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[利用多个横断面超声心动图对人左心室进行三维重建:与使用辛普森法则的双平面电影心室造影术的比较]

[Three dimensional reconstruction of the human left ventricle from multiple cross-sectional echocardiograms: comparison with biplane cineventriculography using Simpson's rule].

作者信息

Sawada H, Fujii J, Aizawa T, Kato K, Onoe M, Kuno Y, Nakanishi T

出版信息

J Cardiogr. 1985 Jun;15(2):439-47.

PMID:4093625
Abstract

A system for reconstructing three-dimensional images of the left ventricle from randomly-recorded multiple short-axis two-dimensional images was developed. This system consisted of a real-time phased array sector scanner, a transducer-locating arm system for registering the spatial coordinates of the images, and a digitizer-computer system for digitizing the endocardial edge to display the reconstruction image and to calculate the left ventricular volume. The clinical applicability of this system was assessed by comparing the calculated left ventricular volumes by this system (3DE) with those measured by cineventriculography (LVG) for 10 patients. For end-diastolic volumes (EDV) determined by 3DE and LVG, the linear regression equation was EDV (LVG) = 1.07 EDV (3 DE)-3.4, SEE = 19.0 ml, r = 0.959. For end-systolic volumes (ESV), it was ESV (LVG) = 1.16 ESV (3 DE)-6.0, SEE = 13.1 ml, r = 0.970, and for stroke volumes (SV), it was SV (LVG) = 0.70 SV (3 DE) + 32.3, SEE = 24.5 ml, r = 0.606. This method was considered applicable to clinical non-invasive measurements of left ventricular volumes. Digitized images were easily processed by a computer, and much informations, such as volumes, shapes and wall motion, were assessable.

摘要

开发了一种用于从随机记录的多个短轴二维图像重建左心室三维图像的系统。该系统由实时相控阵扇形扫描仪、用于记录图像空间坐标的换能器定位臂系统以及用于将心内膜边缘数字化以显示重建图像并计算左心室容积的数字化仪-计算机系统组成。通过比较该系统(3DE)计算的10例患者左心室容积与电影心室造影(LVG)测量的左心室容积,评估了该系统的临床适用性。对于3DE和LVG测定的舒张末期容积(EDV),线性回归方程为EDV(LVG)=1.07 EDV(3DE)-3.4,标准误(SEE)=19.0ml,相关系数(r)=0.959。对于收缩末期容积(ESV),方程为ESV(LVG)=1.16 ESV(3DE)-6.0,SEE=13.1ml,r=0.970;对于每搏输出量(SV),方程为SV(LVG)=0.70 SV(3DE)+32.3,SEE=24.5ml,r=0.606。该方法被认为适用于左心室容积的临床无创测量。数字化图像易于由计算机处理,并且可以评估许多信息,如容积、形状和壁运动。

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