Literature DB >> 1751149

Easy access for a left ventricular assist system without thoracotomy.

E Sasaki1, T Nakatani, Y Taenaka, H Noda, E Tatsumi, H Akagi, T Masuzawa, M Goto, M Sakaki, Y Matsuo.   

Abstract

In a previous article, a left ventricular assist system (LVAS) with a percutaneous transseptal cannulation technique for easy application was described. This system was safe and efficient (maximum output greater than 3 L/min) and fitted between the intraaortic balloon pumping and LVAS with thoracotomy. But technical skill for placement was slightly complicated. The cannulation system has been improved. In the new system, the inlet cannula is initially used as a sheath introducer and is quickly inserted into the left atrium after transseptal puncture. The new inlet cannula is made of polyvinyl chloride (TM100, Toyobo, Co., Ltd., Osaka, Japan), which has excellent antithrombogenicity and low friction using a polyester plasticizer. The distal part is designed to be flexible with a spiral wire for easy manipulation. A sealing hub was installed to prevent bleeding at the proximal The simplicity and safety of the new system were examined in chronic animal experiments. The inlet cannula was placed into the left atrium within a few seconds after transseptal puncture. During 20 days of activation, there were no episodes of systemic or pulmonary embolism, although no anticoagulant was used. Under fluoroscopy, there was no thrombus formation around the cannula at removal. On the 14th day after removal, the puncture site of the septum had healed. This system is ready for clinical use and shows promise of satisfactory safety and manageability.

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Year:  1991        PMID: 1751149

Source DB:  PubMed          Journal:  ASAIO Trans        ISSN: 0889-7190


  1 in total

1.  Experimental videothoracoscopic cannulation of the left atrial appendix. A feasible rapid approach for initiating left heart bypass?

Authors:  P F Gründeman; D W Meijer; J J Bannenberg; R Tukkie; P J Klopper
Journal:  Surg Endosc       Date:  1993 Nov-Dec       Impact factor: 4.584

  1 in total

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