Mannion J D, Acker M A, Hammond R L, Faltemeyer W, Duckett S, Stephenson L W
Circulation. 1987 Jul;76(1):155-62. doi: 10.1161/01.cir.76.1.155.
Skeletal muscle ventricles (SMVs) were constructed from preconditioned latissimus dorsi muscles in eight dogs and then connected to each animal's systemic arterial circulation in short-term experiments. The lengths of time that SMVs could produce hemodynamic work as left ventricular assist devices were recorded. After 4 hr of continuous pumping at approximately 55 beats/min, six of eight SMVs were able to generate systolic pressures of 128 +/- 23 mm Hg and flows of 340 +/- 31 ml/min, representing 20 +/- 4% of the animals' cardiac output. After 8 hr of continuous pumping, five of the eight SMVs generated pressures of 110 +/- 15 mm Hg and flows of 308 +/- 88 ml/min, or 15 +/- 7% of the animals' cardiac output. The stroke work produced by the SMVs was intermediate between that of the animals' left and right ventricles. Although the SMVs were stimulated to contract at only about one-third the heart rate, the power output of the SMVs approximated that of the right ventricles because of the greater stroke work of the SMVs. Two SMVs functioned as LVADs for 14 hr. Deterioration in SMV function eventually occurred. In each case, however, complications such as anemia, hypoxia, and hypotension, which are inherent to prolonged short-term experiments of this type, contributed to the deterioration of SMV function. The results presented here suggest that skeletal muscle has the potential to directly support the circulation; however, the length of time such muscle pumps are capable of functioning has yet to be determined.
在八只犬中,利用预处理的背阔肌构建骨骼肌心室(SMV),然后在短期实验中将其与每只动物的体循环动脉相连。记录了SMV作为左心室辅助装置能够产生血流动力学功的时间长度。以约55次/分钟的频率持续泵血4小时后,八只SMV中有六只能够产生128±23毫米汞柱的收缩压和340±31毫升/分钟的血流量,占动物心输出量的20±4%。持续泵血8小时后,八只SMV中有五只产生了110±15毫米汞柱的压力和308±88毫升/分钟的血流量,即动物心输出量的15±7%。SMV产生的每搏功介于动物左心室和右心室之间。尽管SMV仅以约三分之一的心率被刺激收缩,但由于SMV每搏功更大,其功率输出接近右心室。两只SMV作为左心室辅助装置工作了14小时。最终SMV功能出现恶化。然而,在每种情况下,此类长期短期实验固有的贫血、缺氧和低血压等并发症都导致了SMV功能的恶化。此处呈现的结果表明骨骼肌有直接支持循环的潜力;然而,此类肌肉泵能够发挥功能的时间长度尚未确定。