardium can be suppressed by making minute adjustments to the pacing period in response to real time measurements of the action potential duration. Control is possible over a large range of physiological conditions over many animals and the self-referencing control protocol can automatically adjust to changes in the pacing interval. Our results suggest the feasibility of developing low-energy methods for maintaining normal cardiac function.
我们证明,通过根据动作电位持续时间的实时测量对起搏周期进行微小调整,可以抑制小块体外起搏牛蛙(牛蛙)心肌中的交替现象。在许多动物的大范围生理条件下都可以进行控制,并且自参考控制协议可以自动适应起搏间隔的变化。我们的结果表明开发维持正常心脏功能的低能量方法是可行的。