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心肌心室成形术和新心室肌移植心脏增强术以建立肺循环血流。初步观察和可行性研究。

Myoventriculoplasty and neoventricle myograft cardiac augmentation to establish pulmonary blood flow. Preliminary observations and feasibility studies.

作者信息

Macoviak J A, Stinson E B, Starkey T D, Hansen D E, Cahill P D, Miller D C, Shumway N E

出版信息

J Thorac Cardiovasc Surg. 1987 Feb;93(2):212-20.

PMID:3807397
Abstract

In 10 dogs, a latissimus dorsi muscle (myograft) was neuroelectrically stimulated at 120 cycles/min for as long as 80 days. The higher thresholds and multiple lead penetrations required of direct muscle stimulation for muscle conditioning were avoided. Vascular delay and protective wrapping of the myograft in four dogs resulted in rapid seroma and fibrous sheath formation, which precluded further study. Of the six other myografts that were stimulated, two were used as functional right ventricular myoventriculoplasties and four were employed as neoventricle myografts with inflow and outflow valved conduits that were used to provide total pulmonary blood flow. Myoventriculoplasty produced functional enlargement of the right ventricle with synchronously contractile muscle. Neoventricles provided hemodynamically stable total pulmonary blood flow for as long as 20 hours, until internal chamber thrombus formed. Transpulmonary blood pressure generation by the neoventricle was found to be programmable up to physiologic systemic pressures by modulation of chamber preload and burst stimulation frequency at 50 msec intervals, delivered 120 times per minute. Synchronization capabilities for implantable burst pulse generators would further improve the efficacy of these myograft techniques designed to augment or supplant ventricular function, particularly to provide transpulmonary blood flow at programmable pressures.

摘要

在10只犬中,对背阔肌(肌移植片)以每分钟120次的频率进行神经电刺激,持续80天。避免了肌肉调节时直接肌肉刺激所需的较高阈值和多导联穿刺。4只犬的肌移植片进行血管延迟和保护性包裹,导致迅速形成血清肿和纤维鞘,这使得进一步研究无法进行。在接受刺激的另外6个肌移植片中,2个用作功能性右心室肌心室成形术,4个用作带有流入和流出带瓣管道的新心室肌移植片,用于提供全部肺血流量。肌心室成形术使右心室功能性扩大,肌肉同步收缩。新心室可提供长达20小时的血流动力学稳定的全部肺血流量,直到心腔内形成血栓。通过调节腔室预负荷和以50毫秒的间隔进行猝发刺激频率(每分钟120次),发现新心室产生的跨肺血压可调节至生理系统压力。可植入猝发脉冲发生器的同步功能将进一步提高这些旨在增强或替代心室功能的肌移植技术的疗效,特别是在可调节压力下提供跨肺血流。

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