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An algorithm for coronary artery shortening applied to the assessment of regional wall motion during coronary angioplasty

机译:一种冠状动脉缩短术语冠状动脉间成形术期间壁作评估算法

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Balloon occlusion during percutaneous transluminal coronary angioplasty renders a region of myocardium distal to the balloon ischemic, and this results in regional contractile dysfunction. The measurement of the induced wall motion abnormalities is difficult in the clinical setting. The authors have developed a knowledge-based microcomputer system for the automatic recognition of coronary arterial branching points and used these as epicardial markers to assess regional wall motion during balloon occlusion periods. The methodology is easy to apply, repeatable, and correlates with changes in regional blood flow and metabolism. This robust algorithm allows frame-to-frame analysis of regional contraction during periods of acute reversible ischemia and thus sheds light on the time course of ischemia during wall motion.
机译:经皮冠状动脉血管成形术期间的气球闭塞使球囊缺血远离心肌区域,这导致区域收缩功能障碍。在临床环境中难以诱导壁运动异常的测量。作者开发了一种基于知识的微型计算机系统,用于自动识别冠状动脉分支点,并用它们作为心外膜标记,以评估气球闭塞期间的区域壁运动。该方法易于施加,可重复,与区域血流和新陈代谢的变化相关。这种稳健的算法允许在急性可逆缺血期间的区域收缩帧到帧 - 帧质分析,从而在墙壁运动期间缩小缺血时间过程。

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