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左心室质心的超声心动图定义。II. 正常心脏和梗死心脏收缩期最佳质心的确定。

Echocardiographic definition of the left ventricular centroid. II. Determination of the optimal centroid during systole in normal and infarcted hearts.

作者信息

Wiske P S, Pearlman J D, Hogan R D, Franklin T D, Weyman A E

机构信息

Massachusetts General Hospital, Cardiac Ultrasound Laboratory, Boston 02114.

出版信息

J Am Coll Cardiol. 1990 Oct;16(4):993-9. doi: 10.1016/s0735-1097(10)80353-5.

DOI:10.1016/s0735-1097(10)80353-5
PMID:2212382
Abstract

Although two-dimensional echocardiography is widely used in both clinical and experimental evaluations of regional cardiac wall motion, there is no established clinical method for quantitative analysis of the wall motion, not even for the normal radial motion observed in short-axis images. Measurement of radial wall motion requires determination of a centroid from which the radii emanate. Depending on its definition, the centroid is variously affected throughout systole by cardiac translation, regional wall motion and any shift of the subject position or transducer. A floating centroid is defined relative to the ventricular walls frame by frame, whereas a fixed centroid never moves with respect to the transducer. Evaluation of the best approach to definition of a centroid was previously presented (part I, this issue). The next question is how to use the centroid. This study examines which of four centroid applications provides the best reference for quantifying regional wall motion during systole. Method 1 is a floating centroid (defined separately for every image frame), method 2 uses the end-diastolic centroid as a fixed reference for all image frames, method 3 uses the end-systolic centroid as a fixed reference and method 4 uses the average as a fixed reference. Wall motion was measured with respect to each of these centroids by determining radial wall motion from end-diastole to end-systole and correlating radial motion throughout the cardiac cycle with that in normal control hearts.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

尽管二维超声心动图在区域心脏壁运动的临床和实验评估中被广泛应用,但目前尚无成熟的临床方法用于定量分析壁运动,甚至对于短轴图像中观察到的正常径向运动也没有。测量径向壁运动需要确定半径发出的质心。根据其定义,质心在整个收缩期会受到心脏平移、区域壁运动以及受试者位置或换能器任何移动的不同影响。浮动质心逐帧相对于心室壁定义,而固定质心相对于换能器从不移动。之前已介绍了确定质心最佳方法的评估(本期第一部分)。接下来的问题是如何使用质心。本研究考察了四种质心应用方式中哪一种能为量化收缩期区域壁运动提供最佳参考。方法1是浮动质心(为每个图像帧单独定义),方法2使用舒张末期质心作为所有图像帧的固定参考,方法3使用收缩末期质心作为固定参考,方法4使用平均值作为固定参考。通过确定从舒张末期到收缩末期的径向壁运动,并将整个心动周期的径向运动与正常对照心脏的径向运动相关联,来测量相对于这些质心中每一个的壁运动。(摘要截取自250字)

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Echocardiographic definition of the left ventricular centroid. II. Determination of the optimal centroid during systole in normal and infarcted hearts.左心室质心的超声心动图定义。II. 正常心脏和梗死心脏收缩期最佳质心的确定。
J Am Coll Cardiol. 1990 Oct;16(4):993-9. doi: 10.1016/s0735-1097(10)80353-5.
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