五种目前可用的双瓣膜人工心脏瓣膜的设计特点和电影透视外观。

American journal of cardiac imaging Pub Date : 1996-01-01
P Montorsi, D Cavoretto, A Repossini, A L Bartorelli, M D Guazzi
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引用次数: 0

摘要

双肢假体是一种低轮廓的中心流孔装置,具有良好的血流动力学性能和低血栓形成性。目前有五种型号用于心脏瓣膜置换术。由于缺乏关于瓣膜特征和功能的全面和比较研究,使得医生和心脏病专家对这些假体的更新和熟悉变得困难。我们描述了瓣膜的设计特点,并评估了387双小体假体的电影透视外观和功能,这些假体已被连续367例患者植入。瓣膜类型为St Jude Medical (n = 69)、Edwards-Duromedics (n = 74)、Carbomedics (n = 1290)、Sorin biccarbon (n = 88)和Jyros (n = 27)。通过多个x线片(Siemens-Elema c型臂设备)评估假体的透视外观;通过获得“倾斜盘投影”(即射线束平行于瓣环平面和盘倾斜轴),计算盘的开、关、行程角,对假体进行功能评估。研究表明,这五种双叶阀各有其独特的设计特点。在大多数情况下,透视检查是一种简单、容易获得和有用的技术,可以正确识别假体类型并正确评估其功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Valve design characteristics and cine-fluoroscopic appearance of five currently available bileaflet prosthetic heart valves.

Bileaflet prostheses are low profile, central flow orifice devices that show excellent hemodynamic performance and low thrombogenicity. Five models are currently used for heart valve replacement. Comprehensive and comparative studies regarding valve characteristics and functioning are lacking, making the updating and the familiarization by physicians and cardiologists with these prostheses difficult. We describe the valve design characteristics and evaluate the cine-fluoroscopic appearance and functioning of 387 bileaflet prostheses that have been implanted in 367 consecutive patients. The valve types are St Jude Medical (n = 69), Edwards-Duromedics (n = 74), Carbomedics (n = 1290) Sorin Bicarbon (n = 88) and Jyros (n = 27). The prostheses' fluoroscopic appearance was evaluated through multiple radiographic views (Siemens-Elema equipment with C-arm); the prostheses' functional evaluation was performed by obtaining the "tilting disk projection" (ie, with the radiographic beam parallel to both the valve ring plane and the tilting axis of disks) to calculate opening, closing, and travel angles of the disks. This study shows that each of the five bileaflet valves has distinctive design characteristics. Fluoroscopy is an easy, readily available, and useful technique that correctly identifies the prosthesis type and properly evaluates its functioning in the majority of cases.

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