Li C M, Hill A, Desrosiers C, Grandjean P, Chiu R C
Department of Surgery, Montreal General Hospital, Quebec, Canada.
ASAIO Trans. 1989 Jul-Sep;35(3):405-7. doi: 10.1097/00002480-198907000-00075.
Skeletal muscle (SM) can be used for long-term circulatory assist. To generate contractions of appropriate duration and strength, SM requires bursts of electrical pulse trains. Presently, the implantable pulse train stimulator for SM assist is unable, at different heart rates, to adjust pulse burst duration or delay time, adversely affecting timing of counterpulsation. A prototype implantable microprocessor based stimulator (Medtronic Prometheus) has been developed to address this issue. The purpose of this study was to test this generator in an acute dog model. A dual chambered counterpulsation device was connected to the aorta in six dogs, using the latissimus dorsi to power the pump. The generator was connected by sensing/stimulating leads to the heart/left thoracodorsal nerve, programmed to give bursts of 2 V, 30 Hz, and pulse widths of 180 microsecs. Burst delay and duration was set as a fixed percent of the R-R interval of the EKG. The baseline aortic pressures ranged from 75/33 to 118/87 mmHg. During counterpulsation, diastolic pressure increased from 17 to 50 mmHg (30-111% increase). With changing heart rates, the pulse generator spontaneously readjusted its burst delay and duration, maintaining optimal diastolic counterpulsation without systolic interference. We conclude that this new pulse generator can stimulate SM for counterpulsation at varying heart rates, and is suitable for implantation in chronic studies.
骨骼肌(SM)可用于长期循环辅助。为了产生适当持续时间和强度的收缩,SM需要电脉冲串。目前,用于SM辅助的植入式脉冲串刺激器在不同心率下无法调整脉冲串持续时间或延迟时间,对反搏时机产生不利影响。已开发出一种基于植入式微处理器的原型刺激器(美敦力普罗米修斯)来解决这一问题。本研究的目的是在急性犬模型中测试该发生器。使用背阔肌为泵提供动力,将双腔反搏装置连接到六只犬的主动脉。通过传感/刺激导线将发生器连接到心脏/左胸背神经,编程为给予2V、30Hz的脉冲串,脉冲宽度为180微秒。脉冲串延迟和持续时间设置为心电图R-R间期的固定百分比。基线主动脉压力范围为75/33至118/87mmHg。在反搏期间,舒张压从17mmHg增加到50mmHg(增加30-111%)。随着心率变化,脉冲发生器自动调整其脉冲串延迟和持续时间,在无收缩期干扰的情况下维持最佳舒张期反搏。我们得出结论,这种新型脉冲发生器可以在不同心率下刺激SM进行反搏,适用于慢性研究中的植入。