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Complete left ventricular bypass with a paracorporeal pump: design and evaluation.
Annals of Surgery
|October 1, 1974
Summary
Researchers developed a left ventricular to aortic assist system for long-term circulatory support. Animal studies in calves showed promising results, with one device functioning for over eight months, indicating potential for artificial heart development.
Area of Science:
- Biomedical Engineering
- Cardiovascular Research
- Medical Device Design
Background:
- Mechanical circulatory assist devices are crucial for managing end-stage heart failure.
- The development of artificial hearts and assist systems requires rigorous evaluation.
- Previous designs have faced challenges in long-term efficacy and biocompatibility.
Purpose of the Study:
- To design and evaluate a novel left ventricular to aortic assist system.
- To assess the long-term performance and safety of the assist system in an animal model.
- To explore synchronized pumping for improved ventricular decompression and flow rates.
Main Methods:
- A multidisciplinary team designed a sac-type pump with synchronization and pneumatic power units.
- The assist system was evaluated in ten calves with paracorporeal placement.
- Synchronized assist pumping was implemented in the final four calves.
Main Results:
- The assist pump demonstrated continuous function for over eight months in one calf.
- Synchronized pumping allowed for prolonged ventricular decompression and high flow rates (up to 10 L/min).
- Three of the four calves with synchronized pumping showed no evidence of thromboemboli.
Conclusions:
- The designed left ventricular to aortic assist system shows potential for long-term circulatory assistance.
- Synchronized pumping is a viable strategy for enhancing device performance and reducing embolic complications.
- Further animal studies are necessary before human clinical trials can be considered.